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多不饱和和超长链脂肪酸参与了蔷薇科苹果亚科植物对山地复合胁迫的适应。

Polyunsaturated and Very-Long-Chain Fatty Acids Are Involved in the Adaptation of Maloideae (Rosaceae) to Combined Stress in the Mountains.

机构信息

K. A. Timiryazev Institute of Plant Physiology RAS, IPP RAS, 35, Botanicheskaya St., Moscow, 127276, Russia.

Russian State Agrarian University - Moscow Timiryazev Agricultural Academy, 49, Timiryazevskaya St., Moscow, 127550, Russia.

出版信息

Chem Biodivers. 2020 Jan;17(1):e1900588. doi: 10.1002/cbdv.201900588. Epub 2020 Jan 9.

Abstract

One of the mechanisms of plant adaptation to combined stress under conditions of altitudinal zonation is changing the lipid fatty acid (FA) composition. The main changes in the FA composition occurred in the outer cell layers of the pericarp, but not in the parenchyma. Adaptation was found to be species-specific. In Cydonia oblonga Mill. and Malus domestica Borkh., the ratio of polyunsaturated 18:2 and 18:3 lipid FAs changed with increasing height, while a constitutive level of the unsaturation index (UI) and low contents of very-long-chain fatty acids (VLCFAs) were maintained. Mespilus germanica L. was characterized by a higher level of VLCFAs due to the high content of 20:0. The sum of VLCFAs in medlar increased by up to 16 % with changing altitude, which was accompanied by the changes in the ultrastructure of chloroplasts and a noticeable decrease in the UI. We attribute the differences in the adaptive strategies in C. oblonga, M. domestica and M. germanica to specific structural features of the pericarp peel. Despite different adaptation mechanisms, the studied species can grow equally successfully at the altitudes from 300 to 1200 m.

摘要

植物适应海拔分带条件下复合胁迫的机制之一是改变脂类脂肪酸(FA)的组成。FA 组成的主要变化发生在外果皮的细胞层,但不在果肉中。适应是种特异性的。在钝叶榅桲(Cydonia oblonga Mill.)和苹果(Malus domestica Borkh.)中,随着海拔的升高,多不饱和 18:2 和 18:3 脂类 FA 的比例发生变化,而不饱和指数(UI)的组成水平和极长链脂肪酸(VLCFA)的含量保持不变。欧李(Mespilus germanica L.)的特点是由于 20:0 的含量高,VLCFA 的含量更高。枸杞中 VLCFA 的总和随海拔的变化增加了高达 16%,这伴随着叶绿体超微结构的变化和 UI 的显著下降。我们将钝叶榅桲、苹果和欧李在适应策略上的差异归因于外果皮的特定结构特征。尽管适应机制不同,但研究的物种可以在 300 至 1200 米的海拔高度同样成功地生长。

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