Jiang Wei, Tong Tao, Chen Xuan, Deng Fenglin, Zeng Fanrong, Pan Rui, Zhang Wenying, Chen Guang, Chen Zhong-Hua
Hubei Collaborative Innovation Center for Grain Industry, College of Agriculture, Yangtze University, Jingzhou, China.
Central Laboratory, Zhejiang Academy of Agricultural Science, Hangzhou, China.
Plant Mol Biol. 2022 Nov;110(4-5):397-412. doi: 10.1007/s11103-021-01216-x. Epub 2021 Nov 30.
We propose that anion channels are essential players for green plants to respond and adapt to the abiotic stresses associated changing climate via reviewing the literature and analyzing the molecular evolution, comparative genetic analysis, and bioinformatics analysis of the key anion channel gene families. Climate change-induced abiotic stresses including heatwave, elevated CO, drought, and flooding, had a major impact on plant growth in the last few decades. This scenario could lead to the exposure of plants to various stresses. Anion channels are confirmed as the key factors in plant stress responses, which exist in the green lineage plants. Numerous studies on anion channels have shed light on their protein structure, ion selectivity and permeability, gating characteristics, and regulatory mechanisms, but a great quantity of questions remain poorly understand. Here, we review function of plant anion channels in cell signaling to improve plant response to environmental stresses, focusing on climate change related abiotic stresses. We investigate the molecular response and evolution of plant slow anion channel, aluminum-activated malate transporter, chloride channel, voltage-dependent anion channel, and mechanosensitive-like anion channel in green plant. Furthermore, comparative genetic and bioinformatic analysis reveal the conservation of these anion channel gene families. We also discuss the tissue and stress specific expression, molecular regulation, and signaling transduction of those anion channels. We propose that anion channels are essential players for green plants to adapt in a diverse environment, calling for more fundamental and practical studies on those anion channels towards sustainable food production and ecosystem health in the future.
通过回顾文献并分析关键阴离子通道基因家族的分子进化、比较遗传分析和生物信息学分析,我们提出阴离子通道是绿色植物响应和适应与气候变化相关的非生物胁迫的重要参与者。在过去几十年中,气候变化引起的非生物胁迫,包括热浪、二氧化碳浓度升高、干旱和洪水,对植物生长产生了重大影响。这种情况可能导致植物暴露于各种胁迫之下。阴离子通道被确认为植物应激反应的关键因素,存在于绿色谱系植物中。关于阴离子通道的大量研究揭示了它们的蛋白质结构、离子选择性和通透性、门控特性以及调节机制,但仍有大量问题尚不清楚。在这里,我们综述了植物阴离子通道在细胞信号传导中的功能,以改善植物对环境胁迫的响应,重点关注与气候变化相关的非生物胁迫。我们研究了绿色植物中植物慢阴离子通道、铝激活苹果酸转运体、氯离子通道、电压依赖性阴离子通道和机械敏感样阴离子通道的分子反应和进化。此外,比较遗传和生物信息学分析揭示了这些阴离子通道基因家族的保守性。我们还讨论了这些阴离子通道的组织和胁迫特异性表达、分子调控和信号转导。我们提出阴离子通道是绿色植物在多样化环境中适应的重要参与者,呼吁未来针对这些阴离子通道开展更多基础和实际研究,以实现可持续粮食生产和生态系统健康。