Center for Genomics and Systems Biology, Department of Biology, New York University, New York, New York, United States of America ; School of Life Sciences, University of Warwick, Coventry, United Kingdom ; Warwick Systems Biology Centre, University of Warwick, Coventry, United Kingdom.
PLoS Genet. 2013;9(9):e1003760. doi: 10.1371/journal.pgen.1003760. Epub 2013 Sep 5.
Plant development is remarkably plastic but how precisely can the plant customize its form to specific environments? When the plant adjusts its development to different environments, related traits can change in a coordinated fashion, such that two traits co-vary across many genotypes. Alternatively, traits can vary independently, such that a change in one trait has little predictive value for the change in a second trait. To characterize such "tunability" in developmental plasticity, we carried out a detailed phenotypic characterization of complex root traits among 96 accessions of the model Arabidopsis thaliana in two nitrogen environments. The results revealed a surprising level of independence in the control of traits to environment - a highly tunable form of plasticity. We mapped genetic architecture of plasticity using genome-wide association studies and further used gene expression analysis to narrow down gene candidates in mapped regions. Mutants in genes implicated by association and expression analysis showed precise defects in the predicted traits in the predicted environment, corroborating the independent control of plasticity traits. The overall results suggest that there is a pool of genetic variability in plants that controls traits in specific environments, with opportunity to tune crop plants to a given environment.
植物的发育具有显著的可塑性,但植物如何精确地将其形态调整到特定的环境中呢?当植物根据不同的环境调整其发育时,相关的特征可以以协调的方式发生变化,使得两个特征在许多基因型中共同变化。或者,特征可以独立变化,使得一个特征的变化对第二个特征的变化几乎没有预测价值。为了描述发育可塑性中的这种“可调节性”,我们在两种氮环境下对模式拟南芥 96 个品系的复杂根系特征进行了详细的表型特征描述。结果表明,控制特征与环境之间的关系具有惊人的独立性——这是一种高度可调节的可塑性形式。我们使用全基因组关联研究来绘制可塑性的遗传结构,并进一步使用基因表达分析来缩小映射区域中的基因候选物。通过关联和表达分析确定的基因的突变体在预测的环境中表现出预测特征的精确缺陷,证实了可塑性特征的独立控制。总体结果表明,植物中存在着控制特定环境中特征的遗传可变性池,为将作物植物调整到特定环境提供了机会。