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中国机收再生稻研究现状与展望OA北大核心CSTPCDMEDLINE

Research status and prospect of ratoon rice in China under mechanically harvested condition

中文摘要英文摘要

随着水稻育种方法的不断改善和栽培技术的持续创新,再生稻的种植面积及比重在中国水稻生产系统中逐渐增大,已发展成为生产成效显著的水稻种植模式之一.本文结合作者多年来的研究与实践,从作物生理生态学的视角,紧紧围绕再生稻适宜品种筛选及类型划分、机收再生稻的适宜留桩高度与水肥调控、再生稻干物质生产与分配特性及其与产量形成的关系、再生稻根系和再生活力及其与根际微生态特性的关系4个方面,综述了再生稻高产形成及其生理生态机制的研究现状与展望.在推广低留桩再生稻栽培技术时,应重视根际系统的合理调控,促进根际营养供给和腋芽适时萌发及分蘖再生协调发展,实现高再生系数、高再生穗数、高收获指数、高产优质、低碳安全可持续的"四高一低"目标,促进再生稻产业可持续发展.

The proportion and area of ratoon rice planting in China have been substantially increased,due to con-tinuous improvement of rice breeding methods and consecutive innovation of cultivation technology,which has developed into one of rice planting modes with significant production efficiency.Combining the experience in re-search and practice,from the perspective of crop physiology and ecology,we reviewed the current situation and prospects of high-yielding formation and physiological mechanisms of ratoon rice.We focused on four key aspects:screening and breeding of ratoon rice cultivars and the classification;suitable stubble height for mechanically har-vested ratoon rice,as well as water and fertilizer management;dry matter production and allocation in ratoon rice and the relationship with yield formation;regenerative activity and vigor of ratoon rice roots and their relationship with rhizosphere micro-ecological characteristics.As for the extending of mechanized low-cut stubbles ratoon rice technique,we should properly regulate the rhizosphere system,coordinate rhizosphere nutrient supply,germination of axillary buds,and tillering regeneration,to achieve the target of"four-high-one-low",that is high regeneration coefficient,high number of regeneration panicle,high harvest index,high yield,high quality,low-carbon and safe,aiming to improve the sustainability of ratoon rice industry.

林文雄;翁佩莹;林文芳;邵彩虹;郭春林;李忠;陈鸿飞;陈婷

福建农林大学农业生态研究所,福州 350002江西农业科学院,土壤肥料与资源环境研究所,南昌 330200安徽农业科学院水稻研究所,合肥 230031

再生稻;机械化;留桩高度;再生力;腋芽萌发;固碳减排

ratoon rice;mechanization;left stubble height;regeneration ability;axillary bud sprout;carbon sequestration and mitigation

《应用生态学报》 2024 (003)

827-836 / 10

本文由国家重点研发计划项目(2016YFD0300508,2017-YFD0301602)和福建省科技计划项目(2018I0002)资助.

10.13287/j.1001-9332.202403.008

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