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龙舌兰属奥戈尔曼西亚 Haw. 的蛋白质组:揭示代谢变化、氨基酸过度积累和叶绿体缺陷白化体植物中的补偿途径。

Proteome of Agave angustifolia Haw.: Uncovering metabolic alterations, over-accumulation of amino acids, and compensatory pathways in chloroplast-deficient albino plantlets.

机构信息

Unidad de Biotecnología, Centro de Investigación Científica de Yucatán, Calle 43 No. 130 x 32 y 34. Col. Chuburná de Hidalgo, 97205, Mérida, Yucatán, México.

Red de Estudios Moleculares Avanzados, Clúster Científico y Tecnológico BioMimic®, Instituto de Ecología A.C. (INECOL), Carretera Antigua a Coatepec No. 351, Congregación el Haya, 91070, Xalapa, Veracruz, México.

出版信息

Plant Physiol Biochem. 2023 Aug;201:107902. doi: 10.1016/j.plaphy.2023.107902. Epub 2023 Jul 23.

Abstract

Amino acids (AA) are essential molecules for plant physiology, acting as precursor molecules for proteins and other organic compounds. Chloroplasts play a vital role in AA metabolism, yet little is known about the impact on AA metabolism of albino plants' lack of chloroplasts. In this study, we conducted a quantitative proteome analysis on albino and variegated somaclonal variants of Agave angustifolia Haw. to investigate metabolic alterations in chloroplast-deficient plants, with a focus on AA metabolic pathways. We identified 82 enzymes involved in AA metabolism, with 32 showing differential accumulation between the somaclonal variants. AaCM, AaALS, AaBCAT, AaIPMS1, AaSHMT, AaAST, AaCGS, and AaMS enzymes were particularly relevant in chloroplast-deficient Agave plantlets. Both variegated and albino phenotypes exhibited excessive synthesis of AA typically associated with chloroplasts (aromatic AAs, BCAAs, Asp, Lys, Pro and Met). Consistent trends were observed for AaBCAT and AaCM at mRNA and protein levels in albino plantlets. These findings highlight the critical activation and reprogramming of AA metabolic pathways in plants lacking chloroplasts. This study contributes to unraveling the intricate relationship between AA metabolism and chloroplast absence, offering insights into survival mechanisms of albino plants.

摘要

氨基酸(AA)是植物生理学的必需分子,作为蛋白质和其他有机化合物的前体分子。叶绿体在 AA 代谢中起着至关重要的作用,但对于缺乏叶绿体的白化植物对 AA 代谢的影响知之甚少。在这项研究中,我们对龙舌兰属植物白化体和斑驳体无性系变异体进行了定量蛋白质组分析,以研究叶绿体缺陷植物的代谢变化,重点关注 AA 代谢途径。我们鉴定了 82 种参与 AA 代谢的酶,其中 32 种在无性系变异体之间表现出差异积累。在叶绿体缺陷的龙舌兰植物中,AaCM、AaALS、AaBCAT、AaIPMS1、AaSHMT、AaAST、AaCGS 和 AaMS 酶特别相关。白化体和斑驳体表型均表现出与叶绿体相关的 AA 过度合成(芳香族 AA、BCAA、Asp、Lys、Pro 和 Met)。在白化体植物的 mRNA 和蛋白质水平上,均观察到 AaBCAT 和 AaCM 的一致趋势。这些发现强调了缺乏叶绿体的植物中 AA 代谢途径的关键激活和重编程。本研究有助于揭示 AA 代谢与叶绿体缺失之间的复杂关系,为白化植物的生存机制提供了新的见解。

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