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水稻群体成穗率与干物质积累动态关系的模拟研究
引用本文:钟旭华,彭少兵,John E.SHEEHY,刘鸿先.水稻群体成穗率与干物质积累动态关系的模拟研究[J].中国水稻科学,2001,15(2):107-112.
作者姓名:钟旭华  彭少兵  John E.SHEEHY  刘鸿先
作者单位:1. 国际水稻研究所, 菲律宾马尼拉3127信箱;广东省农业科学院水稻研究所,广东广州 510640;
2. 国际水稻研究所, 菲律宾马尼拉3127信箱;
3. 中国科学院华南植物研究所,广东广州 510650
摘    要: 应用两个水稻茎数动态模型(TIL和RGR模型),分析了成穗率与群体干物质积累动态的关系。结果表明:(1)成穗率与最高茎数呈极显著负相关,支持了“降低苗峰是提高成穗率的关键”的结论;(2)最高茎数与穗分化始期干重呈极显著正相关,前期干物质积累过快是苗峰过高的原因之一;(3)成穗率与群体干物质积累动态密切相关。同样的干物质积累量,干物质积累动态不同,其茎数动态相差很大。在抽穗期干物质积累量相近的情况下,穗分化以前干物质积累所占的比例越大,成穗率越低。采用一组独立的实测资料进行分析,也得到了相似的结果。由此可见,优化干物质积累动态是提高成穗率,从而实现高产更高产的基础。

关 键 词:分蘖  成穗率  干物质积累  模拟  水稻
文章编号:1001-7216(2001)02-0107-06
收稿时间:1900-01-01;

Relationship Between Productive Tiller Percentage and Biomass Accumulation in Rice (Oryza sativa L.): A Simulation Approach
ZHONG Xu hua ,PENG Shao bing ,John E. SHEEHY ,LIU Hong xian.Relationship Between Productive Tiller Percentage and Biomass Accumulation in Rice (Oryza sativa L.): A Simulation Approach[J].Chinese Journal of Rice Science,2001,15(2):107-112.
Authors:ZHONG Xu hua    PENG Shao bing  John E SHEEHY  LIU Hong xian
Institution:ZHONG Xu hua 1,2,PENG Shao bing 1,John E. SHEEHY 1,LIU Hong xian 3
Abstract:The relationship between productive tiller percentage (PTP) andbiomass accumulation was studied using a simulation approach. The TIL and RGR models were used in the analyses. Results showed that: (1) PTP was significantly (P<0.01) and negatively correlated with maximum tiller number per unit area (nmax), supporting the conclusion drawn from experiments that reducing nmax is a key to increase PTP; (2) The nmax was positively correlated with biomass at panicle initiation, suggesting that a high crop growth rate before panicle initiation results in high nmax; (3) PTP was affected by the trajectory of biomass accumulation. With a given amount of biomass at flowering, the more the biomass at panicle initiation, the lower the PTP. Analysis of an independent data set measured in the field experiment conducted during 1998 dry season at the International Rice Research Institute gave similar results. It seems that an optimized trajectory of biomass accumulation is essential for a rice population to achieve an optimized tiller production and high PTP and grain yield.
Keywords:tillering  productive tiller percentage  biomass accumulation  simulation  rice
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