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Title: | Genome-wide survey and comprehensive expression profiling of Aux/IAA gene family in chickpea and soybean |
Authors: | Singh, Vikash K. Jain, Mukesh |
Keywords: | gene family Aux/IAA chickpea soybean gene duplication transposed duplication gene expression abiotic stress |
Issue Date: | 2015 |
Publisher: | Frontiers Media S.A. |
Citation: | Front. Plant Sc., 6: 918 |
Abstract: | 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. |
Description: | Accepted date: 12 October 2015 |
URI: | http://172.16.0.77:8080/jspui/handle/123456789/582 |
ISSN: | 1664-462X |
Appears in Collections: | Institutional Publications |
Files in This Item:
File | Description | Size | Format | |
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Jain M_2015_7.pdf | 4.41 MB | Adobe PDF | View/Open |
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