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比较蛋白质组学揭示了两个小麦(Triticum aestivum L.)品种在脱水和复水条件下抗旱机制的复杂性。

Comparative proteomics illustrates the complexity of drought resistance mechanisms in two wheat (Triticum aestivum L.) cultivars under dehydration and rehydration.

作者信息

Cheng Lixiang, Wang Yuping, He Qiang, Li Huijun, Zhang Xiaojing, Zhang Feng

机构信息

College of Agronomy, Gansu Provincial Key Laboratory of Aridland Crop Science, Gansu Key Laboratory of Crop Improvement & Germplasm Enhancement, Research & Testing Center, Gansu Agricultural University, Lanzhou, China.

Wuwei Agricultural and Animal Husbandry Bureau, Wuwei, China.

出版信息

BMC Plant Biol. 2016 Aug 31;16(1):188. doi: 10.1186/s12870-016-0871-8.

Abstract

BACKGROUND

Drought stress is one of the most adverse environmental constraints to plant growth and productivity. Comparative proteomics of drought-tolerant and sensitive wheat genotypes is a strategy to understand the complexity of molecular mechanism of wheat in response to drought. This study attempted to extend findings regarding the potential proteomic dynamics in wheat under drought stress and to enrich the research content of drought tolerance mechanism.

RESULTS

A comparative proteomics approach was applied to analyze proteome change of Xihan No. 2 (a drought-tolerant cultivar) and Longchun 23 (a drought-sensitive cultivar) subjected to a range of dehydration treatments (18 h, 24 h and 48 h) and rehydration treatment (R24 h) using 2-DE, respectively. Quantitative image analysis showed a total of 172 protein spots in Xihan No. 2 and 215 spots from Longchun 23 with their abundance significantly altered (p < 0.05) more than 2.5-fold. Out of these spots, a total of 84 and 64 differentially abundant proteins were identified by MALDI-TOF/TOF MS in Xihan No. 2 and Longchun 23, respectively. Most of these identified proteins were involved in metabolism, photosynthesis, defence and protein translation/processing/degradation in both two cultivars. In addition, the proteins involved in redox homeostasis, energy, transcription, cellular structure, signalling and transport were also identified. Furthermore, the comparative analysis of drought-responsive proteome allowed for the general elucidation of the major mechanisms associated with differential responses to drought of both two cultivars. These cellular processes work more cooperatively to re-establish homeostasis in Xihan No. 2 than Longchun 23. The resistance mechanisms of Xihan No. 2 mainly included changes in the metabolism of carbohydrates and amino acids as well as in the activation of more antioxidation and defense systems and in the levels of proteins involved in ATP synthesis and protein degradation/refolding.

CONCLUSIONS

This study revealed that the levels of a number of proteins involved in various cellular processes were affected by drought stress in two wheat cultivars with different drought tolerance. The results showed that there exist specific responses to drought in Xihan No. 2 and Longchun 23. The proposed hypothetical model would explain the interaction of these identified proteins that are associated with drought-responses in two cultivars, and help in developing strategies to improve drought tolerance in wheat.

摘要

背景

干旱胁迫是植物生长和生产力面临的最不利环境限制因素之一。对耐旱和干旱敏感型小麦基因型进行比较蛋白质组学研究,是了解小麦响应干旱分子机制复杂性的一种策略。本研究试图拓展关于干旱胁迫下小麦潜在蛋白质组动态变化的研究结果,并丰富耐旱机制的研究内容。

结果

采用比较蛋白质组学方法,分别运用双向电泳(2-DE)分析了耐旱品种西旱2号和干旱敏感品种陇春23在一系列脱水处理(18小时、24小时和48小时)及复水处理(R24小时)后的蛋白质组变化。定量图像分析显示,西旱2号中有172个蛋白点,陇春23中有215个蛋白点,其丰度显著改变(p < 0.05),变化幅度超过2.5倍。在这些蛋白点中,分别通过基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF/TOF MS)在西旱2号和陇春23中鉴定出84个和64个差异丰度蛋白。在这两个品种中,大多数鉴定出的蛋白参与代谢、光合作用、防御以及蛋白质翻译/加工/降解。此外,还鉴定出了参与氧化还原稳态、能量、转录、细胞结构、信号传导和运输的蛋白。此外,对干旱响应蛋白质组的比较分析有助于总体阐明两个品种对干旱差异响应的主要机制。与陇春23相比,这些细胞过程在西旱2号中更协同地发挥作用以重新建立体内平衡。西旱2号的抗性机制主要包括碳水化合物和氨基酸代谢的变化、更多抗氧化和防御系统的激活以及参与ATP合成和蛋白质降解/重折叠的蛋白质水平变化。

结论

本研究表明,在两个耐旱性不同的小麦品种中,参与各种细胞过程的许多蛋白质水平受到干旱胁迫的影响。结果表明,西旱2号和陇春23对干旱存在特定响应。所提出的假设模型将解释这些鉴定出的与两个品种干旱响应相关的蛋白质之间的相互作用,并有助于制定提高小麦耐旱性的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82cb/5006382/6f0c5c0e0166/12870_2016_871_Fig1_HTML.jpg

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