拟南芥植物生长的功能定位

Kaiyue Liu, W. Bo, Lina Wang, R. Wu, Libo Jiang
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引用次数: 0

摘要

大多数对农业、生物学和生物医学重要的性状都是复杂的性状,由遗传和环境因素共同决定。在不同发育阶段改变其表型的复杂性状被称为动态性状。传统的数量性状定位方法忽略了复杂性状的动态变化。功能图谱作为一种强大的统计工具,不仅可以定位控制复杂性状发育模式和过程的qtl,而且可以描述复杂性状的动态变化。在本研究中,我们利用功能定位技术鉴定了两个不同拟南芥来源的第10代重组自交系中影响高度生长的qtl。功能图谱鉴定出48个与身高性状相关的qtl。每个显著位点均可绘制不同基因型的生长曲线。通过GO基因功能注释,我们发现检测到的这些qtl与生物大分子合成和生物功能调控相关。本研究结果为拟南芥高度生长的遗传调控提供了独特的见解,并将为复杂性状的研究提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional Mapping of Plant Growth in Arabidopsis thaliana
Most traits important to agriculture, biology, and biomedicine are complex traits, deter- mined by both genetic and environmental factors. The complex traits that change their phenotypes over different stages of development are called dynamic traits. Traditional quantitative trait loci (QTLs) mapping approaches ignore the dynamic changes of complex traits. Functional mapping, as a powerful statistical tool, can not only map QTLs that con- trol the developmental pattern and process of complex traits, but also describe the dynamic changes of complex traits. In this study, we used functional mapping to identify those QTLs that affect height growth in 10th generation recombinant inbred lines derived from two different Arabidopsis thaliana accessions. Functional mapping identified 48 QTLs that are related to height traits. The growth curves of different genotypes can be drawn for each significant locus. By GO gene function annotations, we found that these QTLs detected are associated with the synthesis of biological macromolecules and the regulation of biological functions. Our findings provide unique insights into the genetic control of height growth of A. thaliana and will provide a theoretical basis for the study of complex traits.
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