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Effect of Supplementary Irrigation on the Yield of Sorghum (Sorghum bicolor L. Moench) in the Context of Climate Change in the Dry Savannahs of Togo
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作者 Adjiwanou Atiglo-Gbenou Yaovi Ouézou Azouma Jean Mianikpo Sogbedji 《American Journal of Climate Change》 2024年第2期163-174,共12页
Under the current context of climate change, supplementary irrigation may be needed for crop production resilience. We determined the effects of supplementary irrigation on sorghum grain yield in the dry Savannah regi... Under the current context of climate change, supplementary irrigation may be needed for crop production resilience. We determined the effects of supplementary irrigation on sorghum grain yield in the dry Savannah region of Togo. A two-year trial was conducted in a controlled environment at AREJ, an agro-ecological center in Cinkassé. The plant material was sorghum variety Sorvato 28. The experimental design was a Completely Randomized Block with three replications and three treatments as follows: T0 control plot (rainfed conditions);T1 (supplementary irrigation from flowering to grain filling stage) and T2 (supplementary irrigation from planting to grain filling stage). Two irrigation techniques (furrow and Californian system) were used under each watering treatment. The results showed that irrigation technique significantly affected panicle length with no effect on 1000 grains mass. Panicle length and grain yields varied from 15.59 to 25.71 cm and 0.0 to 2.06 t∙h−1, respectively, with the highest values (25.66 cm and 2.06 t∙h−1, respectively) under the T2 treatment with the California system-based supplementary irrigation. The comparison of results obtained on treatment T0 and T2, shows that supplementary irrigation increased the yields by at least 68.62%. Supplementary irrigation during sowing and growing season (T2) improved sorghum yields in the dry savannahs of Togo, with a better performance of the California irrigation system. 展开更多
关键词 Climate Change Supplementary Irrigation sorghum Grain Yield Dry Savannah TOGO
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Effect of Planting Date on Yield and Yield Components of Grain Sorghum Hybrids
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作者 Bandiougou Diawara Sory Diallo +2 位作者 Brahima Traore Scott Staggenbord Vara Prasad 《American Journal of Plant Sciences》 CAS 2024年第5期387-402,共16页
In Kansas, productivity of grain sorghum [Sorghum bicolor (L.) Moench] is affected by weather conditions at planting and during pollination. Planting date management and selection of hybrid maturity group can help to ... In Kansas, productivity of grain sorghum [Sorghum bicolor (L.) Moench] is affected by weather conditions at planting and during pollination. Planting date management and selection of hybrid maturity group can help to avoid severe environmental stresses during these sensitive stages. The hypothesis of the study was that late May planting improves grain sorghum yield and yield components compared with late June planting. The objectives of this research were to investigate the influence of planting dates yield and yield components of different grain sorghum hybrids, and to determine the optimal planting date and hybrid combination for maximum biomass and grains production. Three sorghum hybrids (early, medium, and late maturing) were planted in late May and late June without irrigation in Kansas at Manhattan/Ashland Bottom Research Station, and Hutchinson in 2010;and at Manhattan/North Farm and Hutchinson in 2011. Data on dry matter production, yield and yield components were collected. Grain yield and yield components were influenced by planting date depending on environmental conditions. At Manhattan (2010), greater grain yield, number of heads per plant, were obtained with late-June planting compared with late May planting, while at Hutchinson (2010) greater yield was obtained with late May planting for all hybrids. The yield component most affected at Hutchinson was the number of kernels∙panicle<sup>−1</sup> and plant density. Late-May planting was favorable for late maturing hybrid (P84G62) in all locations. However, the yield of early maturing hybrid (DKS 28-05) and medium maturing hybrid (DKS 37-07) was less affected by delayed planting. The effects of planting dates on yield and yield components of grain sorghum hybrids were found to be variable among hybrid maturity groups and locations. 展开更多
关键词 sorghum [sorghum bicolor (L.) Moench] Grain Yield Yield Components
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Characterization of subunits encoded by Sn RK1 and dissection of combinations among these subunits in sorghum(Sorghum bicolor L.) 被引量:1
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作者 XIAO Qian-lin HUANG Tian-hui +8 位作者 ZHOU Chang CHEN Wei-xi CHA Jian-kui WEI Xi-mei XING Fang-yu QIAN Meng-ya MA Qian-nan DUAN Hong LIU Zhi-zhai 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第2期642-649,共8页
Sucrose nonfermenting-related protein kinase 1(SnRK1)is one of the critical serine/threonine protein kinases.It commonly mediates plant growth and development,cross-talks with metabolism processes and physiological re... Sucrose nonfermenting-related protein kinase 1(SnRK1)is one of the critical serine/threonine protein kinases.It commonly mediates plant growth and development,cross-talks with metabolism processes and physiological responses to biotic or abiotic stresses.It plays a key role in distributing carbohydrates and sugar signal transporting.In the present study,eight SnRK1 coding genes were identified in sorghum(Sorghum bicolor L.)via sequences alignment,with three forαsubunits(SnRK1α1 to SnRK1α3),three forβ(SnRK1β1 to SnRK1β3),and one for bothγ(SnRK1γ)andβγ(SnRK1βγ).These eight corresponding genes located on five chromosomes(Chr)of Chr1–3,Chr7,and Chr9 and presented collinearities to SnRK1s from maize and rice,exhibiting highly conserved domains within the same subunits from the three kinds of cereals.Expression results via qRT-PCR showed that different coding genes of SnRK1s in sorghum possessed similar expression patterns except for SnRK1α3 with a low expression level in grains and SnRK1β2 with a relatively high expression level in inflorescences.Results of subcellular localization in sorghum leaf protoplast showed that SnRK1α1/α2/α3/γmainly located on organelles,while the rest four of SnRK1β1/β2/β3/βγlocated on both membranes and some organelles.Besides,three combinations were discovered among eight SnRK1 subunits in sorghum through yeast two hybrid,includingα1-β2-βγ,α2-β3-γ,andα3-β3-γ.These results provide informative references for the following functional dissection of SnRK1 subunits in sorghum. 展开更多
关键词 sorghum(sorghum bicolor L.) SnRK1 expression analysis combination pattern
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A telomere-to-telomere genome assembly of Hongyingzi,a sorghum cultivar used for Chinese Baijiu production
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作者 Yanqing Ding Yilin Wang +12 位作者 Jianxia Xu Feng Jiang Wenzhen Li Qiaoling Zhang Longping Yang Zhenyu Zhao Bin Cheng Ning Cao Xu Gao Xin Zhang Guihua Zou Fan Yang Liyi Zhang 《The Crop Journal》 SCIE CSCD 2024年第2期635-640,共6页
Sorghum(Sorghum bicolor(L.)Moench)is a world cereal crop used in China for producing Baijiu,a distilled spirit.We report a telomere-to-telomere genome assembly of the Baijiu cultivar Hongyingzi,HYZ-T2T,using ultralong... Sorghum(Sorghum bicolor(L.)Moench)is a world cereal crop used in China for producing Baijiu,a distilled spirit.We report a telomere-to-telomere genome assembly of the Baijiu cultivar Hongyingzi,HYZ-T2T,using ultralong reads.The 10 chromosome pairs contained 33,462 genes,of which 93%were functionally annotated.The 20 telomeres and 10 centromeric regions on the HYZ-T2T chromosomes were predicted and two consecutive large inversions on chromosome 2 were characterized.A 65-gene reconstruction of the metabolic pathway of tannins,the flavor substances in Baijiu,was performed and may advance the breeding of sorghum cultivars for Baijiu production. 展开更多
关键词 sorghum Telomere-to-telomere assembly Hongyingzi(HYZ) Chinese Baijiu-making cultivar
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Molecular mechanisms of stress resistance in sorghum: Implications for crop improvement strategies
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作者 Hongxiang Zheng Yingying Dang +1 位作者 Xianmin Diao Na Sui 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第3期741-768,共28页
Abiotic stresses, such as drought, salt, extreme temperatures, and heavy metal pollution, are the main environmental factors that limit crop growth and yield. Sorghum, a C4 grass plant with high photosynthetic efficie... Abiotic stresses, such as drought, salt, extreme temperatures, and heavy metal pollution, are the main environmental factors that limit crop growth and yield. Sorghum, a C4 grass plant with high photosynthetic efficiency, can grow in adverse environmental conditions due to its excellent stress resistance characteristics. Therefore, unraveling the stress-resistance mechanism of sorghum could provide a theoretical basis for developing and cultivating various stress-resistant crops. This understanding could also help to create a conducive environment for using marginal soil in agriculture and ensuring food security. In this review, we discuss the adaptation mechanisms of sorghum under drought, salinity, temperature, and soil heavy metal stresses, the specific response to stress, the screening of sorghum-resistant germplasm, and the identification and functional analysis of the relevant genes and quantitative trait loci(QTL). In addition, we discuss the application potential of different stress-tolerant sorghum germplasms reported to date and emphasize the feasibility and potential use in developing and promoting highly stress-tolerant sorghum in marginal soil. 展开更多
关键词 abiotic stress C4 plants QTL sorghum stress resistance yield stability
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Multi Location Field Evaluation of BC1F2 Sorghum Populations for Striga Resistance in Niger
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作者 Ousseini Ardaly Abdou Aissata Mamadou Ibrahim +2 位作者 Yaw Eleblu John Saviour Ofori Kwadwo Ousmane Zakari Moussa 《American Journal of Plant Sciences》 CAS 2024年第10期1010-1021,共12页
In Niger, a landlocked country, sorghum is the second staple food cultivated over the country by smallholder farmer. The crop is important for human and animal consumption. Despite its importance, the crop is affected... In Niger, a landlocked country, sorghum is the second staple food cultivated over the country by smallholder farmer. The crop is important for human and animal consumption. Despite its importance, the crop is affected by biotic and abiotic constraints. Among those constraints, striga has a high impact on yield. In fact, to survive, farmers are growing their local preferred sorghum varieties wish is highly sensible to the weed. Striga management is a challenge that requires a permanent solution. In addition, the development of high-yielding Striga resistant genotypes will be appreciated by farmers. The development of striga resistance will be based on the breeding population performances under farmer’s diverse environmental conditions adaptation. The main objective of this study is to evaluate two breeding populations for striga resistance in two different environments at Boulke and Dibissou in Tahoua region, to identify the early and high-yielding striga tolerant genotypes under natural infestation. 展开更多
关键词 Striga Resistance sorghum Breeding Population Multi Environment
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Sorghum Productivity and Its Farming Feasibility in Dryland Agriculture:Genotypic and Planting Distance Insights
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作者 Kristamtini Sugeng Widodo +12 位作者 Heni Purwaningsih Arlyna Budi Pustika Setyorini Widyayanti Arif Muazam Arini Putri Hanifa Joko Triastono Dewi Sahara Heni Sulistyawati Purwaning Rahayu Pandu Laksono Diah Arina Fahmi Sutardi Joko Pramono Rachmiwati Yusuf 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第5期1007-1021,共15页
Sorghum(Sorghum bicolor L.Moench)is an essential food crop for more than 750 million people in tropical and sub-tropical dry climates of Africa,India,and Latin America.The domestic sorghum market in Indonesia is still... Sorghum(Sorghum bicolor L.Moench)is an essential food crop for more than 750 million people in tropical and sub-tropical dry climates of Africa,India,and Latin America.The domestic sorghum market in Indonesia is still limited to the eastern region(East Nusa Tenggara,West Nusa Tenggara,Java,and South Sulawesi).Therefore,it is crucial to carry out sorghum research on drylands.This research aimed to investigate the effect of sorghum genotype and planting distance and their interaction toward growth and sorghum’s productivity in the Gunungkidul dryland,Yogyakarta,Indonesia.In addition,the farm business analysis,including the feasibility of sorghum farming,was also examined.The research used a randomized complete block design(RCBD),arranged in a 5×4 factorial with 3 replicates.The first treatment consisted of 5 varieties(2 high-yielding varieties(Bioguma 1 and Kawali)and 3 local sorghum varieties(Plonco,Ketan Merah,and Hitam Wareng)).The second treatment consisted of 4 levels of planting distance,namely 50×20 cm,60×20 cm,70×15 cm,and 70×20×20 cm.Analysis of variance was used to analyze the data,where Duncan’s multiple range test(DMRT)was used post hoc.Plant height,panicle height,panicle width,panicle weight,stover weight,grains weight/plot,and productivity were significantly affected by sorghum varieties(p<0.05).However,there was no significant effect from the planting distance treatment and no interaction between planting distance and varietal treatments.Ketan Merah had the highest height,panicle length,and panicle width,while Bioguma 1 had the highest stover weight,panicle weight,grain weight/plot,and productivity.There was a significant linear regression equation,i.e.,productivity=0.0054–0.0003 panicle height+0.4163 grains weight/plot.Our findings on farm business analysis suggested that four out of five tested sorghum varieties were feasible to grow,except for the Ketan Merah variety.The most economically profitable sorghum variety to grow in Gunungkidul dryland was Bioguma 1. 展开更多
关键词 sorghum dryland agriculture planting space VARIETY local Gunungkidul
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Determination and Quantification of Proximate and Mineral Composition for 20 Improved Sorghum Varieties Grown in Machache, Lesotho
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作者 Malefane Ts’ephe Puleng Letuma +4 位作者 Karabelo Khomongata Fisseha Itanna Mamoipone Sebitia Monica Lephole Pitso Masupha 《Food and Nutrition Sciences》 CAS 2024年第8期744-758,共15页
Twenty varieties of improved sorghum were grown in Machache at the Department of Agricultural Research station, located (29˚22'60"S and 27˚52'0"E) in the central foothills of Lesotho in Maseru distri... Twenty varieties of improved sorghum were grown in Machache at the Department of Agricultural Research station, located (29˚22'60"S and 27˚52'0"E) in the central foothills of Lesotho in Maseru district. The varieties were planted in a randomized complete block design. At maturity, they were harvested, dried, threshed, milled and analyzed in the crop science laboratory at the National University of Lesotho. The proximate and mineral contents were analyzed from samples in a completely randomized design with three replicates. The proximate composition parameters measured were crude proteins, crude fiber, crude fat, moisture content, and carbohydrates. The minerals analyzed were, phosphorus, sodium, calcium, magnesium, potassium, copper, zinc, iron, and magnesium. The results showed the nutritional contents ranging from (4.7% - 16.16%), (0.35% - 2.10%), (1.25% - 4.00%), (71.60% - 84.06%), (5.53% - 10.18%), for protein, fat, fiber and carbohydrate, and moisture content, respectively. Mineral content ranged from (1342.96 - 3500.34 mg/kg), (25.97 - 185.25 mg/kg), (50.71 - 511.71 mg/kg), (29.35 - 4542.13 mg/kg), (577.19 - 3041.52 mg/kg), (0.25 - 4.07 mg/kg), (1.96 - 18.61 mg/kg), (67.14 - 122.96 mg/kg), (4.73 - 11.39 mg/kg) for phosphorus, sodium, calcium, magnesium, potassium, copper, zinc, iron, and manganese respectively. The following varieties were found to have the highest and appreciable amounts of nutrients and minerals that are crucial in the country diet;protein content was KARI Mtama 1, zinc, IESX 16 2533-SB-SSI-19, and iron IESX 16 2535-SB-SSI-34. 展开更多
关键词 VARIETIES sorghum PROXIMATE MINERAL
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Optimizing Sorghum Productivity Using Balanced Fertilizers on Dryland
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作者 Samijan Samijan Endah Nurwahyuni +7 位作者 Sri Minarsih Agus Supriyo Sodiq Jauhari Yulis Hindarwati Meinarti Norma Setiapermas Raden Heru Praptana Endah Winarni Vina Eka Aristya 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第7期1403-1420,共18页
Sorghum is thefifth most required cereal crop globally.Sorghum bicolor has the advantage of being adaptive to both lowland and dryland,with drought-tolerant and wide adaptability.The low nutrient availability in drylan... Sorghum is thefifth most required cereal crop globally.Sorghum bicolor has the advantage of being adaptive to both lowland and dryland,with drought-tolerant and wide adaptability.The low nutrient availability in dryland requires additional effective fertilizers to increase sorghum productivity.The research aimed to assess the appli-cation of organic,inorganic,and biofertilizers for sorghum productivity on dryland.Research in Central Java,Indonesia as dryland sorghum areas,from November 2022 to February 2023.The experiment cooperates with the farmers in a split-plot design,the main plot was two varieties and subplots of four fertilizers.The enhanced sorghum yield(21.38%–36.06%)with combined fertilizer was greater than the existing fertilization.Nutrient con-trol does not rely on inorganic fertilizers but also on applying biofertilizers.The sorghum farming economic value farming indicated that combinations of fertilizer treatments and varieties provide benefits of USD 929.81–1955.81 with a revenue-cost ratio(R/C)value>1.Sorghum is an essential food commodity that faces the threat of the global crisis and an unfavorable environment.This study indicated balanced fertilizers could provide suffi-cient nutrients to the soil and increase nutrient absorption availability for sorghum growth and productivity.Balanced fertilization increases the uptake of N,P,and K nutrients correlates with an increase in yield of 21.38%–36.06%. 展开更多
关键词 BIOFERTILIZER dryland adaptability economic value sorghum potential yield
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Heterosis Analysis in Endogenous Substances in Root Bleeding Sap of Sorghum
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作者 Renjie Zhao Yueqiao Li +4 位作者 Chen Xu Zhian Zhang Ziyang Zhou Yihan Zhou Zexin Qi 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第8期1963-1980,共18页
Despite hybrid dominance contributing to the genetic improvement of crops,little is known about heterosis and inheritance patterns of endogenous substances in sorghum(Sorghum bicolor(L.)Moench)root bleeding sap.In thi... Despite hybrid dominance contributing to the genetic improvement of crops,little is known about heterosis and inheritance patterns of endogenous substances in sorghum(Sorghum bicolor(L.)Moench)root bleeding sap.In this study,six sterile and six restorer lines of sorghum and 36 hybrid sorghum combinations formulated as incomplete double-row crosses were selected as test materials,and heterosis,combining ability,heritability,and their interrelationships of root bleeding sap endogenous substances in different hybrid sorghum combinations and their parents were investigated.The results showed that the root bleeding sap of the F1 generation of hybrid sorghum had a high heterosis in both soluble sugar content and amino acid content at the flowering stage,and the average high-parent heterosis was 129.34%and 74.57%,respectively.Indole-3-acetic acid(IAA),cytokinins(CTK),gibberellic acid(GA_(3)),abscisic acid(ABA),soluble sugar,amino acid,and root bleeding intensity were mainly affected by non-additive genetic effects of the genes.Soluble protein was affected by additive genetic effects of the genes and had a high narrow heritability(75.50%),which could be selected at low generations in breeding.The combining ability analyses showed that the sterile lines 521A and 170A,and the restorer lines Ji318R and 0–30 were promising parents with high general combining ability.Correlation analysis showed that all endogenous substances of root bleeding sap were positively correlated with the sum of parental general combining ability(GCA)at highly significant levels,and IAA,CTK,GA_(3),ABA,soluble sugar,amino acid,and root bleeding intensity were positively correlated with male GCA at significant or highly significant levels.Therefore,the GCA of the restorer lines root bleeding sap endogenous material or the sum of both parents’GCA can be used to predict the performance of wounding endogenous material in the F1 generation of hybrid sorghum.Overall,this study results can help elucidate heterosis mechanisms of root bleeding sap endogenous material and improve sorghum quality. 展开更多
关键词 sorghum HETEROSIS root bleeding sap combining ability HERITABILITY
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Cu Stress-Induced Transcriptome Alterations in Sorghum and Expression Analysis of the Transcription Factor-Encoding Gene SbWRKY24
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作者 Mingchuan Yang Jia Zheng +4 位作者 Wenhui Yu Yanghua Li YaliWang Zilu Zhang Zhenhui Kang 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第7期1503-1521,共19页
Sorghum is not only an important bio-energy crop but also a vital raw material for brewing.Exogenous copper affects the growth and metabolism of crops in specific ways.This study identified 8475 differentially expressed... Sorghum is not only an important bio-energy crop but also a vital raw material for brewing.Exogenous copper affects the growth and metabolism of crops in specific ways.This study identified 8475 differentially expressed genes(DEGs)by high-throughput transcriptome sequencing in the sorghum cultivar‘Jinnuoliang 2’after 24 h of treatment with 10 mM CuSO4.Using GO analysis,476 genes were functionally annotated,which were mainly related to catabolism and biosynthetic processes.Additionally,90 pathways were annotated by employing the KEGG analysis.Among them,glutathione metabolism and peroxisome were induced,while photosynthesis,photosynthesis-antenna protein,and carbon sequestration of photosynthetic organisms were inhibited.Of the DEGs,399 were identified to encode transcription factors belonging to 49 families.This study also identified a WRKY transcription factor-encoding gene SbWRKY24 from the transcriptome data.For studying its function,the relative expression levels of SbWRKY24 in roots and leaves post-treatment with different growth hormones and exposure to a variety of abiotic stresses were detected by RT-qPCR.SbWRKY24 showed treatment-and tis-sue-specific expression patterns,indicating its unique role in stress tolerance.This study lays a theoretical basis for the functional exploration of SbWRKY24,elucidating the mechanism of copper resistance,and elaborating on the stress responses in sorghum.It also guides the exploration of the molecular mechanism of copper ions inducing intracellular signal transduction pathways. 展开更多
关键词 sorghum copper stress TRANSCRIPTOME transcription factor SbWRKY24
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Comparison of CWSI and T_(s)-T_(a)-VIs in moisture monitoring of dryland crops(sorghum and maize)based on UAV remote sensing
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作者 Hui Chen Hongxing Chen +6 位作者 Song Zhang Shengxi Chen Fulang Cen Quanzhi Zhao Xiaoyun Huang Tengbing He Zhenran Gao 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第7期2458-2475,共18页
Monitoring agricultural drought using remote sensing data is crucial for precision irrigation in modern agriculture.Utilizing unmanned aerial vehicle(UAV)remote sensing,we explored the applicability of an empirical cr... Monitoring agricultural drought using remote sensing data is crucial for precision irrigation in modern agriculture.Utilizing unmanned aerial vehicle(UAV)remote sensing,we explored the applicability of an empirical crop water stress index(CWSI)based on canopy temperature and three-dimensional drought indices(TDDI)constructed from surface temperature(T_(s)),air temperature(T_(a))and five vegetation indices(VIs)for monitoring the moisture status of dryland crops.Three machine learning algorithms(random forest regression(RFR),support vector regression,and partial least squares regression)were used to compare the performance of the drought indices for vegetation moisture content(VMC)estimation in sorghum and maize.The main results of the study were as follows:(1)Comparative analysis of the drought indices revealed that T_(s)-T_(a)-normalized difference vegetation index(TDDIn)and T_(s)-T_(a)-enhanced vegetation index(TDDIe)were more strongly correlated with VMC compared with the other indices.The indices exhibited varying sensitivities to VMC under different irrigation regimes;the strongest correlation observed was for the TDDIe index with maize under the fully irrigated treatment(r=-0.93).(2)Regarding spatial and temporal characteristics,the TDDIn,TDDIe and CWSI indices showed minimal differences Over the experimental period,with coefficients of variation were 0.25,0.18 and 0.24,respectively.All three indices were capable of effectively characterizing the moisture distribution in dryland maize and sorghum crops,but the TDDI indices more accurately monitored the spatial distribution of crop moisture after a rainfall or irrigation event.(3)For prediction of the moisture content of single crops,RFR models based on TDDIn and TDDIe estimated VMC most accurately(R^(2)>0.7),and the TDDIn-based model predicted VMC with the highest accuracy when considering multiple-crop samples,with R^(2)and RMSE of 0.62 and 14.26%,respectively.Thus,TDDI proved more effective than the CWSI in estimating crop water content. 展开更多
关键词 MAIZE sorghum T_(s)-T_(a)-VIs CWSI UAV machine learning crop moisture monitoring
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Effective Strategies to Encourage the Cultivation of Sorghum and Corn in the African Sahel: An Analysis of Chad
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作者 Sabre Idriss Absakine 《Agricultural Sciences》 2024年第10期1112-1131,共20页
The research explores traditional sorghum and corn cropping systems in the Guera region of the Sahel, focusing on social, economic, and ecological criteria. The region faces challenges due to its tropical climate, dro... The research explores traditional sorghum and corn cropping systems in the Guera region of the Sahel, focusing on social, economic, and ecological criteria. The region faces challenges due to its tropical climate, droughts, and land characteristics, affecting sorghum and corn cultivation. A comprehensive framework, developed in collaboration with national and international organizations, is needed to improve agricultural production in infertile land. Chad’s smallholders use a low-tech, risk-averse rainfed system, but diversified techniques and new cultivation patterns can increase profits. Modern technologies and innovations can increase diversity and create new cultivation forms, involving scientific, commercial, credit, and industrial organizations. Chad faces severe water stress and crop yield issues, with up to 95% of water resources lost due to evapotranspiration. Proper water management techniques, assisted irrigation, efficient rainwater harvesting, and effective seed selection and crop management are crucial for improving agricultural production, reducing poverty, and ensuring the survival of the region’s agricultural sector. Chemical poverty complicates crop management, but fertilizers and skips can improve soil and provide good cereals. Urea can be added to legumes to increase plant growth and nitrogen fixation, while microorganisms and mycorrhizal fungi can strengthen rhizobia and enhance plant recovery. Handling tradeoffs is crucial, as environmental shocks can lead to social consequences like hunger and unemployment. The Sahel region’s sorghum and corn plant species face food production stagnation and chronic insufficiency due to increasing population and pests. Integrated pest management strategies and market access are crucial for smallholder farmers, but quality standards are weak. Public-private partnerships can improve value chains and market linkages, leading to increased farmer income, traders’ income, and consumer prices. 展开更多
关键词 sorghum CORN Guera Region SAHEL CHAD
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Legume Green Manure and Intercropping for High Biomass Sorghum Production
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作者 Clark B. Neely Francis M. Rouquette Jr. +3 位作者 Cristine L. S. Morgan Frank M. Hons William L. Rooney Gerald R. Smith 《Agricultural Sciences》 2024年第6期605-621,共17页
Before the advent of cheap, synthetic fertilizers, legumes were commonly used as green manure crops for their ability to fix atmospheric nitrogen (N). A three-year study at Overton, TX examined legume integration into... Before the advent of cheap, synthetic fertilizers, legumes were commonly used as green manure crops for their ability to fix atmospheric nitrogen (N). A three-year study at Overton, TX examined legume integration into high-biomass sorghum (Sorghum bicolor L.) production systems on a Lilbert loamy fine sand recently cultivated after a fertilized bermudagrass [Cynodon dactylon (L.) Pers.] pasture. In this split-split plot design, ‘Dixie’ crimson clover (Trifolium incarnatum L.) and ‘Iron and Clay’ cowpea (Vigna unguiculata L.) were integrated into a high-biomass sorghum production system to evaluate impacts on N concentration, C concentration, and yield of high-biomass sorghum and their impacts on soil total N and soil organic carbon (SOC). Main plots were split into crimson clover green manure (CLGM) and winter fallow (FALL) followed by three sub-plots split into warm-season crop rotations: cowpea green manure (CPGM), cowpea-sorghum intercrop (CPSR), and sorghum monocrop (SORG). Three N fertilizer treatments (0, 45, 90 kg N∙ha−1) were randomized and applied as sub-sub plots. The CLGM increased (P sorghum biomass yield (16.5 t DM∙ha−1) 28% in year three but had no effect in the first two years. The CPSR treatment reduced sorghum yield up to 62% compared to SORG;whereas CPGM increased sorghum yield 56% and 18% the two years following cowpea incorporation. Rate of N fertilizer had no effect on sorghum biomass yield. Decrease in SOC and soil N over time indicated mineralization of organic N and may explain why no N fertilizer response was observed in sorghum biomass yield. Cowpea showed strong potential as a green manure crop but proved to be too competitive for successful intercropping in high-biomass sorghum production systems. 展开更多
关键词 High-Biomass sorghum Legumes Green Manure INTERCROP COWPEA Crimson Clover Soil Organic Carbon Soil Nitrogen
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Development and Characterization of Particle Boards Based on Sorghum Husk
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作者 Hamed Tidjani Tabe Gbian Edem Chabi +2 位作者 Valéry Kouandété Doko Kora Farid Carlos Yarou Emmanuel Olodo 《Open Journal of Applied Sciences》 2024年第9期2460-2470,共11页
This study tackles current environmental challenges by developing innovative and eco-friendly particle boards utilizing sorghum husk, combined with recycled expanded polystyrene (EPS). This dual eco-responsible approa... This study tackles current environmental challenges by developing innovative and eco-friendly particle boards utilizing sorghum husk, combined with recycled expanded polystyrene (EPS). This dual eco-responsible approach valorizes sorghum husk, often deemed agricultural waste, and repurposes EPS, a plastic waste, thus contributing to CO2 emission reduction and effective waste management. The manufacturing process involves dissolving recycled polystyrene within a solvent to create a binder, which is then mixed with sorghum husk and cold-pressed into composite boards. The study explores the impact of two particle sizes (fine and coarse) and two different concentrations of the recycled EPS binder. Results demonstrate significant variations in the boards’ mechanical properties, displaying a range of Modulus of Rupture (MOR) from 0.84 MPa to 3.85 MPa, and Modulus of Elasticity (MOE) spanning from 658.13 MPa to 1313.25 MPa, influenced by the binder concentration and particle size. These characteristics suggest that the boards can be effectively used in various construction applications, including interior decoration, false ceilings, and potentially for furniture and door manufacturing when combined with appropriate coatings. This study not only exemplifies the valorization of plastic and agricultural wastes but also offers a practical, localized solution to global climate change challenges by promoting sustainable construction materials. 展开更多
关键词 Eco-Material Bio-Sourced Material sorghum Husk Particle Board Recycled Expanded Polystyrene Sustainable Construction
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高粱(Sorghum bicolor(L.)Moench)种质资源研究进展 被引量:31
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作者 陈冰嬬 李继洪 +6 位作者 王阳 李淑杰 胡喜连 李伟 马英慧 高鸣 高士杰 《西北农林科技大学学报(自然科学版)》 CSCD 北大核心 2013年第1期67-72,77,共7页
高粱(Sorghum bicolor(L.)Moench)是世界上主要的旱粮作物,也是全球5亿多人口的主要粮食。文章对高粱的起源与分类、高粱种质资源收集、保存和利用以及遗传多样性研究与核心种质的构建等方面的研究进行了综述,最后对我国高粱种质资源的... 高粱(Sorghum bicolor(L.)Moench)是世界上主要的旱粮作物,也是全球5亿多人口的主要粮食。文章对高粱的起源与分类、高粱种质资源收集、保存和利用以及遗传多样性研究与核心种质的构建等方面的研究进行了综述,最后对我国高粱种质资源的研究方向进行了展望。 展开更多
关键词 高粱 种质资源 核心种质 遗传多样性
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旱稻(Oryza sativa)/稗草(Echinochloa caudata)//高梁(Sorghum bicolor)三属杂种表现及分析 被引量:9
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作者 赵凤梧 李慧敏 +3 位作者 马俊永 赵明 张桂芳 王美云 《核农学报》 CAS CSCD 北大核心 2004年第5期335-339,共5页
以旱稻基因型远F2 1 [旱 65 (Oryzasativa) 长芒稗 (Echinochloacaudata) ]为母本 ,高粱(Sorghumbicolor)基因型沈农 1 33为父本 ,进行属间远缘杂交 ,获得三属间杂交实粒种子。对杂交种F0 、F1、F2 代连续观察结果表明 :( 1 )杂交F0 ... 以旱稻基因型远F2 1 [旱 65 (Oryzasativa) 长芒稗 (Echinochloacaudata) ]为母本 ,高粱(Sorghumbicolor)基因型沈农 1 33为父本 ,进行属间远缘杂交 ,获得三属间杂交实粒种子。对杂交种F0 、F1、F2 代连续观察结果表明 :( 1 )杂交F0 代高度不孕 ,并伴有杂交种发育夭折现象发生 ,结实率仅为 2 63‰ ;( 2 )F1杂种优势明显 ,株高、穗长、1级枝梗数、小花数、结实粒数、结实率、千粒重诸性状超母本优势为 0 61 %~ 2 0 5 6% ;主茎叶片数多于母本 1片 ,总叶面积超亲优势为 1 1 95 % ;F1出现母本没有的红芒、红护颖和紫柱头 3个可遗传性状 ;( 3)F2 除在生育期、株高及穗长等性状发生分离外 ,其典型特征是穗型、芒性、芒色、柱头颜色。 展开更多
关键词 母本 旱稻 性状 穗长 杂种表现 株高 杂交种 基因型 不孕 观察
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建立甜高粱(Sorghum bicolor)高频、高效再生体系的研究 被引量:16
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作者 刘宣雨 刘树君 宋松泉 《中国农业科学》 CAS CSCD 北大核心 2010年第23期4963-4969,共7页
【目的】建立能源植物甜高粱(Sorghum bicolor L.Moench)的高频、高效离体培养再生体系,为遗传转化奠定基础。【方法】以甜高粱品种凯勒的芽顶端分生组织为外植体,探讨在甜高粱直接诱导丛生芽的培养过程中,无菌实生苗的适合苗龄,适宜的... 【目的】建立能源植物甜高粱(Sorghum bicolor L.Moench)的高频、高效离体培养再生体系,为遗传转化奠定基础。【方法】以甜高粱品种凯勒的芽顶端分生组织为外植体,探讨在甜高粱直接诱导丛生芽的培养过程中,无菌实生苗的适合苗龄,适宜的激素组合与比例;并将获得的最佳培养方法应用于其它两个甜高粱品种:M-81E和意达利,以研究此途径的基因型依赖性。【结果】利用3d苗龄的芽顶端分生组织作为外植体容易获得较高的分生组织膨大率。甜高粱丛生芽诱导的适宜激素组合为4.0mg·L-16-苄基腺嘌呤+0.5mg·L-12,4-二氯苯氧乙酸+0.5mg·L-1噻重氮苯基脲,可获得91%的丛生芽诱导频率。适合甜高粱快速生根的激素配方为0.5mg·L-1萘乙酸。通过芽顶端分生组织直接诱导丛生芽途径,每个外植体可诱导出上百个芽,最终产生30—40株再生苗。M-81E和意达利具有与凯勒相似的丛生芽诱导频率及效率。【结论】本研究成功地建立了甜高粱的高频、高效离体培养再生体系,且具有外植体来源不受限制,基因型依赖性弱,遗传稳定性好的优点。 展开更多
关键词 甜高粱 芽顶端分生组织 丛生芽 基因型 高频高效的再生体系
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高粱(Sorghum bicolor)分子图谱的构建及寄生草(Striga asiatica)萌发诱导物基因的定位 被引量:13
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作者 徐吉臣 Yohan M. Weerasuriya Jeffery L. Bennetzen 《Acta Genetica Sinica》 SCIE CAS CSCD 北大核心 2001年第9期870-876,共7页
高粱是世界上第五大主要粮食作物,也是非洲国家的主要粮食来源之一,Striga asiatica是一种寄生于高粱等主要农作物的野生草之一。选用两个对寄生草抗性表现差异的 高粱品系“山桂红”和“SRN39”作亲本,构建了一... 高粱是世界上第五大主要粮食作物,也是非洲国家的主要粮食来源之一,Striga asiatica是一种寄生于高粱等主要农作物的野生草之一。选用两个对寄生草抗性表现差异的 高粱品系“山桂红”和“SRN39”作亲本,构建了一个重组近交系群体(Recombinant inbred, RI),并随机筛选出94个系用于构建分子连锁图谱和基因定位。在应用的286个多态性标记 中,有251个标记分别标定在10条不同的连锁群上,标记间的平均图距为7.1cm,总图谱覆盖 了高粱基因组的1779cm,是目前国际上几个比较完整的高粱分子连锁图谱之一。群体的共 分离分析表明,与寄生草抗性有关的萌发诱导物基因(Germinination stimulant gene-GermStim) 位于高粱的遗传连锁群J上,相距较近的分子标记为13cm。进一步的精细定位分析,发现有 两个分子标记分别位于基因的两侧,距离为1.6和2.1个cm。 展开更多
关键词 高粱 重组近交系 寄生草 连锁图谱 萌发诱导物 基因定位
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高粱[Sorghum bicolor(L.)Moench.]叶面积校正值(K 值)的初步研究 被引量:12
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作者 李雁鸣 《河北农业大学学报》 CAS CSCD 北大核心 1993年第3期31-36,共6页
通过对两个高粱品种叶面积校正值(K 值)的初步研究,提出了在高粱叶面积测算中采用叶面积校正值K=0.72的建议,并对K 值在应用中的可靠性进行了分析。
关键词 高粱 叶面积
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