Liu Jipeng, Wei Liang, Feng Shengjun
The Key Laboratory of Quality and Safety Control for Subtropical Fruit and Vege-table, Ministry of Agriculture and Rural Affairs, College of Horticultural Science, Zhejiang A&F University, Hangzhou 311300, Zhejiang, China.
The Key Laboratory of Quality and Safety Control for Subtropical Fruit and Vege-table, Ministry of Agriculture and Rural Affairs, College of Horticultural Science, Zhejiang A&F University, Hangzhou 311300, Zhejiang, China.
Gene. 2023 Aug 15;877:147537. doi: 10.1016/j.gene.2023.147537. Epub 2023 Jun 8.
Vegetable crops play a crucial role in agricultural production, providing essential vitamins and minerals necessary for a healthy diet. Recently, there has been growing interest in cultivating vegetable varieties with outstanding agricultural and economic traits. However, vegetable production is often exposed to various abiotic stresses like soil drought, temperature fluctuations, and heavy metal stress, which can negatively impact yield and quality. While previous research has investigated the physiological responses of vegetable crops to such stressors, less attention has been given to genetic networks. Plants respond to environmental stress mainly by adapting first and then reacting, thereby enhancing their resistance to stress. Typically, different abiotic stresses trigger epigenetic changes, which can regulate non-coding RNAs. Therefore, studying the epigenetic mechanisms of vegetable crop responses to abiotic stress can provide insights into the molecular response mechanisms of plants under stress. This knowledge has practical applications in breeding vegetable crops for resistance. This article summarizes the primary research findings on the regulation of non-coding RNAs and their expression levels in vegetable crops exposed to abiotic stresses to guide molecular breeding approaches for vegetable crops.
蔬菜作物在农业生产中发挥着关键作用,提供健康饮食所需的必需维生素和矿物质。最近,人们对培育具有优异农业和经济性状的蔬菜品种越来越感兴趣。然而,蔬菜生产常常面临各种非生物胁迫,如土壤干旱、温度波动和重金属胁迫,这些胁迫会对产量和品质产生负面影响。虽然先前的研究已经调查了蔬菜作物对这些胁迫源的生理反应,但对基因网络的关注较少。植物对环境胁迫的反应主要是先适应然后做出反应,从而增强其抗逆性。通常,不同的非生物胁迫会引发表观遗传变化,进而调控非编码RNA。因此,研究蔬菜作物对非生物胁迫的表观遗传机制可以深入了解植物在胁迫下的分子反应机制。这一知识在培育抗逆蔬菜作物方面具有实际应用价值。本文总结了关于非编码RNA调控及其在遭受非生物胁迫的蔬菜作物中的表达水平的主要研究结果,以指导蔬菜作物的分子育种方法。