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非生物胁迫下西瓜营养组织中瓜氨酸的功能相关性

Functional Relevance of Citrulline in the Vegetative Tissues of Watermelon During Abiotic Stresses.

作者信息

Song Qiushuo, Joshi Madhumita, DiPiazza James, Joshi Vijay

机构信息

Department of Horticultural Sciences, Texas A&M University, College Station, TX, United States.

Texas A&M AgriLife Research and Extension Center, Uvalde, TX, United States.

出版信息

Front Plant Sci. 2020 May 5;11:512. doi: 10.3389/fpls.2020.00512. eCollection 2020.

Abstract

A non-protein amino acid, citrulline, is a compatible solute involved in the maintenance of cellular osmolarity during abiotic stresses. Despite its significance, a coherent model indicating the role of citrulline during stress conditions has not yet emerged. We have used watermelon, naturally rich in citrulline, as a model to understand its accumulation during drought stress and nitrogen perturbation using transcriptomic and metabolomic analysis. Experiments were performed in the semi-controlled environment, and open field to study the accumulation of drought-induced citrulline in the vegetative tissues of watermelon by monitoring the stress treatments using physiological measurements. The amino acid profiling of leaves and stems in response to drought stress showed up to a 38 and 16-fold increase in citrulline content, respectively. Correlation between amino acids indicated a concomitant activation of a metabolic pathway that included citrulline, its precursor (ornithine), and catabolic product (arginine). Consistent with its accumulation, the gene expression analysis and RNA-Sequencing confirmed activation of citrulline biosynthesis-related genes - (), () and (), and down-regulation of catabolic genes; () and () in drought-stressed leaf tissues. Based on the relative abundance in the nitrogen-depleted vegetative tissues and down-regulation of genes involved in citrulline biosynthesis, we also demonstrated that the nitrogen status of the plant regulates citrulline. Taken together, these data provide further insights into the metabolic and molecular mechanisms underlying the amino acid metabolism under environmental stress and the significance of non-protein amino acid citrulline in plants.

摘要

非蛋白质氨基酸瓜氨酸是一种相容性溶质,参与非生物胁迫下细胞渗透压的维持。尽管其具有重要意义,但尚未出现一个连贯的模型来表明瓜氨酸在胁迫条件下的作用。我们以天然富含瓜氨酸的西瓜为模型,通过转录组学和代谢组学分析来了解其在干旱胁迫和氮素扰动期间的积累情况。实验在半控制环境和田间进行,通过生理测量监测胁迫处理,以研究干旱诱导的瓜氨酸在西瓜营养组织中的积累。干旱胁迫下叶片和茎的氨基酸谱分析表明,瓜氨酸含量分别增加了38倍和16倍。氨基酸之间的相关性表明,包括瓜氨酸、其前体(鸟氨酸)和分解代谢产物(精氨酸)在内的代谢途径同时被激活。与其积累情况一致,基因表达分析和RNA测序证实了干旱胁迫叶片组织中瓜氨酸生物合成相关基因()、()和()的激活,以及分解代谢基因()和()的下调。基于氮素缺乏的营养组织中的相对丰度以及瓜氨酸生物合成相关基因的下调,我们还证明了植物的氮素状态调节瓜氨酸。综上所述,这些数据为环境胁迫下氨基酸代谢的代谢和分子机制以及植物中非蛋白质氨基酸瓜氨酸的重要性提供了进一步的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1dc/7216109/ed2bb47f2f25/fpls-11-00512-g001.jpg

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