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研究 CsDGAT1 和 CsDGAT2 对脂肪酸组成的影响的功能特征。

Functional Characterization of the Effects of CsDGAT1 and CsDGAT2 on Fatty Acid Composition in .

机构信息

Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration, Jeonju 54875, Republic of Korea.

Department of Life Science, Sogang University, Seoul 04107, Republic of Korea.

出版信息

Int J Mol Sci. 2024 Jun 25;25(13):6944. doi: 10.3390/ijms25136944.

Abstract

Triacylglycerols (TAGs) are the storage oils of plant seeds, and these lipids provide energy for seed germination and valuable oils for human consumption. Three diacylglycerol acyltransferases (DGAT1, DGAT2, and DGAT3) and phospholipid:diacylglycerol acyltransferases participate in the biosynthesis of TAGs. DGAT1 and DGAT2 participate in the biosynthesis of TAGs through the endoplasmic reticulum (ER) pathway. In this study, we functionally characterized CsDGAT1 and CsDGAT2 from camelina (). Green fluorescent protein-fused CsDGAT1 and CsDGAT2 localized to the ER when transiently expressed in leaves. To generate and mutants using the CRISPR/Cas9 system, camelina was transformed with a binary vector carrying and the respective guide RNAs targeting and via the -mediated floral dip method. The EDD1 lines had missense and nonsense mutations in the homoeologs, suggesting that they retained some CsDGAT1 function, and their seeds showed decreased eicosaenoic acid (C20:1) contents and increased C18:3 contents compared to the wild type (WT). The EDD2 lines had a complete knockout of all homoeologs and a slightly decreased C18:3 content compared to the WT. In conclusion, CsDGAT1 and CsDGAT2 have a small influence on the seed oil content and have an acyl preference for C20:1 and C18:3, respectively. This finding can be applied to develop oilseed plants containing high omega-3 fatty acids or high oleic acid.

摘要

三酰基甘油(TAGs)是植物种子的储存油,这些脂质为种子发芽提供能量,并为人类提供有价值的油。三种二酰基甘油酰基转移酶(DGAT1、DGAT2 和 DGAT3)和磷脂:二酰基甘油酰基转移酶参与 TAGs 的生物合成。DGAT1 和 DGAT2 通过内质网(ER)途径参与 TAGs 的生物合成。在这项研究中,我们从荠蓝(Camelina)中对 CsDGAT1 和 CsDGAT2 进行了功能表征。绿色荧光蛋白融合的 CsDGAT1 和 CsDGAT2 在瞬时表达的 叶片中定位于 ER。为了使用 CRISPR/Cas9 系统生成 和 突变体,通过 -介导的花浸法将携带 和针对 和 的各自向导 RNA 的二元载体转化到荠蓝中。EDD1 系在 同系物中具有错义和无义突变,表明它们保留了一些 CsDGAT1 功能,其种子的二十碳烯酸 (C20:1) 含量降低,十八碳三烯酸 (C18:3) 含量增加,与野生型 (WT) 相比。EDD2 系完全敲除了所有 同系物,与 WT 相比,C18:3 含量略有降低。总之,CsDGAT1 和 CsDGAT2 对种子油含量的影响较小,对 C20:1 和 C18:3 分别具有酰基偏好。这一发现可应用于开发富含 omega-3 脂肪酸或高油酸的油料作物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1816/11240937/9c4e54f41aa0/ijms-25-06944-g001.jpg

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