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Cloning, Characterization and Transformation of Methyltransferase 2a Gene (Zmet2a) in Maize (Zea mays L.)
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作者 Xin Qi Yu Wang +5 位作者 Xing Zhang Xiaoshuang Wei Xinyang Liu Zhennan Wang Zhenhui Wang Fenglou Ling 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第7期1767-1779,共13页
DNA methylation is an important epigenetic regulatory mechanism,it regulates gene expression by recruiting proteins involved in gene repression or by inhibiting the binding of transcription factor(s)to DNA.In this stu... DNA methylation is an important epigenetic regulatory mechanism,it regulates gene expression by recruiting proteins involved in gene repression or by inhibiting the binding of transcription factor(s)to DNA.In this study,a novel methyltransferase 2a gene(Zmet2a)was cloned in maize and identified by polymerase chain reaction-base(PCR-base)using a bioinformatics strategy.The Zmet2a cDNA sequence is 2739 bp long and translates to 912 amino acid peptides.The Zmet2a protein revealed that it contains BAH and CHROMO structural domains,is a non-transmembrane protein that is hydrophilically unstable,and has no signal peptide structure.Meanwhile,we verified the biological roles of Zmet2a using transgenic Arabidopsis overexpressing Zmet2a and Zmet2a-knockout maize.Transgenic Zmet2a Arabidopsis thaliana showed highly significant advancement inflowering time,and Zmet2a-knockout maize showed advancement inflowering time,with significant changes in several traits.Altogether,these report the role of Zmet2a in the regulation offlowering time,which will lay a foundation for revealing the biological function and epigenetic regulation mechanism of Zmet2a in the growth,development andflowering of maize. 展开更多
关键词 DNA methylation METHYLTRANSFERASE zea mays L flowering time functional analysis
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Maize cryptochromes 1a1 and 1a2 promote seedling photomorphogenesis and shade resistance in Zea mays and Arabidopsis
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作者 Xiaocong Fan Shizhan Chen +12 位作者 Wenjing Wu Meifang Song Guanghua Sun Shuaitao Yao Weimin Zhan Lei Yan Hongdan Li Yanpei Zhang Lijian Wang Kang Zhang Liangliang Jiang Jianping Yang Qinghua Yang 《The Crop Journal》 SCIE CSCD 2023年第4期1192-1203,共12页
Maize growth and development are regulated by light quality,intensity and photoperiod.Cryptochromes are blue/ultraviolet-A light receptors involved in stem elongation,shade avoidance,and photoperiodic flowering.To inv... Maize growth and development are regulated by light quality,intensity and photoperiod.Cryptochromes are blue/ultraviolet-A light receptors involved in stem elongation,shade avoidance,and photoperiodic flowering.To investigate the function of cryptochrome 1(CRY1) in maize,where it is encoded by Zm CRY1,we obtained two Zm CRY1a genes(Zm CRY1a1 and Zm CRY1a2),both of which share the highest similarity with other gramineous plants,in particular rice CRY1a by phylogenetic analysis.In Arabidopsis,overexpression of Zm CRY1a genes promoted seedling de-etiolation under blue and white light,resulting in dwarfing of mature plants.In seedlings of the maize inbred line Zong 31(Zm CRY1aOE),overexpression of Zm CRY1a genes caused a reduction in the mesocotyl and first leaf sheath lengths due to down-regulation of genes influencing cell elongation.In mature transgenic maize plants,plant height,ear height,and internode length decreased in response to overexpression of Zm CRY1a genes.Expression of Zm CRY1a were insensitive to low blue light(LBL)-induced shade avoidance syndrome(SAS) in Arabidopsis and maize.This prompted us to investigate the regulatory role of the gibberellin and auxin metabolic pathways in the response of Zm CRY1a genes to LBL treatment.We confirmed a link between Zm CRY1a expression and hormonal influence on the growth and development of maize under LBL-induced SAS.These results reveal that Zm CRY1a has a relatively conservative function in regulating maize photomorphogenesis and may guide new strategies for breeding high density-tolerant maize cultivars. 展开更多
关键词 zea mays L.Cryptochrome PHOTOMORPHOGENESIS Shade avoidance syndrome Hormone
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Determination and Quantification of Susceptibility of Heritance Resistance to Root Rot of Eight Commercial Genotypes of Maize (Zea mays L.)
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作者 Lazaro José Quintas Neal Walker McLaren 《Agricultural Sciences》 CAS 2023年第5期665-684,共20页
Maize is susceptible to a number of diseases that can infect all plant organs and serve as a constraint on cereal production. The reduction in cereal production caused by disease is estimated at an average of 9.4%. Co... Maize is susceptible to a number of diseases that can infect all plant organs and serve as a constraint on cereal production. The reduction in cereal production caused by disease is estimated at an average of 9.4%. Corn root rot contributes greatly to the reduction in grain production and quality. The main objective of this work was to review the research on root rot in maize to determine the susceptibility of genotypes to root rot and to quantify the inheritance of resistance to root rot in maize. The methodology used was a complete 8 × 8 diallel design planted during the year 1999/2000. Root discoloration, plant length, root volume, effective volume and yield were the evaluated parameters. To analyze the data and determine the combinatorial abilities, genetic correlations, heritability and correlated response, diallel analysis was used. Eight parental lines;P28, I137TN, MP706, E739, MO17, B37, B73, and B14 were planted. The lines were crossed into each other, all combinations according to the complete diallel model (Model 1). The F1 was harvested after maturation. For statistical analysis, the version of the Agrobase program (2016) was used. Results show that F1 hybrids showed significant differences in root rot discoloration, plant height, root volume, effective root volume and yield. The P28 line and the B73XE739 cross had, respectively, the highest general and specific combinations. Root discoloration had the highest genetic correlation (r<sub>A</sub> = 0.47) with plant length. Broad and narrow heritability for root rot discoloration were, respectively, h<sup>2</sup> = 0.81 and h<sub>2</sub><sub> </sub>= 0.51. Root rot discoloration showed the highest correlated response (C<sub>R</sub> = 0.14) on plant length. 展开更多
关键词 Maize (zea mays L.) DISCOLORATION INHERITANCE Hybrid Inbreeds Lines
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Use of the Biostimulant Based on the Mycorrhizae Consortium of the Glomeraceae Family in the Field to Improve the Production and Nutritional Status of Maize (Zea mays L.) Plants in Central Benin
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作者 Corentin Akpodé Sylvestre Abado Assogba +6 位作者 Sêmassa Mohamed Ismaël Hoteyi Mèvognon Ricardos Aguégué Nadège Adoukè Agbodjato Marcel Yévèdo Adoko Olaréwadjou Amogou Adolphe Adjanohoun Lamine Baba-Moussa 《Advances in Microbiology》 2023年第6期323-345,共23页
Excessive use of mineral fertilizers in maize farming negatively affects farmers’ income and impacts long-term soil health. This study aims to appreciate the effectiveness of biostimulant based on native Glomeraceae ... Excessive use of mineral fertilizers in maize farming negatively affects farmers’ income and impacts long-term soil health. This study aims to appreciate the effectiveness of biostimulant based on native Glomeraceae arbuscular mycorrhizal fungi on the production and uptake of phosphorus, nitrogen and potassium of maize (Zea mays L.) plants in central Benin. The trials were set up in a farming environment with thirty-four producers. The experimental design was composed of three treatments installed at 34 producers. Three growth parameters were evaluated on 60 ème days after sowing. Grain yield, nutritional status of maize plants and mycorrhization parameters were determined at harvest. The results showed that the Glomeraceae + 50% NPK (NPK: azote-phosphore-potassium)_Urea treatment improved the height, the crown diameter and the leaf area by 17.85%, 21.79% and 28.32% compared to the absolute control and by 0.41%, 1.11% and 1.46% compared to the 100% NPK_Urea treatment, respectively. Similarly, grain yield improved by 45.87% with the use of Glomeraceae + 50% NPK_Urea compared to the absolute control and by 3.96% compared to the 100% NPK_Urea treatment. The Glomeraceae + 50% NPK_Urea significantly improved the phosphorus and potassium uptake of maize plants. With respect to nitrogen uptake, no statistical difference was observed between treatments. The mycorrhizae strains used improved root infection in the maize plants. We recorded 66% frequency and 40.5% intensity of mycorrhization. The biostimulant based on indigenous Glomeraceae combined with 50% NPK_Urea can be used as a strategy to restore soil health and improve maize productivity in Benin. 展开更多
关键词 Ecological Resilience MICROORGANISM Plant Nutrition Sustainable Agriculture zea mays L.
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密度与氮肥对关中灌区夏玉米(Zea mays L.)群体光合生理指标的影响 被引量:45
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作者 马国胜 薛吉全 +3 位作者 路海东 张仁和 邰书静 任建宏 《生态学报》 CAS CSCD 北大核心 2008年第2期661-668,共8页
合理的密度是玉米构建良好群体结构、优化群体光合生理功能的基础,适宜的氮肥施用量是玉米进行光合生产的营养物质保障。运用作物群体生理学的方法,采用二次饱和D试验设计,研究了关中灌区夏玉米密度与氮肥耦合和群体光合生理指标的关系... 合理的密度是玉米构建良好群体结构、优化群体光合生理功能的基础,适宜的氮肥施用量是玉米进行光合生产的营养物质保障。运用作物群体生理学的方法,采用二次饱和D试验设计,研究了关中灌区夏玉米密度与氮肥耦合和群体光合生理指标的关系及其效应,明确了在关中灌区夏播条件下,在45000-75000株/hm^2的密度范围内,密度与玉米籽粒产量、总干物质积累量(DMA)、吐丝期叶面积指数(MLAI)、总光合势(LAD)、平均作物生长率(CGR)为正相关,在45000-60000株/hm^2的密度范围内,密度与玉米叶片平均净同化率(NAR)为正相关,而在60000-75000株/hm^2的密度范围内,密度与玉米NAR为负相关;在氮素施用量≤600.0 kg/hm^2的范围内,氮素施用量与玉米籽粒产量、DMA、CGR为正相关,在氮素施用量≤260.55 kg/hm^2的范围内,氮素施用量与玉米MLAI、LAD为正相关,与玉米NAR为负相关,而在氮素施用量260.55-600.0kg/hm^2的范围内,氮素施用量与玉米MLAI、LAD为负相关,与玉米NAR为正相关。密度对其影响较大的指标为:籽粒产量、DMA、LAD、CGR和MLAI,影响较小的指标为:NAR;氮肥对其影响较大的指标为:DMA、CGR、籽粒产量、NAR,影响较小的指标为:LAD和MLAI。对籽粒产量和群体生理指标的综合影响效应,密度显著大于氮肥,玉米生产中,尤其要重视合理密植。通过对回归模型的解析,筛选确定了陕单8806玉米在关中灌区夏播中,实现高产的密度与氮肥耦合优化技术方案:合理密度为61713-66177株/hm^2,适宜纯氮施用量为309.88-569.02kg/hm^2。 展开更多
关键词 夏玉米(zea mays L.) 密度 氮肥 群体生理指标 籽粒产量
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麦茬处理方式对夏玉米(Zea mays L.)根际生物活性的影响 被引量:3
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作者 李潮海 赵霞 +2 位作者 刘天学 李连芳 李伟东 《生态学报》 CAS CSCD 北大核心 2008年第5期2169-2175,共7页
通过两年3点的大田试验,研究了不同麦茬处理方式(平茬、立茬、除茬)对夏玉米(Zea mays L.)根际生物活性的影响。结果表明:不同麦茬处理的夏玉米根际微生物数量、土壤蛋白酶和脲酶活性均呈先升后降的变化趋势,且在吐丝期达到最大值,但在... 通过两年3点的大田试验,研究了不同麦茬处理方式(平茬、立茬、除茬)对夏玉米(Zea mays L.)根际生物活性的影响。结果表明:不同麦茬处理的夏玉米根际微生物数量、土壤蛋白酶和脲酶活性均呈先升后降的变化趋势,且在吐丝期达到最大值,但在不同生育时期,不同处理间有所差异,趋势为平茬>立茬>除茬,且苗期差异较大,后期逐渐减小。麦茬处理方式对夏玉米田土壤碳通量的影响也表现出同样趋势。 展开更多
关键词 麦茬处理方式 根际微生物 土壤酶 土壤碳通量 根际生物活性 夏玉米(zea mays L.)
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常乐稀土复合肥对玉米(Zea mays L.)的细胞毒性和遗传毒性效应 被引量:5
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作者 屈艾 薄军 +4 位作者 李宗芸 高宽场 孙玲 胡文静 仇敬运 《生态毒理学报》 CAS CSCD 2007年第1期57-62,共6页
为了研究常乐稀土多元复合肥对主要农作物--玉米(Zea mays L.)是否产生细胞毒性和遗传毒性效应,采用不同梯度质量浓度的稀土复合肥溶液对玉米进行处理,观察其根尖生长状况,统计分析细胞死亡率、微核率、有丝分裂指数以及对细胞DNA的损... 为了研究常乐稀土多元复合肥对主要农作物--玉米(Zea mays L.)是否产生细胞毒性和遗传毒性效应,采用不同梯度质量浓度的稀土复合肥溶液对玉米进行处理,观察其根尖生长状况,统计分析细胞死亡率、微核率、有丝分裂指数以及对细胞DNA的损伤情况.结果表明,质量浓度为10mg·L-1以下时,常乐稀土复合肥能够促进玉米根尖的生长,100mg·L-1以上时抑制根尖生长;随着试验浓度的递增,细胞死亡率、微核率、DNA损伤率逐渐上升并具有正相关性,表现出明显的剂量-效应关系,而有丝分裂指数却随着浓度的增加逐渐下降.以上结果表明,常乐稀土复合肥对玉米确有一定的细胞毒性和遗传毒性效应,其细胞毒性阈值和遗传毒性阈值皆为100mg·L-1. 展开更多
关键词 稀土复合肥 玉米 微核 有丝分裂指数 DNA损伤
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紫外线对玉米(Zea mays L.)原生质体影响的初步研究 被引量:2
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作者 陈凡国 夏光敏 《菏泽师专学报》 2001年第2期22-24,共3页
酶解墨西哥黑甜玉米的愈伤组织产生的原生质体,经380μW/cm^2紫外线分别照射30 s,60 s,180 s,300 s,发现原生质体的活力及生长与紫外线的剂量有密切关系,随着紫外线剂量的增大,生长及活性趋于降低.辐照30 s的玉米原生质体与对照都可以... 酶解墨西哥黑甜玉米的愈伤组织产生的原生质体,经380μW/cm^2紫外线分别照射30 s,60 s,180 s,300 s,发现原生质体的活力及生长与紫外线的剂量有密切关系,随着紫外线剂量的增大,生长及活性趋于降低.辐照30 s的玉米原生质体与对照都可以恢复分裂并长成愈伤组织;辐照60 s的原生质体可以形成小细胞团,未见形成愈伤组织;而辐照180 s和300 s的原生质体都未见细胞分裂. 展开更多
关键词 墨西哥黑甜玉米 紫外线 剂量效应 原生质体 愈伤组织 生长 活力 体细胞杂交
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明矾对玉米(Zea mays L.)根尖细胞的遗传毒性效应
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作者 李国庆 顾志鞠 +5 位作者 易岚 贺庆芝 殷杰I 刘运莲 杨露青 秦志峰 《南华大学学报(医学版)》 2008年第6期741-744,共4页
目的研究明矾对玉米(Zea mays L.)根尖细胞微核及异常有丝分裂的诱导,阐明明矾对玉米根尖细胞的遗传毒性效应。方法以玉米根尖为实验材料,用不同浓度的明矾为诱变剂,处理24h,测定玉米根尖细胞的有丝分裂指数、微核率和染色体畸变率。... 目的研究明矾对玉米(Zea mays L.)根尖细胞微核及异常有丝分裂的诱导,阐明明矾对玉米根尖细胞的遗传毒性效应。方法以玉米根尖为实验材料,用不同浓度的明矾为诱变剂,处理24h,测定玉米根尖细胞的有丝分裂指数、微核率和染色体畸变率。结果不同浓度明矾均能诱发较高微核率和染色体畸变率(P〈0.05),在同样的条件下,0.1-1.0 g/L明矾处理下玉米根尖细胞微核率和染色体畸变率显著升高并达到最高值,而1.0-2.0 g/L明矾处理下玉米根尖细胞微核率和染色体畸变率下降并趋于平缓。同时在低浓度明矾作用下,玉米根尖细胞分裂有显著的加速现象。当明矾浓度到达一定程度后,表现为玉米根尖细胞分裂减少。结论明矾诱发玉米根尖细胞高微核率和有丝分裂异常,明矾对玉米根尖细胞具有明显的细胞遗传学毒性效应。 展开更多
关键词 明矾 玉米根尖细胞 微核 染色体畸变 有丝分裂指数
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Pb、Cu胁迫对玉米(Zea mays L.)生长、细胞色素合成以及重金属吸收特性的影响 被引量:8
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作者 陆干 李磊明 +2 位作者 陶祥运 刘小红 司友斌 《安徽农业大学学报》 CAS CSCD 北大核心 2017年第5期905-911,共7页
通过水培试验,以玉米作为供试植株,研究Pb、Cu胁迫对玉米生长发育、细胞色素合成以及重金属吸收的影响。结果表明,Pb、Cu单一胁迫下玉米根长较对照组均偏低,复合胁迫下根长随着Pb、Cu复合浓度的增加而减小。玉米植株在重金属Pb、Cu单一... 通过水培试验,以玉米作为供试植株,研究Pb、Cu胁迫对玉米生长发育、细胞色素合成以及重金属吸收的影响。结果表明,Pb、Cu单一胁迫下玉米根长较对照组均偏低,复合胁迫下根长随着Pb、Cu复合浓度的增加而减小。玉米植株在重金属Pb、Cu单一胁迫下生物量变化不明显,但在不同水平Pb、Cu复合胁迫下,表现随着重金属胁迫浓度增加,玉米植株生物量先增加后减小。玉米叶绿素含量随着Pb胁迫浓度增加而增加、随着Cu浓度增加而降低;Pb、Cu单一胁迫下β-类胡萝卜素含量随着Pb浓度增加先降低后增加,随着Cu含量增加先增加后降低;Pb、Cu单一胁迫下花青素含量较对照组均增大,Cu胁迫下花青素含量增加更明显,最低增加0.65%,最高增加21.25%。玉米不同器官对Pb、Cu积累有一定差异,在单一重金属胁迫下Pb、Cu在玉米体内积累量与胁迫浓度呈正相关,分布顺序为根系>茎叶,根部是积累Pb、Cu主要器官。Pb、Cu复合胁迫下加剧了重金属向玉米体内的迁移累积,随着Pb、Cu复合胁迫浓度的增大,根部吸收Pb、Cu逐步增大,而茎叶吸收Pb、Cu趋于平稳。相关分析显示,玉米细胞色素的合成取决于被胁迫的重金属类型,β-类胡萝卜素含量与植株体内Pb含量显著正相关,花青素含量与Cu含量显著正相关,揭示Pb对β-类胡萝卜素诱导作用强、Cu对花青素诱导作用强。 展开更多
关键词 重金属 玉米 细胞色素 吸收特性
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Top-grain filling characteristics at an early stage of maize(Zea mays L.) with different nitrogen use efficiencies 被引量:12
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作者 SHEN Li-xia HUANG Yan-kai LI Ting 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第3期626-639,共14页
Maize genotypes vary significantly in their nitrogen use efficiencies(NUEs).Better understanding of early grain filling characteristics of maize is important,especially for maize with different NUEs.The objectives o... Maize genotypes vary significantly in their nitrogen use efficiencies(NUEs).Better understanding of early grain filling characteristics of maize is important,especially for maize with different NUEs.The objectives of this research were(i)to investigate the difference in apical kernel development of maize with different NUEs,(ii)to determine the reaction of apical kernel development to N application levels,and(iii)to evaluate the relationship between apical kernel development and grain yield(GY)for different genotypes of maize.Three maize hybrid varieties with different NUEs were cultivated in a field with different levels of N fertilizer arranged during two growing seasons.Kernel fresh weight(KFW),volume(KV)and dry weight(KDW)of apical kernel were evaluated at an early grain filling stage.Ear characteristics,GY and its components were determined at maturity stage.Apical kernel of the high N and high efficiency(HN-HE)type(under low N,the yield is lower,and under higher N,the yield is higher)developed better under high N(N210 and N240,pure N of 210 and 240 kg ha^–1)than at low N(N120 and N140,pure N of 120 and 140 kg ha^–1).The low N and high efficiency(LN-HE)type(under low N,the yield is higher,while under higher N,the yield is not significantly higher)developed better under low N than at high N.The double high efficiency(D-HE)type(for both low and high N,the yield is higher)performed well under both high and low N.Apical kernel reacted differently to the N supply.Apical kernel developed well at an early grain filling stage and resulted in a higher kernel number(KN),kernel weight(KW)and GY with better ear characteristics at maturity. 展开更多
关键词 zea mays L. grain filling nitrogen use efficiency kernel development
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Screening Methods for Waterlogging Tolerance at Maize (Zea mays L.) Seedling Stage 被引量:16
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作者 LIU Yong-zhong, TANG Bin, ZHENG Yong-lian, MA Ke-jun, XU Shang-zhong and QIU Fa-zhan National Key Laboratory of Crop Genetic Improvement/Huazhong Agricultural University, Wuhan 430070, P.R.China 《Agricultural Sciences in China》 CSCD 2010年第3期362-369,共8页
Waterlogging strongly affects agronomic performance of maize (Zea mays L.). In order to investigate the suitable selection criteria of waterflooding tolerant genotypes, and identify the most susceptible stage and th... Waterlogging strongly affects agronomic performance of maize (Zea mays L.). In order to investigate the suitable selection criteria of waterflooding tolerant genotypes, and identify the most susceptible stage and the best continuous treatment time to waterlogging, 20 common maize inbred lines were subjected to successive artificial waterflooding at seedling stage, and waterlogging tolerance coefficient (WTC) was used to screen waterflooding tolerant genotypes. In addition, peroxidase (POD) activities and malondialdehyde (MDA) contents were measured for 6 of 20 lines. The results showed that the second leaf stage (V2) was the most susceptible stage, and 6 d after waterflooding was the best continuous treatment time. Dry weight (DW) of both shoots and roots of all lines were significantly reduced at 6 d time-point of waterlogging, compared to control. POD activities and MDA contents were negatively and significantly correlated, and the correlation coefficient was -0.9686 (P 〈 0.0001). According to the results, WTC of shoot DW can be used for practical screening as a suitable index, which is significantly different from control and waterlogged plants happened 6 d earlier. Furthermore, leaf chlorosis, MDA content and POD activities could also be used as reference index for material screening. The implications of the results for waterlogging-tolerant material screening and waterlogging-tolerant breeding have been discussed in maize. 展开更多
关键词 maize zea mays L.) waterlogging tolerance screening method selection criteria
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Activity of Acetolactate Synthase from Maize (Zea mays L.) as Influenced by Chlorsulfuron and Tribenuron-methyl 被引量:5
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作者 FANZhi-jin CHENJun-peng 《Agricultural Sciences in China》 CAS CSCD 2003年第2期176-182,共7页
Study on relative sensitivity of maize (Zea mays L.) Nongda108 and Nongda3138 to sulfony-lurea herbicide chlorsulfuron and tribenuron-methyl using maize taproot length by sand bioassy indicated that, Nongda3138 had hi... Study on relative sensitivity of maize (Zea mays L.) Nongda108 and Nongda3138 to sulfony-lurea herbicide chlorsulfuron and tribenuron-methyl using maize taproot length by sand bioassy indicated that, Nongda3138 had higher tolerance to chlorsulfuron and tribenuron-methyl than Nongda108 did. Chlorsulfuron had stronger growth inhibition to maize Nongda108 and Nongda3138 than tribenuron-methyl did. Study on target enzyme of sulfonylurea herbicide acetolactate synthase (ALS) showed that, chlorsulfuron and tribenuron-methyl inhibited ALS in vitro strongly, and non-competitively. In the same concentration of inhibitors, chlorsulfuron had stronger ALS activity inhibition than tribenuron-methyl did. Lower level of chlorsulfuron and tribenuron-methyl has no ALS activity inhibition in vivo, the ALS inhibition only occurred in the condition of high concentration of chlorsulfuron and tribenuron-methyl in vivo. 展开更多
关键词 Chlorsulf uron TRIBENURON-METHYL Acetolactate synthase (ALS) Maize (zea mays L.)
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Application of hybrids with cytoplasmic male-sterility in Zea mays L.in China 被引量:3
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作者 魏建昆 刘克明 崔洋 《华北农学报》 CSCD 北大核心 1993年第S2期1-9,共9页
The abortive behaviour and the cytoplasm quality of cytoplasmic male-sterility(CMS)lines of homocaryon were investigated and the existence of C race of Bipolaris maydiswere discussed from the point of view of genetic ... The abortive behaviour and the cytoplasm quality of cytoplasmic male-sterility(CMS)lines of homocaryon were investigated and the existence of C race of Bipolaris maydiswere discussed from the point of view of genetic breeding,physiology and pathology in this paper.Then the countermeasures to prevent the danger from disease of B. maydis in CMS hybrid pro-duction were proposed. 展开更多
关键词 CORN (zea mays L. ) hybrid CYTOPLASMIC MALE-STERILITY PATHOLOGY
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Influence of Zinc Nutrition on Growth and Yield Behaviour of Maize (<i>Zea mays</i>L.) Hybrids 被引量:5
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作者 Azeem Tariq Shakeel A. Anjum +5 位作者 Mahmood A. Randhawa Ehsan Ullah Muhammad Naeem Rafi Qamar Umair Ashraf Mubashar Nadeem 《American Journal of Plant Sciences》 2014年第18期2646-2654,共9页
A field experiment was conducted during spring 2011 at Agronomic Research Area, University of Agriculture, Faisalabad, Pakistan to evaluate the comparative efficacy of Zn uptake and grain yield in three maize hybrids ... A field experiment was conducted during spring 2011 at Agronomic Research Area, University of Agriculture, Faisalabad, Pakistan to evaluate the comparative efficacy of Zn uptake and grain yield in three maize hybrids namely Pioneer-32F 10, Monsanto-6525 and Hycorn-8288 through the application of Zn in the form of ZnSO4. The ZnSO4 treatments comprised;soil application at the time of sowing @ 12 kg&middotha-1 (Zn1), foliar application at vegetative stage (9 leaf stage) @ 1% ZnSO4 solution (Zn2) and foliar application at reproductive stage (anthesis) @ 1% ZnSO4 solution (Zn3) and one treatment was kept as a control, where zinc was not applied (Zn0). The experimental results showed substantial difference in all physiological and yield parameters except plant height and stem diameter. Statistically maximum grain yield (8.76 t&middotha-1) was obtained with foliar spray of ZnSO4 at 9 leaf stage (Zn2) in case of Monsanto-6525. As regard to quality parameters, Pioneer-32F 10 and Hycorn-8288 accumulated more zinc contents in grains but Monsanto-6525 attained more zinc concentration in straw. Foliar spray of ZnSO4 at 9 leaf stage produced 19.42% more zinc contents in grains as compared to other ZnSO4 treatments. Foliar spray of ZnSO4 at 9 leaf stage in Monsanto-6525 hybrid produced higher grain yield. 展开更多
关键词 Grain Yield HYBRIDS MAIZE (zea mays L.) ZnSO4
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Establishment and Optimization of the Regeneration System of Mature Embryos of Maize (Zea mays L.) 被引量:3
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作者 ZHAO Cheng-hao ZHANG Li-jun GE Chao HU Kai 《Agricultural Sciences in China》 CAS CSCD 2008年第9期1046-1051,共6页
A reliable system was developed for regeneration from mature embryos derived from callus of four maize inbred lines (Liao 7980, Dan 9818, Dan 340, and Dan 5026). The protocol was mainly based on a series of experime... A reliable system was developed for regeneration from mature embryos derived from callus of four maize inbred lines (Liao 7980, Dan 9818, Dan 340, and Dan 5026). The protocol was mainly based on a series of experiments involving the composition of culture medium. We found that 9 pM 2,4-dichlorophenoxyacetic acid in MS medium was optimum for the induction of callus. The induction frequency of primary calli was over 85% for four inbred lines tested. The addition of L- proline (12 mM) in subculture medium significantly promoted the formation of embryogenic callus but it did not significantly enhance growth rate of callus. Efficient shoot regeneration was obtained on regeneration medium containing 2.22 μM 6- benzylaminopurine in combinations with 4.64 μM Kinetin. Regenerated shoots were rooted on half-strength MS medium containing 2.85 μM indole-3-butyric acid. This plant regeneration system provides a foundation for genetic transformation of maize. 展开更多
关键词 maize zea mays L.) mature embryo callus induction embryogenic callus plant regeneration
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Genomic and transcriptomic insights into cytochrome P450 monooxygenase genes involved in nicosulfuron tolerance in maize(Zea mays L.) 被引量:2
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作者 LIU Xiao-min XU Xian +4 位作者 LI Bing-hua YAO Xiao-xia ZHANG Huan-huan WANG Gui-qi HAN Yu-jun 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第8期1790-1799,共10页
Postemergence application of nicosulfuron for weed control in maize fields can cause great damage to certain maize inbred lines and hybrids. Two maize genotypes, tolerant inbred(HBR) and sensitive inbred(HBS), were fo... Postemergence application of nicosulfuron for weed control in maize fields can cause great damage to certain maize inbred lines and hybrids. Two maize genotypes, tolerant inbred(HBR) and sensitive inbred(HBS), were found to significantly differ in their phenotypic responses to nicosulfuron, with the EC50(50% effective concentration) values differed statistically(763.6 and 5.9 g a.i. ha–1, respectively). Pre-treatment with malathion, a known cytochrome P450 inhibitor, increased nicosulfuron injury in both HBR and HBS. Our results support the hypothesis that nicosulfuron selectivity in maize is associated with cytochrome P450 metabolism. Further analysis of the maize genome resulted in the identification of 314 full length cytochrome P450 monooxygenase(CYP) genes. These genes were classified into 2 types, 10 clans and 44 families. The CYP71 clan was represented by all A-type genes(168) belonging to 17 families. Nine clans possessed 27 families containing 146 non-A-type genes. The consensus sequences of the heme-binding regions of A-type and non-A-type CYP proteins are ‘PFGXGRRXCPG’ and ‘FXXGPRXCXG’, respectively. Illumina transcriptome sequence results showed that there were 53 differentially expressed CYP genes on the basis of high variation in expression between HBS and HBR, nicosulfuron-treated and untreated samples. These genes may contribute to nicosulfuron tolerance in maize. A hierarchical clustering analysis obtained four main clusters named C1 to C4 in which 4, 15, 21, and 13 CYP genes were found in each respective cluster. The expression patterns of some CYP genes were confirmed by RT-q PCR analysis. The research will improve our understanding of the function of maize cytochrome P450 in herbicide metabolism. 展开更多
关键词 cytochrome P450 zea mays L. MALATHION NICOSULFURON herbicide metabolism
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QTL analysis of the developmental changes in cell wall components and forage digestibility in maize(Zea mays L.) 被引量:4
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作者 LI Kun YANG Xue +8 位作者 LIU Xiao-gang HU Xiao-jiao WU Yu-jin WANG Qi MA Fei-qian LI Shu-qiang WANG Hong-wu LIU Zhi-fang HUANG Chang-ling 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第12期3501-3513,共13页
Cell wall architecture plays a key role in stalk strength and forage digestibility.Lignin,cellulose,and hemicellulose are the three main components of plant cell walls,and they can impact stalk quality by affecting th... Cell wall architecture plays a key role in stalk strength and forage digestibility.Lignin,cellulose,and hemicellulose are the three main components of plant cell walls,and they can impact stalk quality by affecting the structure and strength of the cell wall.To explore cell wall development during secondary cell wall lignification in maize stalks,conventional and conditional genetic mapping were used to identify the dynamic quantitative trait loci(QTLs)of the cell wall components and digestibility traits during five growth stages after silking.Acid detergent lignin(ADL),cellulose(CEL),acid detergent fiber(ADF),neutral detergent fiber(NDF),and in vitro dry matter digestibility(IVDMD)were evaluated in a maize recombinant inbred line(RIL)population.ADL,CEL,ADF,and NDF gradually increased from 10 to 40 days after silking(DAS),and then they decreased.IVDMD initially decreased until 40 DAS,and then it increased slightly.Seventytwo QTLs were identified for the five traits,and each accounted for 3.48–24.04%of the phenotypic variation.Six QTL hotspots were found,and they were localized in the 1.08,2.04,2.07,7.03,8.05,and 9.03 bins of the maize genome.Within the interval of the pleiotropic QTL identified in bin 1.08 of the maize genome,six genes associated with cell wall component biosynthesis were identified as potential candidate genes for stalk strength as well as cell wall-related traits.In addition,26 conditional QTLs were detected in the five stages for all of the investigated traits.Twenty-two of the 26 conditional QTLs were found at 30 DAS conditioned using the values of 20 DAS,and at 50 DAS conditioned using the values of 40 DAS.These results indicated that cell wall-related traits are regulated by many genes,which are specifically expressed at different stages after silking.Simultaneous improvements in both forage digestibility and lodging resistance could be achieved by pyramiding multiple beneficial QTL alleles identified in this study. 展开更多
关键词 quantitative trait loci maize(zea mays L.) cell wall components forage quality
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Genetic dissection of husk number and length across multiple environments and fine-mapping of a major-effect QTL for husk number in maize(Zea mays L.) 被引量:3
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作者 Guangfei Zhou Yuxiang Mao +7 位作者 Lin Xue Guoqing Chen Huhua Lu Mingliang Shi Zhenliang Zhang Xiaolan Huang Xudong Song Derong Hao 《The Crop Journal》 SCIE CSCD 2020年第6期1071-1080,共10页
Husk number(HN)and husk length(HL)influence the mechanical harvesting of maize grain.We investigated the genetic basis of HN and HL using a population of 204 recombinant inbred lines phenotypically evaluated in five e... Husk number(HN)and husk length(HL)influence the mechanical harvesting of maize grain.We investigated the genetic basis of HN and HL using a population of 204 recombinant inbred lines phenotypically evaluated in five environments.The two husk traits showed broad phenotypic variation and high heritability.Nine stable quantitative trait loci(QTL)were identified by single-environment mapping,comprising four QTL for HN and five for HL,and three QTL explained>10%of the phenotypic variation.Joint mapping revealed 22 additive QTL and 46 epistatic QTL.Both additive and epistatic(additive×additive)effects as well as a few large-effect QTL and some minor-effect QTL appeared to contribute to the genetic architecture of HN and HL.The QTL for HN located on chromosome 7,q HN7,which accounted for^20%of phenotypic variation,was detected in all five environments.q HN7 was fine-mapped to a 721.1 kb physical region based on the maize B73 Ref Gen_v3 genome assembly.Within this interval,four genes associated with plant growth and development were selected as candidate genes.The results will be useful for improvement of maize husk traits by molecular breeding and provide a basis for the cloning of q HN7. 展开更多
关键词 zea mays L. Husk number Husk length Quantitative trait locus Fine mapping
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Mapping of QTLs Associated with Seed Vigor to Artificial Aging Using Two RIL Populations in Maize (<i>Zea mays</i>L.) 被引量:3
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作者 Zanping Han Wang Bin +4 位作者 Jun Zhang Shulei Guo Hengchao Zhang Lengrui Xu Yanhui Chen 《Agricultural Sciences》 2018年第4期397-415,共19页
Improvement in seed vigor under adverse condition is an important object in maize breeding nowadays. Because the higher sowing quality of seeds is necessary for the development of the agriculture production and better... Improvement in seed vigor under adverse condition is an important object in maize breeding nowadays. Because the higher sowing quality of seeds is necessary for the development of the agriculture production and better able to resist all kinds of adversity in the seeds storage. So it is helpful for long-term preservation of germplasm resource. In our study, two connected recombinant inbred line (RIL) populations, which derived from the crosses Yu82 × Shen137 and Yu537A × Shen137 respectively, were evaluated for four related traits of seed vigor under three aging treatments. Meta-analysis was used to integrate genetic maps and detected QTL across two populations. In total, 74 QTL and 20 meta-QTL (mQTL) were detected. All QTLs with contributions (R2) over 10% were consistently detected in at least one of aging treatments and integrated in mQTL. Four key mQTLs (mQTL2-2, mQTL5-3, mQTL6 and mQTL8) with R2 of some initial QTLs > 10% included 5-9 initial QTLs associated with 2-4 traits. Therefore, the chromosome regions for four mQTLs with high QTL co-localization might be hot spots of the important QTLs for the associated traits. Twenty-two key candidate genes regulating four related traits of seed vigor mapped in 14 corresponding mQTLs. In particular, At5g67360, 45238345/At1g70730/At1g09640 and 298201206 were mapped within the important mQTL5-3, mQTL6 and mQTL8 regions, respectively. Fine mapping or construction of single chromosome segment lines for genetic regions of the three mQTLs is worth further study and could be put to use molecular marker-assisted breeding and pyramiding QTLs in maize. 展开更多
关键词 Maize(zea mays L.) Seed VIGOR RIL QTL Artificial Aging
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