QTL for the Kinematic Traits That Define the Arabidopsis Root Elongation Zone and Their Relationship to Gravitropism

Plants Pub Date : 2024-04-25 DOI:10.3390/plants13091189
Ashley R. Henry, Nathan D. Miller, E. Spalding
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Abstract

Cell expansion in a discrete region called the elongation zone drives root elongation. Analyzing time lapse images can quantify the expansion in kinematic terms as if it were fluid flow. We used horizontal microscopes to collect images from which custom software extracted the length of the elongation zone, the peak relative elemental growth rate (REGR) within it, the axial position of the REGR peak, and the root elongation rate. Automation enabled these kinematic traits to be measured in 1575 Arabidopsis seedlings representing 162 recombinant inbred lines (RILs) derived from a cross of Cvi and Ler ecotypes. We mapped ten quantitative trait loci (QTL), affecting the four kinematic traits. Three QTL affected two or more traits in these vertically oriented seedlings. We compared this genetic architecture with that previously determined for gravitropism using the same RIL population. The major QTL peaks for the kinematic traits did not overlap with the gravitropism QTL. Furthermore, no single kinematic trait correlated with quantitative descriptors of the gravitropism response curve across this population. In addition to mapping QTL for growth zone traits, this study showed that the size and shape of the elongation zone may vary widely without affecting the differential growth induced by gravity.
拟南芥根伸长区运动性状的 QTL 及其与引力的关系
在一个称为伸长区的离散区域内,细胞的扩张推动了根的伸长。通过分析延时图像,可以像分析流体流动一样从运动学角度量化伸长。我们使用水平显微镜收集图像,并通过定制软件从中提取伸长区的长度、伸长区内的相对元素增长率峰值(REGR)、REGR 峰值的轴向位置以及根伸长率。通过自动化技术,我们在 1575 株拟南芥幼苗中测量了这些运动性状,这些幼苗代表了 162 个重组近交系(RIL),这些重组近交系来自 Cvi 和 Ler 生态型杂交。我们绘制了影响四个运动性状的十个数量性状位点(QTL)。有三个 QTL 对这些垂直定向幼苗的两个或更多性状产生影响。我们将这一遗传结构与之前利用相同的 RIL 群体确定的重力作用遗传结构进行了比较。运动性状的主要 QTL 峰与重力作用 QTL 峰并不重叠。此外,在该群体中,没有一个运动性状与引力反应曲线的定量描述因子相关。除了绘制生长区性状的 QTL 外,这项研究还表明,伸长区的大小和形状可能有很大差异,但不会影响重力诱导的差异生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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