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Genome-wide analysis reveals rapid and dynamic changes in miRNA and siRNA sequence and expression during ovule and fiber development in allotetraploid cotton (Gossypium hirsutum L)

Authors :
Pang, Mingxiong
Pang, Mingxiong
Woodward, Andrew W
Agarwal, Vikram
Guan, Xueying
Ha, Misook
Ramachandran, Vanitharani
Chen, Xuemei
Triplett, Barbara A
Stelly, David M
Chen, Z Jeffrey
Pang, Mingxiong
Pang, Mingxiong
Woodward, Andrew W
Agarwal, Vikram
Guan, Xueying
Ha, Misook
Ramachandran, Vanitharani
Chen, Xuemei
Triplett, Barbara A
Stelly, David M
Chen, Z Jeffrey
Source :
Genome Biology; vol 10, iss 11; 1465-6906
Publication Year :
2009

Abstract

Background Cotton fiber development undergoes rapid and dynamic changes in a single cell type, from fiber initiation, elongation, primary and secondary wall biosynthesis, to fiber maturation. Previous studies showed that cotton genes encoding putative MYB transcription factors and phytohormone responsive factors were induced during early stages of ovule and fiber development. Many of these factors are targets of microRNAs (miRNAs) that mediate target gene regulation by mRNA degradation or translational repression. Results Here we sequenced and analyzed over 4 million small RNAs derived from fiber and non-fiber tissues in cotton. The 24-nucleotide small interfering RNAs (siRNAs) were more abundant and highly enriched in ovules and fiber-bearing ovules relative to leaves. A total of 31 miRNA families, including 27 conserved, 4 novel miRNA families and a candidate-novel miRNA, were identified in at least one of the cotton tissues examined. Among 32 miRNA precursors representing 19 unique miRNA families identified, 7 were previously reported, and 25 new miRNA precursors were found in this study. Sequencing, miRNA microarray, and small RNA blot analyses showed a trend of repression of miRNAs, including novel miRNAs, during ovule and fiber development, which correlated with upregulation of several target genes tested. Moreover, 223 targets of cotton miRNAs were predicted from the expressed sequence tags derived from cotton tissues, including ovules and fibers. The cotton miRNAs examined triggered cleavage in the predicted sites of the putative cotton targets in ovules and fibers. Conclusions Enrichment of siRNAs in ovules and fibers suggests active small RNA metabolism and chromatin modifications during fiber development, whereas general repression of miRNAs in fibers correlates with upregulation of a dozen validated miRNA targets encoding transcription and phytohormone response factors, including the genes found to be highly expressed in cotton fibers. Rapid and

Details

Database :
OAIster
Journal :
Genome Biology; vol 10, iss 11; 1465-6906
Notes :
application/pdf, Genome Biology vol 10, iss 11 1465-6906, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1287460076
Document Type :
Electronic Resource