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Mapping QTLs of root morphological traits at different growth stages in rice

机译:水稻不同生育时期根系形态性状的QTL定位

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摘要

Roots are a vital organ for absorbing soil moisture and nutrients and influence drought resistance. The identification of quantitative trait loci (QTLs) with molecular markers may allow the estimation of parameters of genetic architecture and improve root traits by molecular marker-assisted selection (MAS). A mapping population of 120 recombinant inbred lines (RILs) derived from a cross between japonica upland rice ‘IRAT109’ and paddy rice ‘Yuefu’ was used for mapping QTLs of developmental root traits. All plant material was grown in PVC-pipe. Basal root thickness (BRT), root number (RN), maximum root length (MRL), root fresh weight (RFW), root dry weight (RDW) and root volume (RV) were phenotyped at the seedling (I), tillering (II), heading (III), grain filling (IV) and mature (V) stages, respectively. Phenotypic correlations showed that BRT was positively correlated to MRL at the majority of stages, but not correlated with RN. MRL was not correlated to RN except at the seedling stage. BRT, MRL and RN were positively correlated to RFW, RDW and RV at all growth stages. QTL analysis was performed using QTLMapper 1.6 to partition the genetic components into additive-effect QTLs, epistatic QTLs and QTL-by-year interactions (Q × E) effect. The results indicated that the additive effects played a major role for BRT, RN and MRL, while for RFW, RDW and RV the epistatic effects showed an important action and Q × E effect also played important roles in controlling root traits. A total of 84 additive-effect QTLs and 86 pairs of epistatic QTLs were detected for the six root traits at five stages. Only 12 additive QTLs were expressed in at least two stages. This indicated that the majority of QTLs were developmental stage specific. Two main effect QTLs, brt9a and brt9b, were detected at the heading stage and explained 19% and 10% of the total phenotypic variation in BRT without any influence from the environment. These QTLs can be used in breeding programs for improving root traits.
机译:根是吸收土壤水分和养分并影响抗旱性的重要器官。用分子标记物鉴定数量性状基因座(QTL)可以估计遗传结构的参数并通过分子标记物辅助选择(MAS)改善根性状。绘制了120个重组近交系(RIL)的作图群体,这些自交系来自粳稻陆稻“ IRAT109”和水稻稻“月府”之间的杂交,用于绘制发育性状的QTL。所有植物材料都在PVC管中生长。在幼苗(I)上对表根的表型,根数(RN),最大根长(MRL),根鲜重(RFW),根干重(RDW)和根体积(RV)进行表型分析,分till( II),抽穗期(III),籽粒充实(IV)和成熟(V)阶段。表型相关性表明,在大多数阶段,BRT与MRL正相关,而与RN不相关。除了在苗期,MRL与RN无关。在所有生长期,BRT,MRL和RN与RFW,RDW和RV呈正相关。使用QTLMapper 1.6进行QTL分析,将遗传成分分为加性效应QTL,上位QTL和逐年QTL交互作用(Q×E)。结果表明,加性效应对BRT,RN和MRL起主要作用,而对RFW,RDW和RV的上位性效应起重要作用,而Q×E效应也对根系性状的控制起重要作用。在五个阶段共检测到六个根性状的84个加性效应QTL和86对上位性QTL。在至少两个阶段中仅表达了12个加性QTL。这表明大多数QTL是特定于发育阶段的。在抽穗期检测到两个主要的效应QTL,即brt9a和brt9b,它们解释了BRT总表型变异的19%和10%,而不受环境的影响。这些QTL可用于育种计划中以改善根系性状。

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