首页|叶片温度检测技术与植物高温胁迫响应机制研究进展

叶片温度检测技术与植物高温胁迫响应机制研究进展

扫码查看
在当前全球变暖的背景下,高温引起的温度胁迫是许多地区农业的主要问题.高温导致植物生理生化异常,从而影响生长发育,导致作物产量下降.因此全面了解温度胁迫下植物生理响应机制,尤其是植物细胞各种分子防御机制的激活,对耐热植物的改良和开发具有极为重要的意义.准确的叶片温度检测将为了解植物高温响应机制,并为作物耐热性遗传改良提供重要支持.本文首先对近年来植物叶片温度检测方法的发展进行了简单汇总,并综述了近年来高温胁迫下植物的生理生化变化和植物耐热性的分子机制研究进展.
Advances in Leaf Temperature Detection Technology and Plant High Temperature Stress Response Mechanism
Under the background of global warming,high-temperature stress is the main problem for agriculture in many regions.High temperature causes physiological and biochemical abnormalities in plants,thus affecting growth and development,leading to decreased crop yield.Therefore,a comprehensive understanding of the response mechanism of plants to high temperatures,especial-ly the activation of various molecular defence mechanisms in plant cells,is of great significance for the improvement and develop-ment of heat-resistant plants.Accurate leaf temperature detection will provide important support for the investigation of heat toler-ance mechanisms in plants and the rapid development of plant heat resistance genetic improvement.This review briefly summarises the development of leaf temperature detection methods in recent years.The advances in physiological and biochemical changes of plants under high-temperature stress and the molecular mechanisms of plant heat resistance in recent years are also summarized.

high temperatureplantsheat resistanceleaf temperature detection technology

张犇、郭悦、武钰馨、周胜君

展开 >

山西大学 生命科学学院,山西 太原 030006

高温 植物 耐热性 叶片温度检测技术

国家自然科学基金山西省筹资金资助回国留学人员科研项目

320002102021-015

2024

山西大学学报(自然科学版)
山西大学

山西大学学报(自然科学版)

CSTPCD北大核心
影响因子:0.287
ISSN:0253-2395
年,卷(期):2024.47(3)
  • 25