College of Bioscience and Biotechnology, Shenyang Agricultural University, Shenyang, 110866, China.
Key Laboratory of Protected Horticulture of Ministry of Education, Shenyang Agricultural University, Shenyang, 110866, China.
Plant Cell Rep. 2024 Jul 16;43(8):196. doi: 10.1007/s00299-024-03282-z.
CsDGAT1A and CsDGAT2D play a positive regulatory role in cucumber's response to low-temperature stress and positively regulate the synthesis of triacylglycerol (TAG). Triacylglycerol (TAG), a highly abundant and significant organic compound in plants, plays crucial roles in plant growth, development, and stress responses. The final acetylation step of TAG synthesis is catalyzed by diacylglycerol acyltransferases (DGATs). However, the involvement of DGATs in cucumber's low-temperature stress response remains unexplored. This study focused on two DGAT genes, CsDGAT1A and CsDGAT2D, investigating their function in enhancing cucumber's low-temperature stress tolerance. Our results revealed that both proteins were the members of the diacylglycerol acyltransferase family and were predominantly localized in the endoplasmic reticulum. Functional analysis demonstrated that transient silencing of CsDGAT1A and CsDGAT2D significantly compromised cucumber's low-temperature stress tolerance, whereas transient overexpression enhanced it. Furthermore, the TAG content quantification indicated that CsDGAT1A and CsDGAT2D promoted TAG accumulation. In conclusion, this study elucidates the lipid metabolism mechanism in cucumber's low-temperature stress response and offers valuable insights for the cultivation of cold-tolerant cucumber plants.
CsDGAT1A 和 CsDGAT2D 在黄瓜响应低温胁迫中发挥正向调控作用,正向调控三酰基甘油(TAG)的合成。三酰基甘油(TAG)是植物中高度丰富且重要的有机化合物,在植物生长、发育和应激反应中发挥关键作用。TAG 合成的最后一步乙酰化由二酰基甘油酰基转移酶 (DGATs) 催化。然而,DGATs 参与黄瓜低温胁迫响应的机制尚不清楚。本研究聚焦于两个 DGAT 基因 CsDGAT1A 和 CsDGAT2D,研究它们在增强黄瓜低温胁迫耐受性中的功能。研究结果表明,这两种蛋白质均为二酰基甘油酰基转移酶家族的成员,主要定位于内质网。功能分析表明,CsDGAT1A 和 CsDGAT2D 的瞬时沉默显著降低了黄瓜的低温胁迫耐受性,而过表达则增强了其耐受性。此外,TAG 含量定量表明 CsDGAT1A 和 CsDGAT2D 促进了 TAG 的积累。综上所述,本研究阐明了黄瓜低温胁迫响应中的脂质代谢机制,为培育耐低温黄瓜植物提供了有价值的见解。