International cooperation research on high-temperature hybrid rice started

The Agricultural College of the Yangtze University of China recently signed an agreement with the Department of Applied Life Sciences of the University of Tokyo, Japan, to formally initiate a Sino-Japanese international cooperation study called the “High-Temperature Hybrid Rice Research in Jianghan Plain, Hubei Province, China”.

According to Dr. Tian Xiaohai, head of the Chinese Expert Group of the project and the Agricultural College of Yangtze University, the hybrid rice is not only a species of grain production in China, but also a “benchmark” for ensuring food security. The Yangtze River Valley is one of the main areas for hybrid rice cultivation and is known as the “granary” in China. However, in recent years, the high temperature hazards of large-scale mid-season hybrid rice during flowering have occurred in the region, which seriously threatens rice production in the region. With food security. Experts predict that with the warming of the global climate and the acceleration of urbanization in China, temperatures in the Jianghan Plain will increase, and the harm of high temperatures to rice will intensify. Therefore, the mechanism of high-temperature sterility of hybrid mid-season rice in Jianghan Plain, the breeding of high-temperature resistant cultivars, and the development of cultivation techniques for reducing the damage caused by high temperature have become frontier topics that scientists are very concerned about.

The study will set up an experimental site in Jianghan Plain in China. Through the environmental control test, the actual weather conditions in the field during the flowering period of high temperature in rice, the morphological, physiological differences, and genetic laws of different resistant varieties on the high temperature response will be studied. Resistant germplasm resources, breed resistant varieties, and seek cultivation methods that are effective against heat hazards. Researchers believe that overcoming the high temperature hazards of hybrid rice will provide important technical support for grain production in Jianghan Plain.

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