Please use this identifier to cite or link to this item: http://223.31.159.10:8080/jspui/handle/123456789/441
Title: Global transcriptome analysis of developing chickpea (Cicer arietinum L.) seeds
Authors: Pradhan, Seema
Bandhiwal, Nitesh
Shah, Niraj
Kant, Chandra
Gaur, Rashmi
Bhatia, Sabhyata
Keywords: Transcriptome
Chickpea
seed
assembly
next generation sequencing
annotation
differential expression
Issue Date: 2014
Publisher: Frontiers Media S.A.
Citation: Front. Plant Sc., 5: 698
Abstract: Understanding developmental processes, especially in non-model crop plants, is extremely important in order to unravel unique mechanisms regulating development. Chickpea (C. arietinum L.) seeds are especially valued for their high carbohydrate and protein content. Therefore, in order to elucidate the mechanisms underlying seed development in chickpea, deep sequencing of transcriptomes from four developmental stages was undertaken. In this study, next generation sequencing platform was utilized to sequence the transcriptome of four distinct stages of seed development in chickpea. About 1.3 million reads were generated which were assembled into 51,099 unigenes by merging the de novo and reference assemblies. Functional annotation of the unigenes was carried out using the Uniprot, COG and KEGG databases. RPKM based digital expression analysis revealed specific gene activities at different stages of development which was validated using Real time PCR analysis. More than 90% of the unigenes were found to be expressed in at least one of the four seed tissues. DEGseq was used to determine differentially expressing genes which revealed that only 6.75% of the unigenes were differentially expressed at various stages. Homology based comparison revealed 17.5% of the unigenes to be putatively seed specific. Transcription factors were predicted based on HMM profiles built using TF sequences from five legume plants and analyzed for their differential expression during progression of seed development. Expression analysis of genes involved in biosynthesis of important secondary metabolites suggested that chickpea seeds can serve as a good source of antioxidants. Since transcriptomes are a valuable source of molecular markers like simple sequence repeats (SSRs), about 12,000 SSRs were mined in chickpea seed transcriptome and few of them were validated. In conclusion, this study will serve as a valuable resource for improved chickpea breeding.
Description: Accepted date: 24 November 2014
URI: http://172.16.0.77:8080/jspui/handle/123456789/441
ISSN: 1664-462X
Appears in Collections:Institutional Publications

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