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Identification of QTL for growth- and grain yield-related traits in rice across nine locations of Asia

机译:确定亚洲9个地区水稻生长和籽粒产量相关性状的QTL

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摘要

Rice double-haploid (DH) lines of an indica and japonica cross were grown at nine different locations across four countries in Asia. Genotype-by-environment (G × E) interaction analysis for 11 growth- and grain yield-related traits in nine locations was estimated by AMMI analysis. Maximum G × E interaction was exhibited for fertility percentage number of spikelets and grain yield. Plant height was least affected by environment, and the AMMI model explained a total of 76.2% of the interaction effect. Mean environment was computed by averaging the nine environments and subsequently analyzed with other environments to map quantitative trait loci (QTL). QTL controlling the 11 traits were detected by interval analysis using mapmaker/qtl. A threshold LOD of ≥3.20 was used to identify significant QTL. A total of 126 QTL were identified for the 11 traits across nine locations. Thirty-four QTL common in more than one environment were identified on ten chromosomes. A maximum of 44 QTL were detected for panicle length, and the maximum number of common QTL were detected for days to heading detected. A single locus for plant height (RZ730-RG810) had QTL common in all ten environments, confirming AMMI results that QTL for plant height were affected the least by environment, indicating the stability of the trait. Two QTL were detected for grain yield and 19 for thousand-grain weight in all DH lines. The number of QTL per trait per location ranged from zero to four. Clustering of the QTL for different traits at the same marker intervals was observed for plant height, panicle number, panicle length and spikelet number suggesting that pleiotropism and or tight linkage of different traits could be the possible reason for the congruence of several QTL. The many QTL detected by the same marker interval across environments indicate that QTL for most traits are stable and not essentially affected by environmental factors.
机译:four稻和粳稻杂交的水稻双单倍体(DH)品系在亚洲四个国家的九个不同地点种植。通过AMMI分析,估算了9个地区11种与生长和谷物产量相关的性状的环境(G×E)基因型相互作用分析。最大的G×E相互作用表现为小穗的受精百分比数和籽粒产量。株高受环境影响最小,AMMI模型解释了总共76.2%的相互作用。平均环境是通过对9个环境进行平均计算得出的,然后与其他环境进行分析以绘制定量特征位点(QTL)。通过使用mapmaker / qtl进行间隔分析,检测出控制11个性状的QTL。 ≥3.20的LOD阈值用于识别显着的QTL。在9个地点的11个性状中共鉴定了126个QTL。在十个染色体上鉴定出在一种以上环境中共有的三十四个QTL。穗长最多检测到44个QTL,并且在检测到抽穗前的几天中检测到最大数量的常见QTL。一个单一株高位点(RZ730-RG810)在所有十个环境中均具有QTL,这证实了AMMI结果表明株高QTL受环境影响最小,表明该性状的稳定性。在所有DH系中,检测到两个QTL的籽粒产量,而19个的千粒重。每个位置每个特征的QTL数量在零到四个之间。在相同的标记间隔观察到不同性状的QTL的聚类存在于植物高度,穗数,穗长和小穗数上,这表明多效性或不同性状的紧密连锁可能是多个QTL一致的可能原因。在整个环境中以相同的标记间隔检测到的许多QTL表明,大多数性状的QTL是稳定的,基本上不受环境因素的影响。

著录项

  • 来源
    《Theoretical and Applied Genetics》 |2003年第4期|679-690|共12页
  • 作者单位

    MAS Lab Department of Genetics and Plant Breeding University of Agricultural Sciences Bangalore-560065 India;

    International Rice Research Institute MCPO 3127 1271 Makati city Philippines;

    International Rice Research Institute MCPO 3127 1271 Makati city Philippines;

    MAS Lab Department of Genetics and Plant Breeding University of Agricultural Sciences Bangalore-560065 India;

    MAS Lab Department of Genetics and Plant Breeding University of Agricultural Sciences Bangalore-560065 India;

    Biotechnology department China National Rice Research Institute Hangzhou 310006 China;

    Biotechnology department China National Rice Research Institute Hangzhou 310006 China;

    South China Agricultural University Guangzhou 510 642 China;

    South China Agricultural University Guangzhou 510 642 China;

    Department of Genetics and Biotechnology Punjab Agricultural University Ludhiana 141 004 India;

    Rice Research Institute Pistanulok Thailand;

    Division of Genetics Indian Agricultural Research Institute New Delhi 110 012 India;

    MAS Lab Department of Genetics and Plant Breeding University of Agricultural Sciences Bangalore-560065 India;

    MAS Lab Department of Genetics and Plant Breeding University of Agricultural Sciences Bangalore-560065 India;

    International Rice Research Institute MCPO 3127 1271 Makati city Philippines;

    International Rice Research Institute MCPO 3127 1271 Makati city Philippines;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Common QTL; Locations; G × E interaction; Molecular markers; Rice; Yield traits;

    机译:常见QTL;位置;G×E相互作用;分子标记;水稻;产量性状;

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