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Genetic control of morphometric diversity in the maize shoot apical meristem

机译:玉米茎尖分生组织形态计量多样性的遗传控制

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摘要

The maize shoot apical meristem (SAM) comprises a small pool of stem cells that generate all above-ground organs. Although mutational studies have identified genetic networks regulating SAM function, little is known about SAM morphological variation in natural populations. Here we report the use of high-throughput image processing to capture rich SAM size variation within a diverse maize inbred panel. We demonstrate correlations between seedling SAM size and agronomically important adult traits such as flowering time, stem size and leaf node number. Combining SAM phenotypes with 1.2 million single nucleotide polymorphisms (SNPs) via genome-wide association study reveals unexpected SAM morphology candidate genes. Analyses of candidate genes implicated in hormone transport, cell division and cell size confirm correlations between SAM morphology and trait-associated SNP alleles. Our data illustrate that the microscopic seedling SAM is predictive of adult phenotypes and that SAM morphometric variation is associated with genes not previously predicted to regulate SAM size.
机译:玉米茎尖分生组织(SAM)包含一小组干细胞,可产生所有地上器官。尽管突变研究已经确定了调节SAM功能的遗传网络,但对自然种群中SAM形态变化的了解却很少。在这里,我们报告了使用高通量图像处理来捕获不同玉米近交系中丰富的SAM大小变化的情况。我们证明了幼苗SAM大小与农艺上重要的成年性状(如开花时间,茎大小和叶节数)之间的相关性。通过全基因组关联研究将SAM表型与120万个单核苷酸多态性(SNP)结合起来,揭示了意想不到的SAM形态候选基因。与激素转运,细胞分裂和细胞大小有关的候选基因的分析证实了SAM形态与性状相关的SNP等位基因之间的相关性。我们的数据表明,微观幼苗SAM可以预测成年表型,并且SAM形态变化与以前未预测过调节SAM大小的基因有关。

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