Abstract
The eukaryotic lineage-specific LIM protein (L IN11, I SL1, and M EC3) family play pivotal role in modulation of actin dynamics and transcriptional regulation. The systematic investigation of this family has not been carried in detail and rare in legumes. Current study involves the mining of Cicer arietinum genome for the genes coding for LIM domain proteins and displayed significant homology with LIM genes of other species. The analysis led to the identification of 15 members, which were positioned on chickpea chromosomes. The phylogenetic and motif analysis suggested their categorization into two sub-families i.e., Ca-2LIMs and Ca-DA1/DAR, which comprised of nine and six candidates, respectively. Further sub-categories of Ca-2LIMs were recognised as αLIM, βLIM, δLIM and γLIM. The LIM genes within their sub-families displayed conserved genomic and motif organization. The expression pattern of Ca-2LIMs across developmental and reproductive tissues demonstrated strong correlation with established consensus. The Ca-2LIM belongs to PLIM and GLIM (XLIM) was found highly expressed in floral tissue. Others showed ubiquitous expression pattern with their dominance in stem. Under hormonal and pathogenic conditions these LIMs were found to up-regulate during salicylic acid, abscisic acid and Ascochyta rabiei treatment or infection; and down-regulated in response to jasmonic acid treatment. The findings of this work, particularly in terms of modulation of LIM genes under biotic stress will open up the way to further explore and establish the role of chickpea LIMs in plant defense response.
Highlights
Transcription factors are one of the most fundamental attractions for the modulation of various biological processes
The BLAST search was performed against available chickpea genome and chickpea transcriptome database (CTDB) by using A. thaliana LIM domain-containing proteins
In order to verify the reliability of these sequences the deduced proteins were submitted for SMART analysis, which showed the presence of LIM domain in each case (S1 Fig)
Summary
Transcription factors are one of the most fundamental attractions for the modulation of various biological processes. The easy accessibility of high throughput genome sequencing technologies has facilitated many researchers to carry out PLOS ONE | DOI:10.1371/journal.pone.0138719 September 29, 2015
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