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玉米HD-Zip转录因子基因Zmhdz6的克隆与功能分析 被引量:1
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作者 郝陆洋 张晓静 +8 位作者 高晨曦 张登峰 李永祥 李春辉 宋燕春 石云素 王天宇 刘旭洋 黎裕 《植物遗传资源学报》 CAS CSCD 北大核心 2022年第3期823-831,共9页
干旱胁迫是限制玉米生长发育和产量形成的主要非生物胁迫因素之一。解析玉米响应干旱的分子机制、挖掘优异的耐旱基因资源,对玉米耐旱种质改良和品种培育具有重要的意义。本研究前期利用耐旱性极端差异的2个玉米自交系,开展了不同水分... 干旱胁迫是限制玉米生长发育和产量形成的主要非生物胁迫因素之一。解析玉米响应干旱的分子机制、挖掘优异的耐旱基因资源,对玉米耐旱种质改良和品种培育具有重要的意义。本研究前期利用耐旱性极端差异的2个玉米自交系,开展了不同水分处理下叶片和根系的转录组测序,通过基因共表达网络分析获得了一个与玉米耐旱相关的重要节点调控基因Zmhdz6,该基因编码一个HD-Zip转录因子。在此基础上,本研究对Zmhdz6的功能进行进一步的研究。在玉米基因组中共有60个HD-Zip转录因子基因,分为4个亚家族;Zmhdz6属于第I亚家族,并与Zmhdz4的序列同源关系较近,Zmhdz4已被报道具有增强耐旱性的功能。干旱和ABA处理下的基因表达分析表明,Zmhdz6的表达受到干旱胁迫和外施ABA处理的诱导,在玉米的叶片和根系中均呈现上调表达。对耐旱性极端差异玉米自交系中Zmhdz6的编码区序列进行测序分析,发现编码区存在5个SNP变异位点,导致编码蛋白中3个氨基酸的差异,但是均不存在于HD或LZ结构域中。Zmhdz6的过表达转基因拟南芥具有显著增强的耐旱性,在干旱胁迫下的存活率高于野生型对照;此外Zmhdz6的过表达转基因拟南芥在正常水分处理下的植株大小显著低于野生型。因此,本研究的结果表明,Zmhdz6是一个重要且有潜力的耐旱基因资源,进一步创制干旱诱导表达Zmhdz6的转基因玉米并评估其育种利用价值,对玉米耐旱改良和分子育种具有重要的意义。 展开更多
关键词 玉米 Zmhdz6 干旱
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Genome-wide identification and comparative analysis of drought related genes in roots of two maize inbred lines with contrasting drought tolerance by RNA sequencing 被引量:5
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作者 hao lu-yang LIU Xu-yang +11 位作者 ZHANG Xiao-jing SUN Bao-cheng LIU Cheng ZHANG Deng-feng TANG Huai-jun LI Chun-hui LI Yong-xiang SHI Yun-su XIE Xiao-qing SONG Yan-chun WANG Tian-yu LI Yu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2020年第2期449-464,共16页
Drought is one of the most important abiotic stresses affecting maize growth and development and therefore resulting in yield loss.Thus it is essential to understand molecular mechanisms of drought stress responses in... Drought is one of the most important abiotic stresses affecting maize growth and development and therefore resulting in yield loss.Thus it is essential to understand molecular mechanisms of drought stress responses in maize for drought tolerance improvement.The root plays a critical role in plants sensing water deficit.In the present study,two maize inbred lines,H082183,a drought-tolerant line,and Lv28,a drought-sensitive line,were grown in the field and treated with different water conditions(moderate drought,severe drought,and well-watered conditions)during vegetative stage.The transcriptomes of their roots were investigated by RNA sequencing.There were 1428 and 512 drought-responsive genes(DRGs)in Lv28,688 and 3363 DRGs in H082183 under moderate drought and severe drought,respectively.A total of 31 Gene Ontology(GO)terms were significantly over-represented in the two lines,13 of which were enriched only in the DRGs of H082183.Based on results of Kyoto encyclopedia of genes and genomes(KEGG)enrichment analysis,"plant hormone signal transduction"and"starch and sucrose metabolism"were enriched in both of the two lines,while"phenylpropanoid biosynthesis"was only enriched in H082183.Further analysis revealed the different expression patterns of genes related to abscisic acid(ABA)signal pathway,trehalose biosynthesis,reactive oxygen scavenging,and transcription factors might contribute to drought tolerance in maize.Our results contribute to illustrating drought-responsive molecular mechanisms and providing gene resources for maize drought improvement. 展开更多
关键词 maize(Zea mays L.) root TRANSCRIPTOME RNA sequencing drought-responsive genes
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