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作 者:于林惠[1,2] 李刚华[1] 徐晶晶[1] 凌启鸿[1] 丁艳锋[1]
机构地区:[1]南京农业大学农业部南方作物生理生态重点开放实验室,江苏南京210095 [2]江苏省农业机械管理局,江苏南京210024
出 处:《中国水稻科学》2012年第4期451-456,共6页Chinese Journal of Rice Science
基 金:农业部948项目(2012-Z23);江苏省农业科技自主创新资金资助项目[CX(11)2011];南京农业大学基本科研业务费专项基金资助项目
摘 要:考查了机插常规粳稻超高产群体产量构成、干物质积累以及氮素积累等群体特征。2008年对江苏武进区邹区(品种为武香粳9号)、漕桥和前黄镇(品种均为武运粳7号)等3个百亩连片超高产示范方,2009年对江苏省如东县(品种为宁粳3号)的百亩连片超高产示范方进行了调查。结果表明,机插稻产量与颖花量的相关达极显著,要达到10.5t/hm2以上的产量,每1m2颖花量需≥45 000;籽粒产量10.5t/hm2以上高产机插水稻的花后干物质积累占籽粒产量的70%~80%;高产机插稻氮素积累的优势在有效分蘖临界叶龄期前和抽穗后两个阶段。足够的颖花量是机插粳稻高产群体的基本特征;保证后期氮素供应、发挥后期干物质积累优势、促进大穗的形成是提高机插水稻产量的主要技术途径。The population characteristics,such as yield and its components,accumulation of dry-matter and nitrogen of machine-transplanted japonica rice was investigated in three high-yield demonstration fields(over 6.7 hm2 per field) at Zouqu,Caoqiao,and Qianhuang Towns,Wujin County,Jiangsu Province in 2008,and one high-yield demonstration field at Rudong County,Jiangsu Province in 2009.Results showed that yield was closely related with spikelet number per panicle and spikelet number per m2.The spikelet number per m2 should be greater than 45 000 as grain yield was above 10.5 t/hm2.For high-yield mechanically transplanted rice(above 10.5 t/hm2),the dry matter accumulation from heading stage to maturity paid a contribution rate about 70%~80% to the grain dry weight.Nitrogen accumulation mainly occurred at the two growing stages,before critical tiller leaf age,and after heading.It indicated that higher spikelet number per m2 was the main basic characteristic of high yielding,mechanically transplanted japonica rice.And sufficient N supply,improved dry matter accumulation after heading,as well as spikelet number per panicle help increase grain yield of machine-transplanted japonica rice.
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