水稻微核心种质氮素利用率相关性状的鉴定评价及其相关分析
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Evaluation and Correlation Analysis of the Characters Rated to Nitrogen Use Efficiency for Mini Core Collection of Rice (Oryza sativa L.) in China
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    摘要:

    以180份中国水稻微核心种质为试验材料,在低氮水平下进行了水稻氮素利用率相关性状的鉴定,分析了产量和氮素利用率相关性状的相关关系。结果表明,秸秆含氮率与单株秸秆含氮量变幅分别为0.56~1.85%和0.04~0.61g,籽粒含氮率与单株籽粒含氮量变幅分别为1.28~3.23%和0.02~1.04g,植株含氮量变幅为0.10~1.30g,氮素籽粒产量利用率与氮素生物产量利用率变幅分别为3.85~57.52g/g和17.56~104.02g/g,氮素收获指数变幅为7.05~88.58%。氮素利用率有关性状在品种间存在较大的差异。秸秆含氮率与含氮量、籽粒含氮率与含氮量和植株含氮量在粳稻和籼稻亚种间没有显著差异;氮素生物产量利用率籼稻略大于粳稻,但差异不显著;氮素籽粒产量利用率与氮素收获指数在粳稻和籼稻亚种间存在较明显的差异。氮素籽粒产量利用率、氮素收获指数与结实率、单株籽粒重和单株有效穗数均呈极显著正相关。认为在低氮水平下,结实率、单株籽粒重和单株有效穗数可以作为耐低氮与氮高效水稻种质的筛选指标。

    Abstract:

    The evaluation of nitrogen use efficiency on low-nitrogen level and correlation coefficients among characters related to grain yield and nitrogen use efficiency were conducted by using 180 accessions of core collection of rice (Oryza sativa L.) in China.The results showed that the range of variance of straw nitrogen contain rate (SNR) and straw nitrogen absorption per plant were 0.56-1.85% and 0.04-0.61g, respectively. The range of variance of grain nitrogen contain rate (GNR) and grain nitrogen absorption per plant were 1.28-3.23% and 0.02-1.04g, respectively. The range of variance of nitrogen absorption per plant was 0.10-1.30g. The range of variance of nitrogen grain production efficiency (NGPE) was 3.85-57.52g/g. The range of variance of nitrogen plant biology production efficiency (NPBPE) was 17.56-104.02g/g. The range of variance of nitrogen harvest index (NHI) was 7.05-88.58%. There were obvious different among rice germplasms. There were no obvious different on SNR, straw nitrogen absorption (SNA), GNR, grain nitrogen absorption (GNA) and plant nitrogen absorption (PNA) between Japonica rice and Indica rice. There was no obvious different on NPBPE, even the value of indica rice were a little big than Japonica rice. There were obvious different on NGPE and NHI between Japonica rice and Indica rice. NGPE and NHI were significantly positively associated with seed setting rate, grain weight per plant and effect panicle per plant. Directly to select seed setting rate, grain weight per plant and effect panicle per plant were more effective selected higher resistance to low-nitrogen and higher nitrogen use efficiency under low-nitrogen condition.

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韩龙植.水稻微核心种质氮素利用率相关性状的鉴定评价及其相关分析[J].植物遗传资源学报,2011,12(3):352-361.

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  • 收稿日期:2010-07-12
  • 最后修改日期:2011-01-18
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  • 在线发布日期: 2011-04-19
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