Suppr超能文献

抑制SDP1可增加种子油和羟基脂肪酸含量,同时通过三酰甘油重塑维持油脂生物合成。

Suppression of SDP1 Increased Seed Oil and Hydroxy Fatty Acid Content While Maintaining Oil Biosynthesis Through Triacylglycerol Remodeling.

作者信息

Azeez Abdul, Parchuri Prasad, Bates Philip D

机构信息

Institute of Biological Chemistry, Washington State University, Pullman, WA, United States.

出版信息

Front Plant Sci. 2022 Jun 3;13:931310. doi: 10.3389/fpls.2022.931310. eCollection 2022.

Abstract

is a burgeoning oilseed crop that accumulates the hydroxy fatty acid (HFA), lesquerolic acid, and can be a non-toxic alternative crop to castor for production of industrially valuable HFA. Recently, was proposed to utilize a unique seed oil biosynthetic pathway coined "triacylglycerol (TAG) remodeling" that utilizes a TAG lipase to remove common fatty acids from TAG allowing the subsequent incorporation of HFA after initial TAG synthesis, yet the lipase involved is unknown. SUGAR DEPENDENT 1 (SDP1) has been characterized as the dominant TAG lipase involved in TAG turnover during oilseed maturation and germination. Here, we characterized the role of a putative PfeSDP1 in both TAG turnover and TAG remodeling. assays confirmed that PfeSDP1 is a TAG lipase and demonstrated a preference for HFA-containing TAG species. Seed-specific RNAi knockdown of resulted in a 12%-16% increase in seed weight and 14%-19% increase in total seed oil content with no major effect on seedling establishment. The increase in total oil content was primarily due to ~4.7% to ~14.8% increase in TAG molecular species containing two HFA (2HFA-TAG), and when combined with a smaller decrease in 1HFA-TAG content the proportion of total HFA in seed lipids increased 4%-6%. The results are consistent with PfeSDP1 involved in TAG turnover but not TAG remodeling to produce 2HFA-TAG. Interestingly, the concomitant reduction of 1HFA-TAG in PfeSDP1 knockdown lines suggests PfeSDP1 may have a role in reverse TAG remodeling during seed maturation that produces 1HFA-TAG from 2HFA-TAG. Overall, our results provide a novel strategy to enhance the total amount of industrially valuable lesquerolic acid in seeds.

摘要

是一种新兴的油料作物,能积累羟基脂肪酸(HFA)——来苏儿酸,并且可以作为蓖麻的无毒替代作物,用于生产具有工业价值的HFA。最近,有人提出利用一种独特的种子油生物合成途径——“三酰甘油(TAG)重塑”,该途径利用TAG脂肪酶从TAG中去除常见脂肪酸,从而在TAG初始合成后允许随后掺入HFA,但其中涉及的脂肪酶尚不清楚。糖依赖性1(SDP1)已被鉴定为在油料种子成熟和萌发过程中参与TAG周转的主要TAG脂肪酶。在这里,我们表征了假定的PfeSDP1在TAG周转和TAG重塑中的作用。实验证实PfeSDP1是一种TAG脂肪酶,并表明其对含HFA的TAG种类有偏好。种子特异性RNA干扰敲低导致种子重量增加12%-16%,种子总油含量增加14%-19%,对幼苗建立没有重大影响。总油含量的增加主要是由于含有两个HFA的TAG分子种类(2HFA-TAG)增加了约4.7%至约14.8%,并且当与1HFA-TAG含量较小的减少相结合时,种子脂质中总HFA的比例增加了4%-6%。结果表明PfeSDP1参与TAG周转,但不参与产生2HFA-TAG的TAG重塑。有趣的是,PfeSDP1敲低系中1HFA-TAG的同时减少表明PfeSDP在种子成熟过程中可能在反向TAG重塑中起作用,即从2HFA-TAG产生1HFA-TAG。总体而言,我们的结果提供了一种新策略,以提高种子中具有工业价值的来苏儿酸的总量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b66c/9204166/9861d2b3d494/fpls-13-931310-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验