Department of Plant Breeding and Genetics, Max Planck Institute for Plant Breeding Research, D-50829 Cologne, Germany.
Proc Natl Acad Sci U S A. 2013 Sep 24;110(39):15818-23. doi: 10.1073/pnas.1314979110. Epub 2013 Sep 10.
Understanding the genetic bases of natural variation for developmental and stress-related traits is a major goal of current plant biology. Variation in plant hormone levels and signaling might underlie such phenotypic variation occurring even within the same species. Here we report the genetic and molecular basis of semidwarf individuals found in natural Arabidopsis thaliana populations. Allelism tests demonstrate that independent loss-of-function mutations at GA locus 5 (GA5), which encodes gibberellin 20-oxidase 1 (GA20ox1) involved in the last steps of gibberellin biosynthesis, are found in different populations from southern, western, and northern Europe; central Asia; and Japan. Sequencing of GA5 identified 21 different loss-of-function alleles causing semidwarfness without any obvious general tradeoff affecting plant performance traits. GA5 shows signatures of purifying selection, whereas GA5 loss-of-function alleles can also exhibit patterns of positive selection in specific populations as shown by Fay and Wu's H statistics. These results suggest that antagonistic pleiotropy might underlie the occurrence of GA5 loss-of-function mutations in nature. Furthermore, because GA5 is the ortholog of rice SD1 and barley Sdw1/Denso green revolution genes, this study illustrates the occurrence of conserved adaptive evolution between wild A.thaliana and domesticated plants.
理解自然变异的遗传基础对于发育和应激相关特征是当前植物生物学的主要目标。植物激素水平和信号转导的变化可能是同一物种内出现这种表型变异的基础。本文报道了在自然拟南芥群体中发现的半矮化个体的遗传和分子基础。等位基因测试表明,GA 位点 5(GA5)的独立功能丧失突变,该基因编码参与赤霉素生物合成最后步骤的赤霉素 20-氧化酶 1(GA20ox1),存在于来自欧洲南部、西部和北部;中亚;和日本的不同种群中。GA5 的测序确定了 21 个不同的功能丧失等位基因,导致半矮化,而不会对植物表现性状产生任何明显的普遍权衡。GA5 显示出纯化选择的特征,而 GA5 功能丧失等位基因也可以在特定种群中表现出正选择模式,如 Fay 和 Wu 的 H 统计数据所示。这些结果表明,拮抗多效性可能是 GA5 功能丧失突变在自然界中发生的基础。此外,由于 GA5 是水稻 SD1 和大麦 Sdw1/Denso 绿色革命基因的同源物,因此本研究说明了野生拟南芥和驯化植物之间保守的适应性进化的发生。