首页> 中文期刊> 《农业科学学报:英文版》 >Erect panicle super rice varieties enhance yield by harvest index advantages in high nitrogen and density conditions

Erect panicle super rice varieties enhance yield by harvest index advantages in high nitrogen and density conditions

         

摘要

cqvip:The erect panicle(Ep) type is an important characteristic for japonica super rice in Northeast China and plays a significant role in enhancing yield. The Ep type is considered to be a genetic ideotype resource to the japonica super rice group by virtue of its agronomic advantages such as grain number per panicle and biomass. This study addresses the effects of nitrogen and planting density conditions on yielding performance regarding panicle type(PT) using the recombinant inbred line(RIL) population derived from the cross between an Ep variety Liaogeng 5 and non-Ep variety Wanlun 422. The genetics underlying the Ep type proved to be robust not only for panicle-type optimization but also plant height, panicle length, flag leaf length and seed density. We also found that regardless of nitrogen and density, correlation between harvest index(HI) and plant height was not significant in Ep type whatever the nitrogen and density. The application of Ep type provides a potential strategy for yield improvement by increasing biomass through HI maintainable in rice.

著录项

  • 来源
    《农业科学学报:英文版》 |2017年第7期|P.1467-1473|共7页
  • 作者单位

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

    [1]Rice Research Institute;

    Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding;

    Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding;

    Ministry of Education;

    Shenyang 110866;

    P.R. China [2]Liaoning Academy of Agricultural Sciences;

    Shenyang 110161;

    P.R. China [3]Laboratory of Plant Breeding;

    Graduate School of Agriculture;

    Kyoto University;

    Kyoto 606-8502;

    Japan;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 稻;
  • 关键词

    直立穗型 超级稻 高氮 增产效应 收获指数 品种 生物遗传资源 种子密度;

    机译:直立穗型 超级稻 高氮 增产效应 收获指数 品种 生物遗传资源 种子密度;
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