Mapping QTL for Biomass Yield and Its Components in Rice (Oryza sativa L.)

LIU Gui-Fu , YANG Jian , ZHU Jun
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引用次数: 23

Abstract

Addicive effects, additive by additive epistatic effects, and their environmental interactions of QTLs are important genetic components of quantitative traits. Genetic architecture underlying rice biomass yield and its two component traits (straw yield and grain yield) were analyzed for a population of 125 DH lines from an inter-subspecific cross of IR64/Azucena. The mixed-model based composite interval mapping approach (MCIM) was used to detect QTLs, There were 12 QTLs detected with additive main effects, 27 QTLs involved in digenic interaction with aa and/or aae effects, and 18 QTLs affected by environments with ae and/or aae effects. It was revealed that epistatic effects and QE interaction effects existed on biomass yield and its component traits in rice. In addition, the genetic basis of relationships among these traits were investigated. Four QTLs and one pair of epistatic QTLs were detected to be responsible for the positive correlation between biomass yield and straw yield. Three QTLs might be responsible for the negative correlation between straw yield and grain yield. This result could partially explain the genetic basis of correlation among the three traits, and provide useful information for genetic improvement of these traits by marker-assisted selection.

水稻生物量产量及其组成成分QTL定位
qtl的加性效应、加性上位效应及其与环境的相互作用是数量性状的重要遗传组成部分。以IR64/Azucena亚种间杂交的125个DH系群体为材料,分析了水稻生物量产量及其2个组成性状(秸秆产量和籽粒产量)的遗传结构。采用基于混合模型的复合区间作图方法(MCIM)检测qtl,检测到12个qtl与加性主效应有关,27个qtl与aa和/或aae效应有关,18个qtl受ae和/或aae效应的环境影响。结果表明,上位效应和QE互作效应对水稻生物量产量及其组成性状有显著影响。此外,还探讨了这些性状间关系的遗传基础。检测到4个qtl和1对上位qtl与生物量产量和秸秆产量呈正相关。3个qtl可能是造成秸秆产量与籽粒产量负相关的主要原因。这一结果可以部分解释3个性状间相关关系的遗传基础,为利用标记辅助选择对3个性状进行遗传改良提供有用的信息。
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