转录组
生物
基因
转录调控
RNA序列
热休克蛋白
蛋白质组学
蛋白质生物合成
基因表达
干旱胁迫
转录后调控
遗传学
植物
作者
Zehong Ding,Lili Fu,Weiwei Tie,Yan Yan,Chunlai Wu,Wei Hu,Jiaming Zhang
标识
DOI:10.1021/acs.jafc.9b00014
摘要
Cassava is a major tropical/subtropical food crop and its yield is greatly restrained by drought; however, the mechanism underlying the drought stress remains largely unknown. In this study, totally 1242 and 715 differentially expressed genes (DEGs), together with 237 and 307 differentially expressed proteins (DEPs), were respectively identified in cassava leaves and roots through RNA-seq and iTRAQ techniques. The majority of DEGs and DEPs were exclusively regulated at the mRNA and protein level, respectively, whereas only a few were commonly regulated, indicating the major involvement of post-transcriptional regulation under drought. Subsequently, the functions of these specifically or commonly regulated DEGs and DEPs were analyzed, and the post-transcriptional regulation of genes involved in heat shock protein, secondary metabolism biosynthesis, and hormone biosynthesis was extensively discussed. This is the first report on an integration of transcriptomic and proteomic analysis in cassava, and it provides new insights into the post-transcriptional regulation of cassava drought stress.
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