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黍(珍珠粟)干旱胁迫响应的全面组织特异性蛋白质组分析

Comprehensive tissue-specific proteome analysis of drought stress responses in Pennisetum glaucum (L.) R. Br. (Pearl millet).

作者信息

Ghatak Arindam, Chaturvedi Palak, Nagler Matthias, Roustan Valentin, Lyon David, Bachmann Gert, Postl Wolfgang, Schröfl Andreas, Desai Neetin, Varshney Rajeev K, Weckwerth Wolfram

机构信息

School of Biotechnology and Bioinformatics, D.Y. Patil University, Sector No-15, CBD, Belapur, Navi Mumbai, India; Department of Ecogenomics and Systems Biology, Faculty of Sciences, University of Vienna, Althanstrasse 14, A-1090 Vienna, Austria.

Department of Ecogenomics and Systems Biology, Faculty of Sciences, University of Vienna, Althanstrasse 14, A-1090 Vienna, Austria.

出版信息

J Proteomics. 2016 Jun 30;143:122-135. doi: 10.1016/j.jprot.2016.02.032. Epub 2016 Mar 2.

Abstract

UNLABELLED

Pearl millet is the fifth most important cereal crop worldwide and cultivated especially by small holder farmers in arid and semi-arid regions because of its drought and salt tolerance. The molecular mechanisms of drought stress tolerance in Pennisetum remain elusive. We have used a shotgun proteomics approach to investigate protein signatures from different tissues under drought and control conditions. Drought stressed plants showed significant changes in stomatal conductance and increased root growth compared to the control plants. Root, leaf and seed tissues were harvested and 2281 proteins were identified and quantified in total. Leaf tissue showed the largest number of significant changes (120), followed by roots (25) and seeds (10). Increased levels of root proteins involved in cell wall-, lipid-, secondary- and signaling metabolism and the concomitantly observed increased root length point to an impaired shoot-root communication under drought stress. The harvest index (HI) showed a significant reduction under drought stress. Proteins with a high correlation to the HI were identified using sparse partial least square (sPLS) analysis. Considering the importance of Pearl millet as a stress tolerant food crop, this study provides a first reference data set for future investigations of the underlying molecular mechanisms.

BIOLOGICAL SIGNIFICANCE

Drought stress is the most limiting factor for plant growth and crop production worldwide. At the same time drought susceptible cereal crops are among the largest producers worldwide. In contrast, Pearl millet is a drought and salt tolerant cereal crop especially used in arid and semi-arid regions by small farmers. The multifactorial molecular mechanisms of this unique drought tolerance are not known. Here, we employ shotgun proteomics for a first characterization of the Pearl millet drought stress proteome. The experimental setup and the data set generated from this study reveal comprehensive physiological and proteomic responses of the drought stressed Pearl millet plants. Our study reveals statistically significant tissue-specific protein signatures during the adaptation to drought conditions. Thus, the work provides a first reference study of the drought stress proteome and related drought responsive proteins (DRP's) in Pearl millet.

摘要

未标注

珍珠粟是全球第五大重要谷类作物,因其耐旱和耐盐性,特别受到干旱和半干旱地区小农户的种植。狼尾草耐旱胁迫的分子机制仍不清楚。我们采用鸟枪法蛋白质组学方法研究干旱和对照条件下不同组织的蛋白质特征。与对照植株相比,干旱胁迫植株的气孔导度发生显著变化,根系生长增加。采集根、叶和种子组织,共鉴定和定量了2281种蛋白质。叶组织中显著变化的蛋白质数量最多(120种),其次是根(25种)和种子(10种)。参与细胞壁、脂质、次生代谢和信号代谢的根蛋白水平升高,同时观察到根长度增加,这表明干旱胁迫下地上部与根部的通讯受损。收获指数(HI)在干旱胁迫下显著降低。使用稀疏偏最小二乘法(sPLS)分析鉴定了与HI高度相关的蛋白质。考虑到珍珠粟作为一种耐胁迫粮食作物的重要性,本研究为未来潜在分子机制的研究提供了首个参考数据集。

生物学意义

干旱胁迫是全球植物生长和作物生产的最限制因素。与此同时,易受干旱影响的谷类作物是全球最大的生产者之一。相比之下,珍珠粟是一种耐旱和耐盐的谷类作物,尤其被干旱和半干旱地区的小农户所使用。这种独特耐旱性的多因素分子机制尚不清楚。在这里,我们采用鸟枪法蛋白质组学首次对珍珠粟干旱胁迫蛋白质组进行表征。本研究产生的实验设置和数据集揭示了干旱胁迫下珍珠粟植株全面的生理和蛋白质组学反应。我们的研究揭示了在适应干旱条件过程中具有统计学意义的组织特异性蛋白质特征。因此,这项工作首次对珍珠粟干旱胁迫蛋白质组及相关干旱响应蛋白(DRP)进行了参考研究。

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