Department of Botany, University of Wisconsin, Madison, Wisconsin 53706.
Genetics. 2013 Nov;195(3):1077-86. doi: 10.1534/genetics.113.153346. Epub 2013 Aug 26.
Automated image acquisition, a custom analysis algorithm, and a distributed computing resource were used to add time as a third dimension to a quantitative trait locus (QTL) map for plant root gravitropism, a model growth response to an environmental cue. Digital images of Arabidopsis thaliana seedling roots from two independently reared sets of 162 recombinant inbred lines (RILs) and one set of 92 near isogenic lines (NILs) derived from a Cape Verde Islands (Cvi) × Landsberg erecta (Ler) cross were collected automatically every 2 min for 8 hr following induction of gravitropism by 90° reorientation of the sample. High-throughput computing (HTC) was used to measure root tip angle in each of the 1.1 million images acquired and perform statistical regression of tip angle against the genotype at each of the 234 RIL or 102 NIL DNA markers independently at each time point using a standard stepwise procedure. Time-dependent QTL were detected on chromosomes 1, 3, and 4 by this mapping method and by an approach developed to treat the phenotype time course as a function-valued trait. The QTL on chromosome 4 was earliest, appearing at 0.5 hr and remaining significant for 5 hr, while the QTL on chromosome 1 appeared at 3 hr and thereafter remained significant. The Cvi allele generally had a negative effect of 2.6-4.0%. Heritability due to the QTL approached 25%. This study shows how computer vision and statistical genetic analysis by HTC can characterize the developmental timing of genetic architectures.
采用自动化图像采集、定制分析算法和分布式计算资源,为植物根向重力性的数量性状基因座(QTL)图谱添加了时间这一第三维,这是一种对环境线索的典型生长反应。来自佛得角群岛(Cvi)× Landsberg erecta(Ler)杂交的两个独立培养的 162 个重组自交系(RIL)组和一组 92 个近等基因系(NIL)的拟南芥幼苗根的数字图像,在诱导根向重力性后,每 2 分钟自动采集一次,共采集 8 小时。高通量计算(HTC)用于测量在采集的 110 万张图像中的每个根尖角度,并使用标准逐步程序,在每个时间点,分别针对 234 个 RIL 或 102 个 NIL DNA 标记中的每一个,对根尖角度与基因型进行统计回归。通过这种映射方法和开发的方法,将表型时间过程视为函数值性状,可以检测到染色体 1、3 和 4 上的时间依赖 QTL。染色体 4 上的 QTL 最早出现,在 0.5 小时时出现,并在 5 小时时仍然显著,而染色体 1 上的 QTL 出现在 3 小时,此后仍然显著。Cvi 等位基因通常具有负效应 2.6-4.0%。由于 QTL 导致的遗传力接近 25%。这项研究表明,计算机视觉和通过 HTC 进行的统计遗传分析如何描述遗传结构的发育时间。