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    题名 作者 年代 出处 被引量
1Senome-wide Association Studies in Maize: Praise and Stargaze显示文摘Yingjie Xiao Haijun Liu Liuji Wu Marilyn Warburton Jianbing Yan 2017Molecular Plant2017,10,3:27
2ZmCOL3, a CCT gene represses flowering in maize by interfering with the circadian clock and activating expression of ZmCCT显示文摘Flowering time is a trait vital to the adaptation of flowering plants to different environments.Here, we report that CCT domain genes play an important role in flowering in maize(Zea mays L.).Among the 53 CCT family genes we identified in maize, 28 were located in flowering time quantitative trait locus regions and 15 were significantly associated with flowering time, based on candidate-gene association mapping analysis.Furthermore, a CCT gene named ZmCOL3 was shown to be a repressor of flowering.Overexpressing ZmCOL3 delayed flowering time by approximately 4 d, in either long-day or short-day conditions.The absence of one cytosine in the ZmCOL3 3'UTR and the presence of a 551 bp fragment in the promoter region are likely the causal polymorphisms contributing to the maize adaptation from tropical to temperate regions.We propose a modified model of the maize photoperiod pathway, wherein ZmCOL3 acts as an inhibitor of flowering either by transactivating transcription of ZmCCT, one of the key genes regulating maize flowering, or by interfering with the circadian clock.Minliang Jin Xiangguo Liu Wei Jia Haijun Liu Wenqiang Li Yong Peng Yanfang Du Yuebin Wang Yuejia Yin Xuehai Zhang Qing Liu Min Deng Nan Li Xiyan Cui Dongyun Hao Jianbing Yan 2018Journal of Integrative Plant Biology2018,60,6:14
3Distant eQTLs and Non-coding Sequences Play Critical Roles in Regulating Gene Expression and Quantitative Trait Variation in Maize显示文摘Haijun Liu Xin Luo Luyao Niu Yingjie Xiao Lu Chen Jie Liu Xiaqing Wang Minliang Jin Wenqiang Li Qinghua Zhang Jianbing Yan 2017Molecular Plant2017,10,3:13
4The Past, Present, and Future of Maize Improvement: Domestication, Genomics, and Functional Genomic Routes toward Crop Enhancement显示文摘After being domesticated from teosinte,cultivated maize(Zea mays ssp.mays)spread worldwide and now is one of the most important staple crops.Due to its tremendous phenotypic and genotypic diversity,maize also becomes to be one of the most widely used model plant species for fundamental research,with many important discoveries reported by maize researchers.Here,we provide an overview of the history of maize domestication and key genes controlling major domestication-related traits,review the currently available resources for functional genomics studies in maize,and discuss the functions of most of the maize genes that have been positionally cloned and can be used for crop improvement.Finally,we provide some perspectives on future directions regarding functional genomics research and the breeding of maize and other crops.Jie Liu Alisdair R.Fernie Jianbing Yan 2020Plant Communications2020,1,1:5
5玉米LEA-2基因家族的全基因组鉴定和ZmLEA53功能的初步验证显示文摘胚胎发育晚期丰富蛋白-2(late embryogenesis abundant proteins-2,LEA-2)基因家族在植物生长发育和逆境胁迫中起重要作用。为了探究玉米(Zea mays)LEA-2家族蛋白对干旱胁迫的响应,本研究对玉米、高粱(Sorghum bicolor)和拟南芥(Arabidopsis thaliana)中的LEA-2进行蛋白序列比对,对ZmLEA-2家族基因进行了基因结构、保守基序的分析,及其在染色体上的位置及玉米种间的共线性分析,同时进行了玉米、高粱和拟南芥中LEA-2基因的共线性分析;依据转录组数据对ZmLEA-2家族基因进行了表达模式分析,并对ZmLEA53的功能进行了初步验证。结果表明:玉米中共鉴定出81个ZmLEA-2基因,在10条染色体上不均匀地分布;系统进化树分析表明,81个ZmLEA-2基因可分为7组,同一组基因间具有相似的基因结构及保守基序个数和排序。表达模式分析显示,81个ZmLEA-2基因呈现不同的表达模式。干旱胁迫下,ZmLEA53、ZmLEA7和ZmLEA64等基因表达量上升,复水后表达量下降,推测这些基因参与了玉米耐旱性调控。ZmLEA53的过表达可以提高酵母(Saccharomyces)菌株在干旱(PEG)、盐和高温胁迫下的生存率。研究结果为探索ZmLEA-2基因家族功能及解析其在干旱胁迫响应中作用途径提供参考。王国瑞 鲁晓民 张鹏钰 曹丽茹 郭金生 付家旭 王同朝 卫丽 2022农业生物技术学报2022,30,6:0
6四个玉米品种在镉污染土壤中的产量和农艺性状表现显示文摘采用大田栽培试验的方法,研究了不同玉米品种产量及其农艺性状对镉污染土壤的响应。结果表明:在镉浓度为0.86 mg·kg^(-1)的条件下,4个供试玉米品种的农艺性状在Cd胁迫下存在一定的差异,其中湘农玉27号的株高、茎粗、穗位叶叶长均显著低于湘农玉36号、湘农玉22号、湘荟玉1号;湘农玉27号、湘荟玉1号的穗位叶叶宽显著低于湘农玉36号、湘农玉22号。4个供试玉米品种产量变幅为7 530.09~11 446.85 kg·hm^(-2),其中湘农玉36号显著高于湘农玉27号、湘荟玉1号、湘农玉22号。在Cd低积累玉米品种筛选中,可考虑湘农玉36号作为供试品种。武清贵 李文琪 贺俊翔 向飞 刘兴利 2023南方农业2023,17,22:0
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