分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Drought induces epitranscriptome and proteome changes in stem-differentiating xylem of Populus trichocarpa

Gao Yubang, Liu Xuqing, Jin Yandong, Wu Ji, Li Shuang, Li Yaxing, Chen Binqing, Zhang Yaxin, Wei Linxiao, Li Wei, Li Ruili, Lin Chentao, Reddy Anireddy S N, Jaiswal Pankaj, Gu Lianfeng

Journal:PLANT PHYSIOLOGY

IF:8.01

DOI:10.1093/plphys/kiac272

PMID:35670753

Published:2022-06-07

research field:抗菌素耐药性毒力生物学传染病学微生物学口腔医学

Abstract

Understanding gene expression and regulation requires insights into RNA transcription, processing, modification, and translation. However, the relationship between the epitranscriptome and the proteome under drought stress remains undetermined in poplar (Populus trichocarpa). In this study, we used Nanopore direct RNA sequencing and tandem mass tag-based proteomic analysis to examine epitranscriptomic and proteomic regulation induced by drought treatment in stem-differentiating xylem (SDX). Our results revealed a decreased full-length read ratio under drought treatment and, especially, a decreased association between transcriptome and proteome changes in response to drought. Epitranscriptome analysis of cellulose- and lignin-related genes revealed an increased N6-Methyladenosine (m6A) ratio, which was accompanied by decreased RNA abundance and translation, under drought stress. Interestingly, usage of the distal poly(A) site increased during drought stress. Finally, we found that transcripts of highly expressed genes tend to have shorter poly(A) tail length (PAL), and drought stress increased the percentage of transcripts with long PAL. These findings provide insights into the interplay among m6A, polyadenylation, PAL, and translation under drought stress in P. trichocarpa SDX.

本文使用的Yeasen产品

购物车
客服
转染试用