Uptake and Metabolic Conversion of Exogenous Phosphatidylcholines Depending on Their Acyl Chain Structure in Arabidopsis thaliana

IF 4.9 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY International Journal of Molecular Sciences Pub Date : 2023-12-20 DOI:10.3390/ijms25010089
E. Kotlova, S. Senik, Gregory A. Pozhvanov, I. Prokopiev, I. Boldyrev, B. Manzhieva, Ekaterina Ya. Amigud, R. Puzanskiy, Anna A. Khakulova, E. B. Serebryakov
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Abstract

Fungi and plants are not only capable of synthesizing the entire spectrum of lipids de novo but also possess a well-developed system that allows them to assimilate exogenous lipids. However, the role of structure in the ability of lipids to be absorbed and metabolized has not yet been characterized in detail. In the present work, targeted lipidomics of phosphatidylcholines (PCs) and phosphatidylethanolamines (PEs), in parallel with morphological phenotyping, allowed for the identification of differences in the effects of PC molecular species introduced into the growth medium, in particular, typical bacterial saturated (14:0/14:0, 16:0/16:0), monounsaturated (16:0/18:1), and typical for fungi and plants polyunsaturated (16:0/18:2, 18:2/18:2) species, on Arabidopsis thaliana. For comparison, the influence of an artificially synthesized (1,2-di-(3-(3-hexylcyclopentyl)-propanoate)-sn-glycero-3-phosphatidylcholine, which is close in structure to archaeal lipids, was studied. The phenotype deviations stimulated by exogenous lipids included changes in the length and morphology of both the roots and leaves of seedlings. According to lipidomics data, the main trends in response to exogenous lipid exposure were an increase in the proportion of endogenic 18:1/18:1 PC and 18:1_18:2 PC molecular species and a decrease in the relative content of species with C18:3, such as 18:3/18:3 PC and/or 16:0_18:3 PC, 16:1_18:3 PE. The obtained data indicate that exogenous lipid molecules affect plant morphology not only due to their physical properties, which are manifested during incorporation into the membrane, but also due to the participation of exogenous lipid molecules in the metabolism of plant cells. The results obtained open the way to the use of PCs of different structures as cellular regulators.
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拟南芥对外源磷脂酰胆碱的吸收和代谢转化取决于其酰基链结构
真菌和植物不仅能够从头合成各种脂质,而且还拥有一套完善的系统,使它们能够吸收外源脂质。然而,结构在脂质吸收和代谢能力中的作用尚未得到详细表征。在本研究中,通过对磷脂酰胆碱(PCs)和磷脂酰乙醇胺(PEs)进行有针对性的脂质组学研究,并同时进行形态学表型分析,确定了引入生长培养基的 PC 分子种类的影响差异,特别是典型的细菌饱和(14:0/14:0、16:0/16:0)、单不饱和(16:0/18:1)以及真菌和植物中典型的多不饱和(16:0/18:2、18:2/18:2)物种对拟南芥的影响。为了进行比较,研究了人工合成的(1,2-二(3-(3-己基环戊基)-丙酸)-sn-甘油-3-磷脂酰胆碱对拟南芥的影响。外源脂质刺激的表型偏差包括幼苗根和叶的长度和形态变化。根据脂质组学数据,外源脂质暴露的主要反应趋势是内源 18:1/18:1 PC 和 18:1_18:2 PC 分子物种的比例增加,C18:3(如 18:3/18:3 PC 和/或 16:0_18:3 PC、16:1_18:3 PE)物种的相对含量减少。所获得的数据表明,外源脂质分子影响植物形态的原因不仅在于它们的物理特性(在融入膜的过程中表现出来),还在于外源脂质分子参与了植物细胞的新陈代谢。研究结果为利用不同结构的多氯联苯作为细胞调节剂开辟了道路。
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来源期刊
International Journal of Molecular Sciences
International Journal of Molecular Sciences Chemistry-Organic Chemistry
CiteScore
8.10
自引率
10.70%
发文量
13472
审稿时长
17.49 days
期刊介绍: The International Journal of Molecular Sciences (ISSN 1422-0067) provides an advanced forum for chemistry, molecular physics (chemical physics and physical chemistry) and molecular biology. It publishes research articles, reviews, communications and short notes. Our aim is to encourage scientists to publish their theoretical and experimental results in as much detail as possible. Therefore, there is no restriction on the length of the papers or the number of electronics supplementary files. For articles with computational results, the full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material (including animated pictures, videos, interactive Excel sheets, software executables and others).
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