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玉米叶形相关性状的Meta-QTL及候选基因分析 被引量:13
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作者 郭书磊 张君 +8 位作者 齐建双 岳润清 韩小花 燕树锋 卢彩霞 傅晓雷 陈娜娜 库丽霞 铁双贵 《植物学报》 CAS CSCD 北大核心 2018年第4期487-501,共15页
叶长、叶宽、叶面积及叶夹角不仅影响玉米(Zea mays)光合效率,也是株型的重要构成因素。通过对620个叶形QTL进行整合,构建不同遗传背景下的叶形QTL整合图谱,利用元分析发掘出22个叶长、22个叶宽、12个叶面积以及17个叶夹角m QTL;进一步... 叶长、叶宽、叶面积及叶夹角不仅影响玉米(Zea mays)光合效率,也是株型的重要构成因素。通过对620个叶形QTL进行整合,构建不同遗传背景下的叶形QTL整合图谱,利用元分析发掘出22个叶长、22个叶宽、12个叶面积以及17个叶夹角m QTL;进一步运用生物信息学手段,确定44个与叶片发育密切相关的候选基因。分析发现,仅有NAL7-like、YABBY6-like和GRF2等13个基因位于m QTL区间内,而玉米中已克隆的KNOTTED1、AN3/GIF1、rgd1/lbl1、mwp1及SRL2-like、HYL1-like和CYCB2;4-like等水稻(Oryza sativa)和拟南芥(Arabidopsis thaliana)叶形同源基因位于未被整合的QTL内;对44个候选基因在叶片长、宽、厚发育过程中基部-末端、中央-边缘、远轴-近轴的调控机理进行归纳分析,发现玉米中仅有少数几个候选基因被报道,揭示了叶形发育的部分分子机理。因此,对玉米叶形相关m QTL/QTL及基因进行全面深入的分析,不仅有助于增加对其遗传结构的了解,发掘更多候选基因,阐明叶形发育和形成的分子机制,还可为耐密理想株型的分子标记辅助选择提供依据。 展开更多
关键词 玉米 叶长 叶宽 叶面积 叶夹角 元分析 meta-QTL 候选基因
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Genome-wide identification, expression analysis of auxin-responsive GH_3 family genes in maize(Zea mays L.) under abiotic stresses 被引量:18
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作者 Shangguo Feng runqing yue +5 位作者 Sun Tao Yanjun Yang Lei Zhang Mingfeng Xu Huizhong Wang Chenjia Shen 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2015年第9期783-795,共13页
Auxin is involved in different aspects of plant growth and development by regulating the expression of auxin-responsive family genes. As one of the three major auxin-responsive families, GH3 (Gretchen Hagen3) genes pa... Auxin is involved in different aspects of plant growth and development by regulating the expression of auxin-responsive family genes. As one of the three major auxin-responsive families, GH3 (Gretchen Hagen3) genes participate in auxin homeostasis by catalyzing auxin conjugation and bounding free indole-3-acetic acid (IAA) to amino acids. However, how GH3 genes function in responses to abiotic stresses and various hormones in maize is largely unknown. Here, the latest updated maize (Zea mays L.) reference genome sequence was used to characterize and analyze the ZmGH3 family genes from maize. The results showed that 13 ZmGH3 genes were mapped on five maize chromosomes (total 10 chromosomes). Highly diversified gene structures and tissue-specific expression patterns suggested the possibility of function diversification for these genes in response to environmental stresses and hormone stimuli. The expression patterns of ZmGH3 genes are responsive to several abiotic stresses (salt, drought and cadmium) and major stress-related&nbsp;hormones (abscisic acid, salicylic acid and jasmonic acid). Various environmental factors suppress auxin free IAA contents in maize roots suggesting that these abiotic stresses and hormones might alter GH3-mediated auxin levels. The respon-siveness of ZmGH3 genes to a wide range of abiotic stresses and stress-related hormones suggested that ZmGH3s are involved in maize tolerance to environmental stresses. 展开更多
关键词 Abiotic stress AUXIN auxin responsive gene GH3 gene family MAIZE
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