Hao Pengchao, Zhu Jiantang, Gu Aiqin, Lv Dongwen, Ge Pei, Chen Guanxing, Li Xiaohui, Yan Yueming
College of Life Science, Capital Normal University, Beijing, P. R. China.
Proteomics. 2015 May;15(9):1544-63. doi: 10.1002/pmic.201400179.
Roots, leaves, and intermediate sections between roots and leaves (ISRL) of wheat seedlings show different physiological functions at the protein level. We performed the first integrative proteomic analysis of different tissues of the drought-tolerant wheat cultivar Hanxuan 10 (HX-10) and drought-sensitive cultivar Chinese Spring (CS) during a simulated drought and recovery. Differentially expressed proteins (DEPs) in the roots (122), ISRLs (146), and leaves (163) showed significant changes in expression in response to drought stress and recovery. Numerous DEPs associated with cell defense and detoxifications were significantly regulated in roots and ISRLs, while in leaves, DEPs related to photosynthesis showed significant changes in expression. A significantly larger number of DEPs related to stress defense were upregulated in HX-10 than in CS. Expression of six HSPs potentially related to drought tolerance was significantly upregulated under drought conditions, and these proteins were involved in a complex protein-protein interaction network. Further phosphorylation analysis showed that the phosphorylation levels of HSP60, HSP90, and HOP were upregulated in HX-10 under drought stress. We present an overview of metabolic pathways in wheat seedlings based on abscisic acid signaling and important protein expression patterns.
小麦幼苗的根、叶以及根与叶之间的中间部分(ISRL)在蛋白质水平上表现出不同的生理功能。我们首次对耐旱小麦品种旱选10号(HX - 10)和干旱敏感品种中国春(CS)在模拟干旱及恢复过程中不同组织进行了综合蛋白质组学分析。根(122个)、ISRL(146个)和叶(163个)中的差异表达蛋白(DEP)在干旱胁迫和恢复过程中表达出现显著变化。与细胞防御和解毒相关的众多DEP在根和ISRL中受到显著调控,而在叶中,与光合作用相关的DEP表达出现显著变化。与胁迫防御相关的DEP在HX - 10中上调的数量显著多于CS。六种可能与耐旱性相关的热休克蛋白(HSP)的表达在干旱条件下显著上调,并且这些蛋白参与了一个复杂的蛋白质 - 蛋白质相互作用网络。进一步的磷酸化分析表明,干旱胁迫下HX - 10中HSP60、HSP90和HOP的磷酸化水平上调。我们基于脱落酸信号传导和重要蛋白质表达模式概述了小麦幼苗的代谢途径。