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Proteomic analysis of salt-responsive ubiquitin-related proteins in rice roots

机译:水稻根系盐响应性泛素相关蛋白的蛋白质组学分析

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摘要

Ubiquitination of proteins plays an important role in regulating a myriad of physiological functions in plants such as xylogenesis, senescence, cell cycle control, and stress response. However, only a limited number of proteins in plants have been identified as being ubiquitinated in response to salt stress. The relationships between ubiquitination and salt-stress responses in plants are not clear. METHODS Rice (Oryza sativa) seedlings from the same genetic background with various salt tolerances exposed to salt stress were studied. The proteins of roots were extracted then analyzed using western blotting against ubiquitin. Differentially expressed ubiquitinated proteins were identified by nanospray liquid chromatography/tandem mass spectrometry (nano-LC/MS/MS) and quantified by label-free methods based on the Exponentially Modified Protein Abundance Index (emPAI) and on the peak areas of XIC spectra derived from ubiquitinated peptides. In addition, we performed a gel-based shotgun proteomic analysis to detect the ubiquitinated proteome that may be involved in response to salt stress. RESULTS The expressions of ubiquitination on pyruvate phosphate dikinase 1, heat shock protein 81-1, probable aldehyde oxidase 3, plasma membrane ATPase, cellulose synthase A catalytic subunit 4 [UDP-forming] and cyclin-C1-1 were identified and compared before and after salt treatment. The functions of those ubiquitinated proteins were further discussed for defence against salt stress. In addition, a large number of ubiquitinated proteins were successfully identified as well in this study. CONCLUSIONS The ubiquitination of proteins affected the protective mechanisms in rice seedlings to resist the salt stress during the initial phase. The findings in the present study also demonstrate that the regulated mechanisms through protein ubiquitination are important for rice seedlings against salt stress.
机译:蛋白质的泛素化在调节植物的多种生理功能(如木糖生成,衰老,细胞周期控制和应激反应)中起着重要作用。然而,仅有限数量的植物蛋白被鉴定为响应盐胁迫而泛素化。植物中泛素化和盐胁迫反应之间的关系尚不清楚。方法研究了相同遗传背景下的水稻幼苗在不同盐胁迫下的耐盐性。提取根的蛋白质,然后使用泛素进行蛋白质印迹分析。通过纳米喷雾液相色谱/串联质谱(nano-LC / MS / MS)鉴定差异表达的泛素化蛋白,并基于指数修饰的蛋白丰度指数(emPAI)和XIC谱图的峰面积,通过无标记方法进行定量来自泛素化肽。此外,我们进行了基于凝胶的shot弹枪蛋白质组学分析,以检测可能与盐胁迫反应有关的泛素化蛋白质组。结果鉴定并比较了丙酮酸磷酸二激酶1,热休克蛋白81-1,可能的醛氧化酶3,质膜ATPase,纤维素合酶A催化亚基4 [UDP形成]和细胞周期蛋白C1-1的泛素化表达。经过盐处理。这些泛素化蛋白的功能将进一步讨论其对盐胁迫的防御作用。另外,在这项研究中也成功鉴定出大量的泛素化蛋白。结论蛋白质的泛素化影响了水稻幼苗在初始阶段抵抗盐胁迫的保护机制。本研究的发现还表明,通过蛋白质泛素化的调控机制对于水稻幼苗抗盐胁迫很重要。

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