Muthuramalingam Pandiyan, Shin Hyunsuk, Adarshan Sivakumar, Jeyasri Rajendran, Priya Arumugam, Chen Jen-Tsung, Ramesh Manikandan
Department of Horticultural Science, Gyeongsang National University, Jinju 52725, Korea.
Department of Biotechnology, Sri Shakthi Institute of Engineering and Technology, Coimbatore 641062, Tamil Nadu, India.
Plants (Basel). 2022 Mar 18;11(6):812. doi: 10.3390/plants11060812.
In nature or field conditions, plants are frequently exposed to diverse environmental stressors. Among abiotic stresses, the low temperature of freezing conditions is a critical factor that influences plants, including horticultural crops, decreasing their growth, development, and eventually quality and productivity. Fortunately, plants have developed a mechanism to improve the tolerance to freezing during exposure to a range of low temperatures. In this present review, current findings on freezing stress physiology and genetics in peach ( were refined with an emphasis on adaptive mechanisms for cold acclimation, deacclimation, and reacclimation. In addition, advancements using multi-omics and genetic engineering approaches unravel the molecular physiological mechanisms, including hormonal regulations and their general perceptions of freezing tolerance in peach were comprehensively described. This review might pave the way for future research to the horticulturalists and research scientists to overcome the challenges of freezing temperature and improvement of crop management in these conditions.
在自然或田间条件下,植物经常会受到各种环境压力因素的影响。在非生物胁迫中,冰冻条件下的低温是影响植物(包括园艺作物)的一个关键因素,会降低它们的生长、发育,最终影响品质和生产力。幸运的是,植物已经形成了一种机制,在暴露于一系列低温期间提高对冰冻的耐受性。在本综述中,对桃的冰冻胁迫生理学和遗传学的当前研究结果进行了提炼,重点关注冷驯化、去驯化和再驯化的适应机制。此外,还全面描述了利用多组学和基因工程方法取得的进展,这些方法揭示了分子生理机制,包括激素调节及其对桃冰冻耐受性的一般认知。本综述可能为园艺学家和研究科学家未来的研究铺平道路,以克服冰冻温度带来的挑战,并改善这些条件下的作物管理。