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Combining ability of Egyptian cotton(Gossypium barbadense L.)reveals genetic potential for improved yield and fiber quality
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作者 Abdelghany Ahmed M. El-Banna Aly A.A. +5 位作者 Lamlom Sobhi F El-Sorady Gawhara A. Salama Ehab A.A. Ren Honglei Shaibu Abdulwahab S. Yehia Waleed M.B. 《Journal of Cotton Research》 CAS 2024年第2期109-122,共14页
Background As the most widely cultivated fiber crop,cotton production depends on hybridization to unlock the yield potential of current varieties.A deep understanding of genetic dissection is crucial for the cultivati... Background As the most widely cultivated fiber crop,cotton production depends on hybridization to unlock the yield potential of current varieties.A deep understanding of genetic dissection is crucial for the cultivation of enhanced hybrid plants with desired traits,such as high yield and fine fiber quality.In this study,the general combining ability(GCA)and specific combining ability(SCA)of yield and fiber quality of nine cotton parents(six lines and three testers)and eighteen F1 crosses produced using a line×tester mating design were analyzed.Results The results revealed significant effects of genotypes,parents,crosses,and interactions between parents and crosses for most of the studied traits.Moreover,the effects of both additive and non-additive gene actions played a notably significant role in the inheritance of most of the yield and fiber quality attributes.The F1 hybrids of(Giza 90×Aust)×Giza 86,Uzbekistan 1×Giza 97,and Giza 96×Giza 97 demonstrated superior performance due to their favorable integration of high yield attributes and premium fiber quality characteristics.Path analysis revealed that lint yield has the highest positive direct effect on seed cotton yield,while lint percentage showed the highest negative direct effect on seed cotton yield.Principal component analysis identified specific parents and hybrids associated with higher cotton yield,fiber quality,and other agronomic traits.Conclusion This study provides insights into identifying potential single-and three-way cross hybrids with superior cotton yield and fiber quality characteristics,laying a foundation for future research on improving fiber quality in cotton. 展开更多
关键词 gossypium barbadense l. Combining ability Seed cotton yield Fiber quality Cluster analysis Path analysis
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Assessing genetic variation in Gossypium barbadense L.germplasm based on fibre characters
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作者 ALAGARSAMY Manivannan 《Journal of Cotton Research》 CAS 2023年第3期186-194,共9页
Background Gossypium barbadense L.has specific fibre in terms of its length,strength,and fineness,and known as extra-long staple(ELS) cotton,Sea–Island cotton,or Egyptian cotton.Narrow genetic base with less genetic ... Background Gossypium barbadense L.has specific fibre in terms of its length,strength,and fineness,and known as extra-long staple(ELS) cotton,Sea–Island cotton,or Egyptian cotton.Narrow genetic base with less genetic variability is observed in G.barbadense germplasm.Hence,this study was aimed to evaluate the genetic variability present in 108 germplasm accessions of G.barbadense and to identify the superior genotypes based on the fibre traits.Results We evaluated 108 accessions for five fibre quality traits along with three checks in augmented block design.All fibre traits showed significant differences among genotypes,indicating that there is genetic potential for improvement.Fibre strength and micronaire(MIC) showed high phenotypic and genotypic coefficients of variation.High heritability combined with high genetic advance as percentage of mean(GAM) was recorded for fibre length,strength,and micronaire.Fibre strength and fibre length were significantly correlated with each other,while both showed negative correlation with micronaire.Principal component analysis and Biplot analysis showed that uniformity index discriminated all the genotypes in higher level,while fibre length and strength were medium in discrimination power.Biplot revealed genotypes DB 16,EC959191,GSB 39,ARBB 20,5746U,EA 203,and EA 201 were genetically diverse.Hierarchal cluster analysis based on unweighted paired group method using arithmetic average(UPGMA) grouped the genotypes into four clusters,with each cluster consisting of 4,18,48,and 38 genotypes,respectively.Conclusion Among the genotypes,34 for fibre length(> 35 mm),18 for fibre strength(> 40.4 g·tex^(-1)) and 66 for micronaire(3.7-4.2,A grade) were identified as potential accessions based on their superiority.The superior fibre genotypes identified in this study are potential lines for the ELS cotton breeding program. 展开更多
关键词 Characterization Diversity Extra-long staple cotton Fibre quality traits GERMPlASM gossypium barbadense
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基因枪介导的海岛棉(Gossypium barbadense L.)茎尖遗传转化体系的建立 被引量:3
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作者 马玲玲 魏延宏 +4 位作者 何兰兰 柴蒙亮 朱华国 孙杰 张薇 《棉花学报》 CSCD 北大核心 2014年第3期213-220,共8页
以新疆海岛棉品种新海13号的茎尖为转化受体,采用基因枪介导法,研究DNA包裹浓度、微载体种类、前渗处理时间、轰击条件、筛选方法等对茎尖转化的影响,建立了基因枪法介导的海岛棉茎尖转化体系。研究结果表明,采用1.5μg·μL-1的质... 以新疆海岛棉品种新海13号的茎尖为转化受体,采用基因枪介导法,研究DNA包裹浓度、微载体种类、前渗处理时间、轰击条件、筛选方法等对茎尖转化的影响,建立了基因枪法介导的海岛棉茎尖转化体系。研究结果表明,采用1.5μg·μL-1的质粒DNA包裹1.0μm金粉微载体,前渗处理12 h,轰击压力为7.584 MPa(1100 psi),轰击距离为6 cm,后渗处理16 h,恢复处理24 h,在120 mg·L-1卡那霉素浓度下直接筛选35 d。在添加4g·L-1活性炭粒的生根培养基中诱导抗性幼苗生根,获得抗性再生植株。通过PCR和RT-PCR检测,共得到5株转抗除草剂基因EPSPS的阳性植株。该研究体系的建立为海岛棉的遗传转化奠定了基础,为海岛棉的育种工作提供了材料。 展开更多
关键词 海岛棉 基因枪法 茎尖 遗传转化
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Genetic Dissection of Net Effects Between Yield and Its Components in Sea Island Cotton (Gossypium barbadense L.)
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作者 YE Zi-hong MEI Yong-jun +2 位作者 ZOU Ke-qin FU Xian-shu JIANG Lin-shu 《Agricultural Sciences in China》 CAS CSCD 2008年第9期1052-1060,共9页
The number of bolls, individual boll weight, and lint percentage are three important yield components of lint yield of cotton. In the present study, nine parents, twenty F1, and twenty F2 crosses of intraspecific hybr... The number of bolls, individual boll weight, and lint percentage are three important yield components of lint yield of cotton. In the present study, nine parents, twenty F1, and twenty F2 crosses of intraspecific hybrids of sea island cotton (Gossypium barbadense L.) were grown at Tarim University, Alar, Xinjiang, China, in 2000 and 2001. Lint yield and its three component traits were measured and analyzed by an extended conditional mixed linear model approach. Lint percentage made the largest contribution to additive, additive x environment, and dominance x environment variations for lint yield. The contribution ratios of number of bolls, individual boll weight, and combined contribution of these two traits to additive x environment and dominance x environment variations for lint yield were not statistically significant. Lint yield of different parents could be affected differently by lint percentage. Lint yield of some parents was closely correlated with lint percentage, whereas for other parents, the behavior of individual boll weight and number of bolls played much more important roles on lint yield than that of lint percentage. It was shown by the conditional and conventional predicted additive x environment interaction effects of parents that the environment condition could influence different parents with varied effects. 展开更多
关键词 YIElD yield components gossypium barbadense l. conditional analysis
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Molecular Cloning and Characterization of Genes Involved in Cotton(Gossypium barbadense L.) Response to Verticillium dahliae
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作者 XU Li,ZHANG Xian-long,ZHU Long-fu,TU Li-li(National Key Laboratory of Crop Genetic Improvement,Huazhong Agricultural University,Wuhan,Hubei 430070,China) 《棉花学报》 CSCD 北大核心 2008年第S1期56-,共1页
Verticillium dahliae Kleb.is a necrotrophic plant pathogen which causes serious soil borne vascular disease in cotton.The molecular basis the defense response of cotton to this pathogen is
关键词 gossypium barbadense l Molecular Cloning and Characterization of Genes Involved in Cotton Response to Verticillium dahliae
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Genetic variation in LBL1 contributes to depth of leaf blades lobes between cotton subspecies, Gossypium barbadense and Gossypium hirsutum 被引量:2
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作者 HE Dao-fang ZHAO Xiang +5 位作者 LIANG Cheng-zhen ZHU Tao Muhammad Ali Abid CAI Yong-ping HE Jin-ling ZHANG Rui 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第11期2394-2404,共11页
Leaf is a essential part of the plants for photosynthetic activities which mainly economize the resources for boll heath. Significant variations of leaf shapes across the Gossypium sp. considerably influence the infil... Leaf is a essential part of the plants for photosynthetic activities which mainly economize the resources for boll heath. Significant variations of leaf shapes across the Gossypium sp. considerably influence the infiltration of sunlight for photosynthesis. To understand the genetic variants and molecular processes underlying for cotton leaf shape, we used F2 population derived from upland cotton genotype P30A (shallow-lobed leaf) and sea-island cotton genotype ISR (deep-lobed leaf) to map leaf deep lobed phenotype controlling genes LBL1 and LBL2. Genetic analysis and localization results have unmasked the position and interaction between both loci of LBL1 and LBL2, and revealed the co-dominance impact of the genes in regulating depth of leaf blades lobes in cotton. LBL1 had been described as a main gene and member of transcription factor family leucine zipper (HD-ZIPI) from a class I homologous domain factor Gorai.OO2G244000. The qRT-PCR results elaborated the continuous change in expression level of LBL1 at different growth stages and leaf parts of cotton. Higher expression level was observed in mature large leaves followed by medium and young leaves respectively. For further confirmation, plants were tested from hormonal induction treatments, which explained that LBL 1 expression was influenced by hormonal signaling. Moreover, the highest expression level was detected in brassinolides (BR) treatment as compared to other hormones, and this hormone plays an important role in the process of leaf blade lobed formation. 展开更多
关键词 leaf blades lobes HD-ZIPI lBl1 COTTON gossypium barbadense gossypium hirsutum
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Inheritance of Fertility Restoration for Cytoplasmic Male Sterility in a New Gossypium barbadense Restorer 被引量:1
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作者 ZHANG Xiao-quan WANG Xue-de JIANG Pei-dong ZHU Wei 《Agricultural Sciences in China》 CAS CSCD 2010年第4期472-476,共5页
In order to clarify inheritance mechanism of fertility restoration for cytoplasmic male sterility (CMS) in a new Gossypium barbadense restorer line Hai R which was found in the fertility test crossing of G. hirsutum... In order to clarify inheritance mechanism of fertility restoration for cytoplasmic male sterility (CMS) in a new Gossypium barbadense restorer line Hai R which was found in the fertility test crossing of G. hirsutum CMS lines with G. barbadense germplasms. 23 fertility segregation populations of F2 and backcross were used to analyze the inheritance of fertility restoring gene(s) of Hai R. The result showed that Hai R had one major dominant gene (RfB) to control the CMS fertility restoration and this fertility restoration gene functioned at the sporophytic level. The sterile cytoplasm background might not only influence the transmission rate of male gamete but also that of female gamete when the restorer gene was recessive. It could be deduced that this fertility restoration gene might come from G. harknessii cotton, Hai R is of value in the application of cotton interspecific hybrid breeding. 展开更多
关键词 gossypium barbadense cytoplasmic male sterility fertility restoring gene
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Study on the Mitochondrial Genome of Sea Island Cotton(Gossypium barbadense) by BAC Library Screening
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作者 SU Ai-guo LI Shuang-shuang +5 位作者 LIU Guo-zheng LEI Bin-bin KANG Ding-ming LI Zhao-hu MA Zhi-ying HUA Jin-ping 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第5期945-953,共9页
The plant mitochondrial genome displays complex features, particularly in terms of cytoplasmic male sterility (CMS). Therefore, research on the cotton mitochondrial genome may provide important information for analy... The plant mitochondrial genome displays complex features, particularly in terms of cytoplasmic male sterility (CMS). Therefore, research on the cotton mitochondrial genome may provide important information for analyzing genome evolution and exploring the molecular mechanism of CMS. In this paper, we present a preliminary study on the mitochondrial genome of sea island cotton (Gossypium barbadense) based on positive clones from the bacterial artificial chromosome (BAC) library. Thirty-five primers designed with the conserved sequences of functional genes and exons of mitochondria were used to screen positive clones in the genome library of the sea island cotton variety called Pima 90-53. Ten BAC clones were obtained and verified for further study. A contig was obtained based on six overlapping clones and subsequently laid out primarily on the mitochondrial genome. One BAC clone, clone 6 harbored with the inserter of approximate 115 kb mtDNA sequence, in which more than 10 primers fragments could be amplified, was sequenced and assembled using the Solexa strategy. Fifteen mitochondrial functional genes were revealed in clone 6 by gene annotation. The characteristics of the syntenic gene/exon of the sequences and RNA editing were preliminarily predicted. 展开更多
关键词 gossypium barbadense BAC library mitochondrial genome RNA editing
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Genetic Diversity in the Environmental Conditioning of <i>Gossypium hirsutum</i>and <i>Gossypium barbadense</i>Cultivars
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作者 John J. Burke 《American Journal of Plant Sciences》 2017年第3期517-532,共16页
Enzyme adaptations to temperature occur constantly as temperature patterns modulate diurnally and seasonally. These adaptations entail qualitative and/or quantitative metabolic changes that often provide a competitive... Enzyme adaptations to temperature occur constantly as temperature patterns modulate diurnally and seasonally. These adaptations entail qualitative and/or quantitative metabolic changes that often provide a competitive advantage, impact adjustment to new environments, and effect the survival of the species. Changes in isozymes or allozymes, changes in enzyme concentration, modification by substrate and effectors, and metabolic regulation of enzyme function without changing enzyme composition are all possible strategies for adaptation to changes in temperature. The degree of adaptation among cotton cultivars to a specific thermal regime may be difficult to determine from phenotypic responses of the plants. The present study evaluated the thermal sensitivity of Gossypium hirsutum L. and Gossypium barbadense L. cultivars following growth under distinct thermal environments. The metabolic fitness of Gossypium hirsutum L. and Gossypium barbadense L. cultivars showed that the Gossypium hirsutum L. cultivars grown in a 28&deg;C/20&deg;C day/night cycle tended to be better equipped to cope with a 16 h - 38&deg;C treatment than the same cultivars grown in a 38&deg;C/32&deg;C day/night cycle. The Gossypium barbadense L. cultivars, on the other hand, grown in a 38&deg;C/32&deg;C day/night cycle tended to be equipped to cope with a 16 h - 38&deg;C treatment than the same cultivars grown in a 28&deg;C/20&deg;C day/night cycle. The Gossypium hirsutum L. line TX 303 is an exception to these general trends as its responses were similar to the Gossypium barbadense L. St. Vincent and Pima S-7 cottons. 展开更多
关键词 Cotton gossypium hirsutum l. gossypium barbadense l. Thermal Sensitivity Adaptation
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Construction of Molecular Linkage Map of Cultivated Allotetraploid Cotton (Gossypium hirsutum L.×G. barbadense L. )with SSR and RAPD Markers
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作者 Jun ZHANG, Wang-zhen GUO, Tian-zhen ZHANG(Cotton Research Institute, National Key Laboratory of Crop Genetics andGermplasm Enhancement, Nanjing Agricultural University,Nanjing 210095,China) 《棉花学报》 CSCD 北大核心 2002年第S1期16-16,共1页
A permanent doubled haploid population fromthe crossing of G.hirsutum × G.barbadensewere developed by means of Vsg,virescentlymarked semigamy line in sea island cotton,which was characterized by a cytologicalmech... A permanent doubled haploid population fromthe crossing of G.hirsutum × G.barbadensewere developed by means of Vsg,virescentlymarked semigamy line in sea island cotton,which was characterized by a cytologicalmechanism for developing haploids with certainconvenience,and thus constructed 展开更多
关键词 gossypium barbadense l COTTON linkage COTTON doubled HAPlOID chromosome permanent crossing
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Molecular Cloning and Characterization of the Actin-depolymerizing Factor Gene in Gossypium barbadense
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作者 MA Zhi-ying,CHI Ji-na,WANG Xing-fen,ZHOU Hong-mei,ZHANG Gui-yin(Agricultural University of Hebei,Baoding,Hebei 071001,China) 《棉花学报》 CSCD 北大核心 2008年第S1期41-,共1页
Sea Island cotton(Gossypium barbadense L.) has been highly valued in Verticillium wilt resistance and many fiber qualities including fiber length,strength,and fineness.To identify whether
关键词 Molecular Cloning and Characterization of the Actin-depolymerizing Factor Gene in gossypium barbadense GENE length
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Mapping of QTL for Fiber Length Using Interspecific Gossypium hirsutum × G.barbadense F_2 Population
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作者 PREETHA S RAVEENDRAN T S 《棉花学报》 CSCD 北大核心 2008年第S1期64-,共1页
Cotton occupies a pre-eminent place among cash crops as it guides the destiny of a large section of the farming community as well as that of a flourishing textile industry.As the yarn manufacturing industry has underg... Cotton occupies a pre-eminent place among cash crops as it guides the destiny of a large section of the farming community as well as that of a flourishing textile industry.As the yarn manufacturing industry has undergone a technological revolution,more emphasis is given to quality of the raw 展开更多
关键词 G.barbadense F2 Population length Mapping of QTl for Fiber length Using Interspecific gossypium hirsutum
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GbAt11 gene cloned from Gossypium barbadense mediates resistance to Verticillium wilt in Gossypium hirsutum
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作者 QIU Tingting WANG Yanjun +3 位作者 JIANG Juan ZHAO Jia WANG Yanqing QI Junsheng 《Journal of Cotton Research》 2020年第2期69-78,共10页
Background:Gossypium hirsutum is highly susceptible to Verticillium wilt,and once infected Verticillium wilt,its yield is greatly reduced.But G.barbadense is highly resistant to Verticillium wilt.It is possible that t... Background:Gossypium hirsutum is highly susceptible to Verticillium wilt,and once infected Verticillium wilt,its yield is greatly reduced.But G.barbadense is highly resistant to Verticillium wilt.It is possible that transferring some disease-resistant genes from G.barbadense to G.hirsutum may contribute to G.hirsutum resistance to Verticillium wilt.Result:Here,we described a new gene in G.barbadense encoding AXMN Toxin Induced Protein-11,Gb At11,which is specifically induced by Verticillium dahliae in G.barbadense and enhances Verticillium wilt resistance in G.hirsutum.Overexpression in G.hirsutum not only significantly improves resistance to Verticillium wilt,but also increases the boll number per plant.Transcriptome analysis and real-time polymerase chain reaction showed that Gb At11 overexpression can simultaneously activate FLS2,BAK1 and other genes,which are involved in ETI and PTI pathways in G.hirsutum.Conclusion:These data suggest that Gb At11 plays a very important role in resistance to Verticillium wilt in cotton.And it is significant for improving resistance to Verticillium wilt and breeding high-yield cotton cultivars. 展开更多
关键词 gossypium barbadense GbAt11 Verticillium wilt RESISTANCE
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Isolation and Analysis of Expansins from the Gossypium barbadense Cotton Elongating Fiber
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作者 TU Li-li,DENG Feng-lin,TAN Jia-fu,LI Yang,ZHANG Xian-long(National Key Laboratory of Crop Genetic Improvement,Huazhong Agricultural University,Wuhan,Hubei 430070,China) 《棉花学报》 CSCD 北大核心 2008年第S1期48-,共1页
Gossypium barbadense L.is one of the most valuable cotton species due to its silkiness,luster,long staple,and high strength.Transferring the excellent fiber traits from G.barbadense as the secondary gene pool to the w... Gossypium barbadense L.is one of the most valuable cotton species due to its silkiness,luster,long staple,and high strength.Transferring the excellent fiber traits from G.barbadense as the secondary gene pool to the widely cultivated G.hirsutum via traditional and molecular-aided selection 展开更多
关键词 Isolation and Analysis of Expansins from the gossypium barbadense Cotton Elongating Fiber
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多环境下陆地棉(Gossypium hirsutum L.)重组自交系铃重与衣分性状的QTL分析 被引量:7
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作者 贾菲 孙福鼎 +8 位作者 李俊文 刘爱英 石玉真 龚举武 商海红 巩万奎 王涛 刘志 袁有禄 《分子植物育种》 CAS CSCD 2011年第3期318-326,共9页
本研究利用以SGK9708为母本,0-153为父本构建的196个陆地棉重组自交系(F6:8)构建了包含186个标记,总长827.84cM,标记间平均距离4.45cM,覆盖棉花基因组18.6%的遗传连锁图谱,并对7个环境下的铃重和衣分性状进行QTL定位和上位性互作分析。... 本研究利用以SGK9708为母本,0-153为父本构建的196个陆地棉重组自交系(F6:8)构建了包含186个标记,总长827.84cM,标记间平均距离4.45cM,覆盖棉花基因组18.6%的遗传连锁图谱,并对7个环境下的铃重和衣分性状进行QTL定位和上位性互作分析。利用两种分析软件(WinQTLcart2.5和QTLNetwork2.0)共同定位了多个环境下稳定表达的5个主效QTLs(qBW-1-1,qBW-1-2,qLP-2-1,qLP-2-2和qLP-4-2)。利用QTLNetwork2.0分别检测到4对铃重上位性互作QTLs和7对衣分上位性互作QTLs,以背景位点间的互作和加性效应位点与背景位点间的互作为主。除主效QTL外,上位性效应也是陆地棉铃重和衣分性状的重要遗传基础。本研究定位的5个主效QTLs为选择高铃重、高衣分品种的棉花分子标记辅助育种提供了重要依据。 展开更多
关键词 陆地棉(gossypium hirsutum l.) 重组自交系 铃重 衣分 QTl
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棉花(Gossypium hirsutum L.)原生质体培养的体细胞胚胎发生及植株再生 被引量:9
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作者 佘建明 吴敬音 +4 位作者 周邗扬 王海波 陈志贤 李淑君 岳建雄 《江苏农业学报》 CSCD 1989年第4期54-60,共7页
以陆地棉(G.hirsutum L.)3118、晋棉4号和柯字棉312等3个品种为材料,取种子无菌苗的下胚轴诱导愈伤组织,建立胚性细胞悬浮培养系。以2%纤维素酶Ono-zuka RS和0.1%离析软化酶Y-23组成的混合酶液,从细胞悬浮培养物游离出原生质体。用含... 以陆地棉(G.hirsutum L.)3118、晋棉4号和柯字棉312等3个品种为材料,取种子无菌苗的下胚轴诱导愈伤组织,建立胚性细胞悬浮培养系。以2%纤维素酶Ono-zuka RS和0.1%离析软化酶Y-23组成的混合酶液,从细胞悬浮培养物游离出原生质体。用含低融点琼脂糖的K_3培养基包埋原生质体,采用园柱及薄层漂浮平板培养方式。3个品种的原生质体培养都得到了愈伤组织,其中晋棉4号和柯字棉312品种的愈伤组织转到低激素水平或无激素的MS-2培养基上诱导产生胚状体,胚状体在无激素的MS-1培养基上形成了植株。 展开更多
关键词 棉花 原生质体 培养 植株再生
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施氮量对不同开花期棉(Gossypium hirsutum L.)铃纤维细度和成熟度形成的影响 被引量:2
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作者 赵文青 孟亚利 +4 位作者 陈兵林 王友华 朱丽丽 王飞飞 周治国 《植物营养与肥料学报》 CAS CSCD 北大核心 2011年第5期1212-1219,共8页
为兼顾试验的重复性和生态区域性,选用高品质棉(科棉1号)和常规棉(美棉33B)品种为材料,于2005年分别在江苏南京(118°50'E,32°02'N,长江流域下游棉区)和江苏徐州(117°11'E,34°15'N,黄河流域黄淮棉区... 为兼顾试验的重复性和生态区域性,选用高品质棉(科棉1号)和常规棉(美棉33B)品种为材料,于2005年分别在江苏南京(118°50'E,32°02'N,长江流域下游棉区)和江苏徐州(117°11'E,34°15'N,黄河流域黄淮棉区)设置施氮量(低氮N 0 kg/hm2;适氮N 240 kg/hm2;高氮N 480 kg/hm2)试验,研究施氮量对不同开花期棉铃纤维细度、成熟度和马克隆值形成的影响。结果表明,(1)施氮量显著影响棉纤维细度、成熟度和马克隆值的形成过程,但三者在不同开花期对氮素水平的响应不同,施氮量与开花期对棉纤维细度、成熟度和马克隆值的形成存在互作效应。8月10日前开花的棉铃,铃期[花后0~50 d(DPA)]日均温在23.3℃以上,纤维细度、马克隆值以N 0 kg/hm2施氮量下最大,棉纤维马克隆值与纤维细度的相关性较大;8月25日开花的棉铃(铃期日均温在20.8~23.3℃之间),纤维成熟度、马克隆值以N 240 kg/hm2施氮量下最大;9月10日开花棉铃(铃期日均温低于20.8℃),纤维细度、成熟度和马克隆值均以N 480 kg/hm2最大,棉纤维马克隆值与纤维成熟度的相关性增强。(2)影响不同开花期间纤维细度、成熟度和马克隆值的主要因素是铃期日均温;最终纤维细度、成熟度和马克隆值在不同施氮量之间的变异与不同开花期(铃期日均温不同)间的变异比较,前者显著小于后者。综上,因开花期不同而形成的铃期日均温是决定纤维细度、成熟度和马克隆值的最重要因素,施氮量可通过对位叶叶氮浓度NA影响棉纤维细度、成熟度和马克隆值的形成过程,增加施氮量可减小上述指标在不同开花期间的差异。 展开更多
关键词 棉花 施氮量 开花期 纤维细度 纤维成熟度 纤维马克隆值
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棉花(Gossypium hirsutum L.)花粉壁的发育 被引量:2
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作者 王毅 娄成后 《作物学报》 CAS CSCD 北大核心 1994年第3期277-281,T003,共6页
用光镜和透射电镜观察研究了棉花花粉壁的发育过程.棉花花粉壁的发生始于四分孢子时期,四分体形成后,在小孢子的质膜与胼胝质壁之间逐渐形成多糖性质的原外壁.游离小孢子时期,在一定间隔的原外壁中小孢子质膜表面积累外壁物质并形成基粒... 用光镜和透射电镜观察研究了棉花花粉壁的发育过程.棉花花粉壁的发生始于四分孢子时期,四分体形成后,在小孢子的质膜与胼胝质壁之间逐渐形成多糖性质的原外壁.游离小孢子时期,在一定间隔的原外壁中小孢子质膜表面积累外壁物质并形成基粒棒,之后在基粒棒的下部和上部分别横向延展并接合形成基足层和覆盖层.花粉内壁发生时期较晚,大约在大液泡形成之前.但内层和外层花粉壁均在小孢子有丝分裂之前同时建成.构建花粉壁的物质主要来自绒毡层的周原质团和小孢子原生质体的代谢分泌.小孢子胞质中在四分体时期形成的巨型内质网复合体是较为特殊的细胞结构,在游离小孢子时期,巨型内质网不断产生大量的内含微粒物的运输小泡,这种小囊泡表现出向质膜趋向运动并进一步与质膜融合.推测由内质网复合体产生的这些小囊泡是小孢子原生质体向质膜外运输花粉壁构建物质的主要形式. 展开更多
关键词 棉花 小孢子 花粉壁 内质网
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利用重组自交系进行陆地棉(GossypiumhirsutumL.)棉籽油分含量和蛋白质含量的QTL定位 被引量:5
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作者 刘小芳 李俊文 +10 位作者 余学科 石玉真 贾菲 孙福鼎 刘爱英 龚举武 商海红 巩万奎 王涛 邓化冰 袁有禄 《分子植物育种》 CAS CSCD 北大核心 2013年第5期520-528,共9页
本研究利用以0—153为父本和SGK9708为母本构建的196个陆地棉重组自交系(F6:8)为材料对棉籽油分含量和蛋白质含量进行了遗传分析和QTL定位。通过四个环境下的群体材料的棉籽油分含量和蛋白质含量分析表明棉籽油分含量和蛋白质含量均... 本研究利用以0—153为父本和SGK9708为母本构建的196个陆地棉重组自交系(F6:8)为材料对棉籽油分含量和蛋白质含量进行了遗传分析和QTL定位。通过四个环境下的群体材料的棉籽油分含量和蛋白质含量分析表明棉籽油分含量和蛋白质含量均为典型数量性状,其中棉籽油分含量存在超低亲本的超亲分离,而其蛋白质含量呈现超高亲本的超亲分离。相关性分析显示棉籽油分含量和蛋白质含量呈极显著负相关,同步提高两者在棉籽的的含量较为困难。基于包含186个标记,总长827.84cM,标记间平均距离4.45cM,覆盖棉花基因组18.6%的遗传连锁图谱,应用WinQTLcart2.5软件对四个环境下的棉籽油分含量和蛋白质含量进行了QTL定位,共检测到8个油分含量QTLs,解释表型变异5.42%~13.15%,其中稳定的QTL1个。4个蛋白质含量QTLs,解释表型变异4.35%~14.93%。本研究结果可为进行陆地棉种子营养品质性状的分子遗传改良奠定基础。 展开更多
关键词 陆地棉 重组自交系 棉籽油分 蛋白质 QTl
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Screening of drought resistance indices and evaluation of drought resistance in cotton(Gossypium hirsutum L.) 被引量:16
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作者 ZOU Jie HU Wei +3 位作者 LI Yu-xia HE Jia-qi ZHU Hong-hai ZHOU Zhi-guo 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2020年第2期495-508,共14页
Sixteen cotton cultivars widely planted in China were sowed under five different drought concentrations(0,2.5,5,7.5,and 10%)using PEG6000 to screen the indices of drought resistance identification and explore the drou... Sixteen cotton cultivars widely planted in China were sowed under five different drought concentrations(0,2.5,5,7.5,and 10%)using PEG6000 to screen the indices of drought resistance identification and explore the drought resistance of different cotton cultivars.Eighteen physiological indices including root,stem,and leaf water contents(RWC,SWC,and LWC),net photosynthetic rate(Pn),the maximum photochemical quantum yield(Fv/Fm),the actual photochemical quantum yield(ΦPSII),non-photochemical quenching coefficient(NPQ),leaf water potential(LWP),osmotic potential(Ψs),leaf relative conductivity(REC),leaf proline content(Pro),leaf and root soluble protein contents(LSPC and RSPC),leaf and root malondialdehyde(MDA)contents(LMDA and RMDA),root superoxide dismutase,peroxidase,and catalase activities(RSOD,RPOD,and RCAT)were measured.Results indicated the 18 physiological indices can be converted into five or six independent comprehensive indices by principal component analysis,and nine typical indices(Fv/Fm,SWC,LWP,Pro,LMDA,RSPC,RMDA,RSOD,and RCAT)screened out by a stepwise regression method could be utilized to evaluate the drought resistance.Moreover,the 16 cotton cultivars were divided into four types:drought sensitive,drought weak sensitive,moderate drought resistant,and drought resistant types.The resistance ability of two selected cotton cultivars(drought resistant cultivar,Dexiamian 1;drought sensitive cultivar,Yuzaomian 9110)with contrasting drought sensitivities were further verified by pot experiment.Results showed that the responses of final cotton biomass,yield,and yield composition to drought were significantly different between the two cultivars.In conclusion,drought resistant cultivar Dexiamian 1 and drought sensitive cultivar Yuzaomian 9110 were screened through hydroponics experiment,which can be used as ideal experimental materials to study the mechanism of different cotton cultivars with contrasting drought sensitivities in response to drought stress. 展开更多
关键词 cotton(gossypium hirsutum l.) drought resistance screening indices principal component analysis cultivar verification
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