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Genome-Wide Analysis of TCP Family Genes in Zea mays L. Identified a Role for ZmTCP42 in Drought Tolerance

机译:玉米中TCP家族基因的全基因组分析。确定了ZmTCP42在耐旱性中的作用

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摘要

The Teosinte-branched 1/Cycloidea/Proliferating (TCP) plant-specific transcription factors (TFs) have been demonstrated to play a fundamental role in plant development and organ patterning. However, it remains unknown whether or not the TCP gene family plays a role in conferring a tolerance to drought stress in maize, which is a major constraint to maize production. In this study, we identified 46 ZmTCP genes in the maize genome and systematically analyzed their phylogenetic relationships and synteny with rice, sorghum, and Arabidopsis TCP genes. Expression analysis of the 46 ZmTCP genes in different tissues and under drought conditions, suggests their involvement in maize response to drought stress. Importantly, genetic variations in ZmTCP32 and ZmTCP42 are significantly associated with drought tolerance at the seedling stage. RT-qPCR results suggest that ZmTCP32 and ZmTCP42 RNA levels are both induced by ABA, drought, and polyethylene glycol treatments. Based on the significant association between the genetic variation of ZmTCP42 and drought tolerance, and the inducible expression of ZmTCP42 by drought stress, we selected ZmTCP42, to investigate its function in drought response. We found that overexpression of ZmTCP42 in Arabidopsis led to a hypersensitivity to ABA in seed germination and enhanced drought tolerance, validating its function in drought tolerance. These results suggested that ZmTCP42 functions as an important TCP TF in maize, which plays a positive role in drought tolerance.
机译:Teosinte分支的1 / Cycloidea / Proliferating(TCP)植物特异的转录因子(TFs)已被证明在植物发育和器官模式中起着基本作用。然而,尚不清楚TCP基因家族是否在赋予玉米耐旱性中起作用,这是玉米生产的主要限制。在这项研究中,我们在玉米基因组中鉴定了46个ZmTCP基因,并系统分析了它们与水稻,高粱和拟南芥TCP基因的系统发生关系和同义性。在不同组织和干旱条件下对46个ZmTCP基因的表达分析表明,它们参与了玉米对干旱胁迫的响应。重要的是,ZmTCP32和ZmTCP42的遗传变异与幼苗期的耐旱性显着相关。 RT-qPCR结果表明ZmTCP32和ZmTCP42 RNA水平均由ABA,干旱和聚乙二醇处理诱导。基于ZmTCP42的遗传变异与耐旱性之间的显着关联,以及干旱胁迫诱导的ZmTCP42的诱导表达,我们选择了ZmTCP42,以研究其在干旱响应中的作用。我们发现在拟南芥中过表达ZmTCP42导致种子发芽中对ABA的超敏性和增强的抗旱性,从而验证了其在抗旱性中的作用。这些结果表明,ZmTCP42在玉米中起着重要的TCP TF的作用,在抗旱性中起着积极的作用。

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