Yang Lin, Ma Xu, Guo Yuhan, He Yuman, Yang Yunwen, Wang Wenqiao, Xu Ziyi, Zuo Zhaojiang, Xue Ying, Yang Rui, Han Bing, Sun Jinsheng
Tianjin Key Laboratory of Animal and Plant Resistance, College of Life Sciences, Tianjin Normal University, 300387, Tianjin, China.
Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences, School of Life Sciences, East China Normal University, Shanghai, 200241, China.
Environ Pollut. 2023 Oct 15;335:122305. doi: 10.1016/j.envpol.2023.122305. Epub 2023 Aug 12.
Acetylcholine (ACh), an important neurotransmitter, plays a role in resistance to abiotic stress. However, the role of ACh during cadmium (Cd) resistance in duckweed (Lemna turionifera 5511) remains uncharacterized. In this study, the changes of endogenous ACh in duckweed under Cd stress has been investigated. Also, how exogenous ACh affects duckweed's ability to withstand Cd stress was studied. The ACh sensor transgenic duckweed (ACh 3.0) showed the ACh signal response under Cd stress. And ACh was wrapped and released in vesicles. Cd stress promoted ACh content in duckweed. The gene expression analysis showed an improved fatty acid metabolism and choline transport. Moreover, exogenous ACh addition enhanced Cd tolerance and decreased Cd accumulation in duckweed. ACh supplement reduced the root abscission rate, alleviated leaf etiolation, and improved chlorophyll fluorescence parameters under Cd stress. A modified calcium (Ca) flux and improved Cd absorption were present in conjunction with it. Thus, we speculate that ACh could improve Cd resistance by promoting the uptake and accumulation of Cd, as well as the response of the Ca signaling pathway. Also, plant-derived extracellular vesicles (PDEVs) were extracted during Cd stress. Therefore, these results provide new insights into the response of ACh during Cd stress.
乙酰胆碱(ACh)作为一种重要的神经递质,在植物抗非生物胁迫中发挥作用。然而,ACh在浮萍(Lemna turionifera 5511)耐镉过程中的作用仍不清楚。本研究调查了镉胁迫下浮萍内源性ACh的变化。此外,还研究了外源ACh如何影响浮萍耐受镉胁迫的能力。ACh传感器转基因浮萍(ACh 3.0)在镉胁迫下表现出ACh信号响应。并且ACh被包裹在囊泡中并释放。镉胁迫促进了浮萍中ACh的含量。基因表达分析表明脂肪酸代谢和胆碱转运得到改善。此外,添加外源ACh增强了浮萍对镉的耐受性并降低了镉的积累。在镉胁迫下,补充ACh降低了根脱落率,减轻了叶片黄化,并改善了叶绿素荧光参数。同时伴随着钙(Ca)通量的改变和镉吸收的改善。因此,我们推测ACh可以通过促进镉的吸收和积累以及钙信号通路的响应来提高对镉的抗性。此外,在镉胁迫期间提取了植物源细胞外囊泡(PDEVs)。因此,这些结果为ACh在镉胁迫下的响应提供了新的见解。