植物组织中 C 脂肪酸的合成。
Synthesis of C Fatty Acids in Plant Tissues.
机构信息
Timiryazev Institute of Plant Physiology, Russian Academy of Sciences, Botanicheskaya Street 35, 127276 Moscow, Russia.
出版信息
Int J Mol Sci. 2022 Apr 25;23(9):4731. doi: 10.3390/ijms23094731.
Very-long-chain fatty acids (VLCFA) are involved in a number of important plant physiological functions. Disorders in the expression of genes involved in the synthesis of VLCFA lead to a number of phenotypic consequences, ranging from growth retardation to the death of embryos. The elongation of VLCFA in the endoplasmic reticulum (ER) is carried out by multiple elongase complexes with different substrate specificities and adapted to the synthesis of a number of products required for a number of metabolic pathways. The information about the enzymes involved in the synthesis of VLCFA with more than 26 atoms of Carbon is rather poor. Recently, genes encoding enzymes involved in the synthesis of both regular-length fatty acids and VLCFA have been discovered and investigated. Polyunsaturated VLCFA in plants are formed mainly by 20:1 elongation into new monounsaturated acids, which are then imported into chloroplasts, where they are further desaturated. The formation of saturated VLCFA and their further transformation into a number of aliphatic compounds included in cuticular waxes and suberin require the coordinated activity of a large number of different enzymes.
非常长链脂肪酸 (VLCFA) 参与了许多重要的植物生理功能。参与 VLCFA 合成的基因表达失调会导致多种表型后果,从生长迟缓到胚胎死亡不等。内质网 (ER) 中 VLCFA 的延伸是由多个具有不同底物特异性的延长酶复合物完成的,这些复合物适应于合成多种代谢途径所需的产物。关于具有 26 个以上碳原子的 VLCFA 合成酶的信息相当匮乏。最近,已发现并研究了参与合成普通长度脂肪酸和 VLCFA 的酶的基因。植物中的多不饱和 VLCFA 主要通过 20:1 的延伸形成新的单不饱和酸,然后这些酸被导入叶绿体,在那里进一步去饱和。饱和 VLCFA 的形成及其进一步转化为角质层蜡和木质素中包含的许多不同的脂肪族化合物需要大量不同酶的协调活性。
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