Leibniz Institute of Plant Biochemistry, Independent Junior Research Group, 06120 Halle (Saale), Germany.
Plant Cell. 2010 Jul;22(7):2184-200. doi: 10.1105/tpc.110.073957. Epub 2010 Jul 9.
Natural variation has been observed for various traits in Arabidopsis thaliana. Here, we investigated natural variation in the context of physiological and transcriptional responses to the phytohormone auxin, a key regulator of plant development. A survey of the general extent of natural variation to auxin stimuli revealed significant physiological variation among 20 genetically diverse natural accessions. Moreover, we observed dramatic variation on the global transcriptome level after induction of auxin responses in seven accessions. Although we detect isolated cases of major-effect polymorphisms, sequencing of signaling genes revealed sequence conservation, making selective pressures that favor functionally different protein variants among accessions unlikely. However, coexpression analyses of a priori defined auxin signaling networks identified variations in the transcriptional equilibrium of signaling components. In agreement with this, cluster analyses of genome-wide expression profiles followed by analyses of a posteriori defined gene networks revealed accession-specific auxin responses. We hypothesize that quantitative distortions in the ratios of interacting signaling components contribute to the detected transcriptional variation, resulting in physiological variation of auxin responses among accessions.
在拟南芥中,各种性状的自然变异已经被观察到。在这里,我们研究了在植物发育的关键调节剂生长素的生理和转录反应背景下的自然变异。对生长素刺激的自然变异的广泛程度的调查显示,在 20 种遗传上不同的天然品系中存在显著的生理变异。此外,我们在七个品系中诱导生长素反应后观察到了全局转录组水平的显著变化。尽管我们检测到了孤立的多效性等位基因的情况,但信号基因的测序显示出序列保守性,这使得在品系之间有利于功能不同的蛋白质变体的选择压力不太可能存在。然而,先验定义的生长素信号网络的共表达分析确定了信号成分转录平衡的变化。与这一观点一致,对全基因组表达谱进行聚类分析,然后对后验定义的基因网络进行分析,揭示了特定于品系的生长素反应。我们假设相互作用的信号成分的比值中的定量扭曲导致了检测到的转录变化,从而导致了生长素反应在品系之间的生理变化。