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QTLs and candidate genes for desiccation and abscisic acid content in maize kernels

机译:玉米籽粒脱水和脱落酸含量的QTL和候选基因

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Background Kernel moisture at harvest is an important trait since a low value is required to prevent unexpected early germination and ensure seed preservation. It is also well known that early germination occurs in viviparous mutants, which are impaired in abscisic acid (ABA) biosynthesis. To provide some insight into the genetic determinism of kernel desiccation in maize, quantitative trait loci (QTLs) were detected for traits related to kernel moisture and ABA content in both embryo and endosperm during kernel desiccation. In parallel, the expression and mapping of genes involved in kernel desiccation and ABA biosynthesis, were examined to detect candidate genes. Results The use of an intermated recombinant inbred line population allowed for precise QTL mapping. For 29 traits examined in an unreplicated time course trial of days after pollination, a total of 78 QTLs were detected, 43 being related to kernel desiccation, 15 to kernel weight and 20 to ABA content. Multi QTL models explained 35 to 50% of the phenotypic variation for traits related to water status, indicating a large genetic control amenable to breeding. Ten of the 20 loci controlling ABA content colocated with previously detected QTLs controlling water status and ABA content in water stressed leaves. Mapping of candidate genes associated with kernel desiccation and ABA biosynthesis revealed several colocations between genes with putative functions and QTLs. Parallel investigation via RT-PCR experiments showed that the expression patterns of the ABA-responsive Rab17 and Rab28 genes as well as the late embryogenesis abundant Emb5 and aquaporin genes were related to desiccation rate and parental allele effect. Database searches led to the identification and mapping of two zeaxanthin epoxidase ( ZEP ) and five novel 9-cis-epoxycarotenoid dioxygenase ( NCED ) related genes, both gene families being involved in ABA biosynthesis. The expression of these genes appeared independent in the embryo and endosperm and not correlated with ABA content in either tissue. Conclusions A high resolution QTL map for kernel desiccation and ABA content in embryo and endosperm showed several precise colocations between desiccation and ABA traits. Five new members of the maize NCED gene family and another maize ZEP gene were identified and mapped. Among all the identified candidates, aquaporins and members of the Responsive to ABA gene family appeared better candidates than NCEDs and ZEPs .
机译:背景技术收获时的籽粒水分是重要的特征,因为需要低的水分以防止意料之外的早期发芽并确保种子的保存。还众所周知的是,在脱落酸(ABA)生物合成中受损的胎生突变体中发生了早期发芽。为了提供对玉米籽粒干燥的遗传确定性的一些了解,检测了玉米籽粒干燥期间定量性状位点(QTL)的特征,这些特征与籽粒水分和胚乳和胚乳中的ABA含量有关。平行地,检查了涉及籽粒干燥和ABA生物合成的基因的表达和作图以检测候选基因。结果使用确定的重组自交系种群可以进行精确的QTL定位。在授粉后几天的无重复时间过程试验中检查的29个性状中,共检测到78个QTL,其中43个与籽粒干燥有关,15个与籽粒重量相关,20个与ABA含量相关。多重QTL模型解释了与水状况有关的性状的表型变异的35%至50%,这表明适合育种的大型遗传控制。在控制ABA含量的20个基因座中,有十个与先前检测到的控制水分状况和水分胁迫叶片中ABA含量的QTL并置。与核心干燥和ABA生物合成相关的候选基因的图谱揭示了具有推定功能的基因与QTL之间的若干共置。通过RT-PCR实验的平行研究表明,ABA反应的Rab17和Rab28基因的表达模式以及晚期胚胎发生中丰富的Emb5和水通道蛋白基因的表达与干燥速率和亲本等位基因效应有关。数据库搜索导致鉴定和定位了两个玉米黄质环氧酶(ZEP)和五个新颖的9-顺式-环氧类胡萝卜素双加氧酶(NCED)相关基因,这两个基因家族都参与了ABA的生物合成。这些基因的表达在胚胎和胚乳中独立存在,并且与任一组织中的ABA含量均不相关。结论高分辨率QTL图谱显示了胚乳和胚乳中的籽粒脱水和ABA含量,表明脱水和ABA性状之间存在一些精确的共定位。鉴定并定位了玉米NCED基因家族的五个新成员和另一个玉米ZEP基因。在所有确定的候选物中,水通道蛋白和ABA基因家族应答成员似乎比NCED和ZEP更好。

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