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Genetic Analysis of Grain Filling Rate Using Conditional QTL Mapping in Maize

机译:基于条件QTL定位的玉米籽粒灌浆率遗传分析

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摘要

The grain filling rate (GFR) is an important dynamic trait that determines the final grain yield and is controlled by a network of genes and environment factors. To determine the genetic basis of the GFR, a conditional quantitative trait locus (QTL) analysis method was conducted using time-related phenotypic values of the GFR collected from a set of 243 immortalized F2 (IF2) population, which were evaluated at two locations over 2 years. The GFR gradually rose in the 0–15 days after pollination (DAP) and 16–22 DAP, reaching a maximum at 23–29 DAP, and then gradually decreasing. The variation of kernel weight (KW) was mainly decided by the GFR, and not by the grain filling duration (GFD). Thirty-three different unconditional QTLs were identified for the GFR at the six sampling stages over 2 years. Among them, QTLs qGFR7b, qGFR9 and qGFR6d were identified at the same stages at two locations over 2 years. In addition, 14 conditional QTLs for GFR were detected at five stages. The conditional QTL qGFR7c was identified at stage V|IV (37–43 DAP) at two locations over 2 years, and qGFR7b was detected at the sixth stage (44–50 DAP) in all four environments, except at Anyang location in 2009. QTLs qQTL7b and qQTL6f were identified by unconditional and conditional QTL mapping at the same stages, and might represent major QTLs for regulating the GFR in maize in the IF2 population. Moreover, most of the QTLs identified were co-located with QTLs from previous studies that were associated with GFR, enzyme activities of starch synthesis, soluble carbohydrates, and grain filling related genes. These results indicated that the GFR is regulated by many genes, which are specifically expressed at different grain filling stages, and the specific expression of the genes between 16–35 DAP might be very important for deciding the final kernel weight.
机译:籽粒充实率(GFR)是决定谷物最终产量的重要动态特征,受基因和环境因素网络控制。为了确定GFR的遗传基础,采用了条件定量性状基因座(QTL)分析方法,该方法使用了从243个永生F2(IF2)种群中收集的GFR的时间相关表型值,并在两个地点进行了评估。 2年。 GFR在授粉后的0-15天(DAP)和16-22 DAP逐渐升高,在23-29 DAP达到最大值,然后逐渐降低。籽粒重量(KW)的变化主要由GFR决定,而不由籽粒灌浆持续时间(GFD)决定。在2年的六个采样阶段中,为GFR确定了33个不同的无条件QTL。其中,QTL qGFR7b,qGFR9和qGFR6d在2年中的两个位置处于同一阶段。此外,在五个阶段检测到14个GFR条件QTL。在过去的2年中,在两个位置V | IV(37–43 DAP)阶段中发现了条件性QTL qGFR7c,在所有四个环境中,除了2009年安阳地区,在所有阶段的第六阶段(44–50 DAP)中都发现了qGFR7b。 QTL qQTL7b和qQTL6f在同一阶段通过无条件和有条件的QTL定位进行鉴定,可能代表了调节IF2群体玉米GFR的主要QTL。此外,大多数鉴定出的QTL与先前研究中的QTL位于同一位置,这些QTL与GFR,淀粉合成的酶活性,可溶性碳水化合物和谷物填充相关基因相关。这些结果表明,GFR受许多基因调控,这些基因在不同的籽粒灌浆阶段特异性表达,而16-35 DAP之间基因的特异性表达对于确定最终籽粒重量可能非常重要。

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