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Genome-wide survey and comprehensive expression profiling of Aux/IAA gene family in chickpea and soybean

机译:鹰嘴豆和大豆中Aux / IAA基因家族的全基因组调查和综合表达谱

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摘要

Auxin plays a central role in many aspects of plant growth and development. Auxin/Indole-3-Acetic Acid (Aux/IAA) genes cooperate with several other components in the perception and signaling of plant hormone auxin. An investigation of chickpea and soybean genomes revealed 22 and 63 putative Aux/IAA genes, respectively. These genes were classified into six subfamilies on the basis of phylogenetic analysis. Among 63 soybean Aux/IAA genes, 57 (90.5%) were found to be duplicated via whole genome duplication (WGD)/segmental events. Transposed duplication played a significant role in tandem arrangements between the members of different subfamilies. Analysis of Ka/Ks ratio of duplicated Aux/IAA genes revealed purifying selection pressure with restricted functional divergence. Promoter sequence analysis revealed several cis-regulatory elements related to auxin, abscisic acid, desiccation, salt, seed, and endosperm, indicating their role in development and stress responses. Expression analysis of chickpea and soybean Aux/IAA genes in various tissues and stages of development demonstrated tissue/stage specific differential expression. In soybean, at least 16 paralog pairs, duplicated via WGD/segmental events, showed almost indistinguishable expression pattern, but eight pairs exhibited significantly diverse expression patterns. Under abiotic stress conditions, such as desiccation, salinity and/or cold, many Aux/IAA genes of chickpea and soybean revealed differential expression. qRT-PCR analysis confirmed the differential expression patterns of selected Aux/IAA genes in chickpea. The analyses presented here provide insights on putative roles of chickpea and soybean Aux/IAA genes and will facilitate elucidation of their precise functions during development and abiotic stress responses.
机译:生长素在植物生长和发育的许多方面起着核心作用。生长素/吲哚-3-乙酸(Aux / IAA)基因在植物激素生长素的感知和信号传导中与其他几个成分协同作用。对鹰嘴豆和大豆基因组的研究分别揭示了22个和63个推定的Aux / IAA基因。根据系统发育分析,将这些基因分为六个亚科。在63个大豆Aux / IAA基因中,发现57个(90.5%)通过全基因组复制(WGD)/片段事件复制。转座复制在不同亚家族成员之间的串联排列中起着重要作用。分析重复的Aux / IAA基因的Ka / Ks比表明,纯化选择压力具有受限的功能差异。启动子序列分析揭示了几种与生长素,脱落酸,脱水,盐,种子和胚乳有关的顺式调控元件,表明它们在发育和应激反应中的作用。鹰嘴豆和大豆Aux / IAA基因在各种组织和发育阶段的表达分析表明组织/阶段特异性差异表达。在大豆中,通过WGD /节段事件重复的至少16对旁系同源物显示几乎无法区分的表达模式,但八对显示出明显不同的表达模式。在非生物胁迫条件下,例如干燥,盐分和/或寒冷,鹰嘴豆和大豆的许多Aux / IAA基因显示出差异表达。 qRT-PCR分析证实了鹰嘴豆中所选Aux / IAA基因的差异表达模式。本文介绍的分析提供了关于鹰嘴豆和大豆Aux / IAA基因的假定作用的见解,并将有助于阐明它们在发育和非生物胁迫反应中的确切功能。

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