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联合分析柑橘根系转录组和代谢组揭示 pH 介导缓解铝毒的分子机制。

Molecular mechanisms for pH-mediated amelioration of aluminum-toxicity revealed by conjoint analysis of transcriptome and metabolome in Citrus sinensis roots.

机构信息

College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, 350002, China; College of Environmental and Biological Engineering, Putian University, Putian, 351100, China.

College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

出版信息

Chemosphere. 2022 Jul;299:134335. doi: 10.1016/j.chemosphere.2022.134335. Epub 2022 Mar 23.

Abstract

Little is known about the effects of pH-aluminum (Al) interactions on gene expression and/or metabolite profiles in plants. Eleven-week-old seedlings of Citrus sinensis were fertilized with nutrient solution at an Al level of 0 or 1 mM and a pH of 3.0 or 4.0 for 18 weeks. Increased pH mitigated Al-toxicity-induced accumulation of callose, an Al-sensitive marker. In this study, we identified more differentially expressed genes and differentially abundant metabolites in pH 4.0 + 1 mM Al-treated roots (P4AR) vs pH 4.0 + 0 mM Al-treated roots (P4R) than in pH 3.0 + 1 mM Al-treated roots (P3AR) vs pH 3.0 + 0 mM Al-treated roots (P3R), suggesting that increased pH enhanced root metabolic adaptations to Al-toxicity. Further analysis indicated that increased pH-mediated mitigation of root Al-toxicity might be related to several factors, including: enhanced capacity to maintain the homeostasis of phosphate and energy and the balance between generation and scavenging of reactive oxygen species and aldehydes; and elevated accumulation of secondary metabolites such as polyphenol, proanthocyanidins and phenolamides and adaptations of cell wall and plasma membrane to Al-toxicity.

摘要

关于 pH-铝(Al)相互作用对植物基因表达和/或代谢物谱的影响知之甚少。用含有 0 或 1mMAl 和 pH 值为 3.0 或 4.0 的营养液对 11 周龄的甜橙幼苗进行 18 周的施肥。提高 pH 值减轻了 Al 毒性诱导的几丁质积累,几丁质是一种对 Al 敏感的标记物。在这项研究中,我们发现 pH 值为 4.0+1mMAl 处理的根(P4AR)与 pH 值为 4.0+0mMAl 处理的根(P4R)相比,pH 值为 3.0+1mMAl 处理的根(P3AR)与 pH 值为 3.0+0mMAl 处理的根(P3R)中差异表达基因和差异丰度代谢物更多,这表明提高 pH 值增强了根对 Al 毒性的代谢适应。进一步的分析表明,增加 pH 值介导的减轻根 Al 毒性可能与几个因素有关,包括:增强维持磷酸盐和能量内稳态的能力,以及在活性氧和醛的产生和清除之间的平衡;以及次生代谢物如多酚、原花青素和酚酰胺的积累增加,以及细胞壁和质膜对 Al 毒性的适应。

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