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作 者:李俊峰 杨建昌 LI Junfeng;YANG Jianchang(Jiangsu Key Laboratory of Crop Genetics and Physiology/Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University,Yangzhou 225009, China)
机构地区:[1]扬州大学江苏省作物遗传生理国家重点实验室培育点/粮食作物现代产业技术协同创新中心,江苏扬州225009
出 处:《中国水稻科学》2017年第3期327-334,共8页Chinese Journal of Rice Science
基 金:国家自然科学基金资助项目(31461143015;31271641;31471438);国家科技支撑计划资助项目(2014AA10A605;2013BAD07B09);江苏高校优势学科建设工程资助项目(PAPD);扬州大学高端人才支持计划资助项目(2015-1)
摘 要:了解水分、氮素及其互作对水稻产量与水、氮利用效率的影响,对协同提高水稻产量与水氮利用效率有重要意义。本文概述了水稻节水灌溉技术、氮肥利用效率与氮肥施用技术、水分与氮素对水稻产量及水氮利用效率的耦合效应、作物-土壤关系及水氮调控机制等方面取得的进展;讨论了存在的问题,这些问题包括:高产水稻作物与土壤的水氮互作效应尚不明确;高产水稻水氮耦合与高效利用的分子机理不清楚;协同提高水稻产量与水氮利用效率的调控途径尚未掌握。针对这些问题,建议今后重点研究:高产水稻作物与土壤的水氮互作效应及其机制;水氮互作调控水稻吸收利用水分和氮素的生理与分子机理;协同提高水稻产量和水氮利用效率的调控途径与关键技术。Understanding the effects of water,nitrogen(N)and their interaction on the yield,water and N use efficiencies of rice would have great significance in synergistically realizing high yield,high water use efficiency(WUE)and high N use efficiency(NUE).This paper reviewed the advances achieved in water-saving irrigation techniques,NUE and N fertilizer application techniques,coupling effect of water and N on grain yield,WUE and NUE in rice,and crop-soil relationship and its mechanism regulated by water and N.The existing problems were discussed,i.e.,very limited work on synergistic interaction between water and N on the crop growth and soil quality;little information on the molecular mechanism that water and nitrogen interact on the efficient absorption and utilization of water and nitrogen in high-yielding rice;and yet to be established the crop-soil integrative management system for simultaneous increases in grain yield,WUE and NUE.Aiming to solve these problems,several important issues meriting further investigation were suggested,that is,the synergistic interaction between water and N on the crop and soil for high yield,high WUE and high NUE and its biological process,the physiological and molecular mechanism in which high-yielding rice absorbs and utilizes water and N efficiently,and crop-soil integrative approaches and key techniques to simultaneously increase grain yield,WUE,and NUE in rice.
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