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Genes Encoding Transcription Factors TaDREB5 and TaNFYC-A7 Are Differentially Expressed in Leaves of Bread Wheat in Response to Drought Dehydration and ABA

机译:干旱脱水和ABA对面包小麦叶片中转录因子TaDREB5和TaNFYC-A7基因表达的影响

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摘要

Two groups of six spring bread wheat varieties with either high or low grain yield under the dry conditions of Central and Northern Kazakhstan were selected for analysis. Experiments were set up with the selected wheat varieties in controlled environments as follows: (1) slowly progressing drought imposed on plants in soil, (2) rapid dehydration of whole plants grown in hydroponics, (3) dehydration of detached leaves, and (4) ABA treatment of whole plants grown in hydroponics. Representatives of two different families of transcription factors (TFs), TaDREB5 and TaNFYC-A7, were found to be linked to yield-under-drought using polymorphic Amplifluor-like SNP marker assays. qRT-PCR revealed differing patterns of expression of these genes in the leaves of plants subjected to the above treatments. Under drought, TaDREB5 was significantly up-regulated in leaves of all high-yielding varieties tested and down-regulated in all low-yielding varieties, and the level of expression was independent of treatment type. In contrast, TaNFYC-A7 expression levels showed different responses in the high- and low-yield groups of wheat varieties. TaNFYC-A7 expression under dehydration (treatments 2 and 3) was higher than under drought (treatment 1) in all high-yielding varieties tested, while in all low-yielding varieties the opposite pattern was observed: the expression levels of this gene under drought were higher than under dehydration. Rapid dehydration of detached leaves and intact wheat plants grown in hydroponics produced similar changes in gene expression. ABA treatment of whole plants caused rapid stomatal closure and a rise in the transcript level of both genes during the first 30 min, which decreased 6 h after treatment. At this time-point, expression of TaNFYC-A7 was again significantly up-regulated compared to untreated controls, while TaDREB5 returned to its initial level of expression. These findings reveal significant differences in the transcriptional regulation of two drought-responsive and ABA-dependent TFs under slowly developing drought and rapid dehydration of wheat plants. The results obtained suggest that correlation between grain yield in dry conditions and TaNFYC-A7 expression levels in the examined wheat varieties is dependent on the length of drought development and/or strength of drought; while in the case of TaDREB5, no such dependence is observed.
机译:选择在哈萨克斯坦中部和北部干旱条件下谷物产量高或低的两组六个春季面包小麦品种进行分析。在控制的环境中对选定的小麦品种进行了以下实验:(1)对土壤中的植物施加缓慢的干旱;(2)在水培法中生长的整株植物快速脱水;(3)叶片离体脱水;以及(4) )ABA处理在水培法中生长的整个植物。使用多态性Amplifluor样SNP标记分析法,发现两个不同转录因子家族(TFs)的代表TaDREB5和TaNFYC-A7与干旱产量相关。 qRT-PCR揭示了在经过上述处理的植物叶片中这些基因表达的不同模式。在干旱下,TaDREB5在所有测试的高产品种的叶片中均显着上调,而在所有低产品种中的叶片中均下调,其表达水平与处理类型无关。相比之下,TaNFYC-A7表达水平在小麦品种的高产和低产群体中表现出不同的响应。在测试的所有高产品种中,脱水(处理2和3)下的TaNFYC-A7表达高于干旱(处理1),而在所有低产品种中,观察到相反的模式:该基因在干旱下的表达水平高于脱水。在水培法中生长的离体叶片和完整小麦植株的快速脱水在基因表达中产生了相似的变化。 ABA对整株植物的处理导致在前30分钟内气孔快速关闭,两个基因的转录水平均升高,处理后6 h则下降。在这个时间点,与未处理的对照相比,TaNFYC-A7的表达再次显着上调,而TaDREB5返回到其初始表达水平。这些发现揭示了在缓慢发展的干旱和小麦植物快速脱水下,两种干旱响应型和ABA依赖型TF的转录调控存在显着差异。获得的结果表明,在干旱条件下,受测小麦品种的籽粒产量与TaNFYC-A7表达水平之间的相关性取决于干旱发展的时间长短和/或干旱强度。而对于TaDREB5,则没有这种依赖性。

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