Department of Evolutionary Theory, Max Planck Institute for Evolutionary Biology, Plön, Germany.
New Zealand Institute for Advanced Study, Massey University at Albany, Auckland, New Zealand.
Mol Biol Evol. 2019 May 1;36(5):1071-1085. doi: 10.1093/molbev/msz040.
Repeated evolution of functionally similar phenotypes is observed throughout the tree of life. The extent to which the underlying genetics are conserved remains an area of considerable interest. Previously, we reported the evolution of colony switching in two independent lineages of Pseudomonas fluorescens SBW25. The phenotypic and genotypic bases of colony switching in the first lineage (Line 1) have been described elsewhere. Here, we deconstruct the evolution of colony switching in the second lineage (Line 6). We show that, as for Line 1, Line 6 colony switching results from an increase in the expression of a colanic acid-like polymer (CAP). At the genetic level, nine mutations occur in Line 6. Only one of these-a nonsynonymous point mutation in the housekeeping sigma factor rpoD-is required for colony switching. In contrast, the genetic basis of colony switching in Line 1 is a mutation in the metabolic gene carB. A molecular model has recently been proposed whereby the carB mutation increases capsulation by redressing the intracellular balance of positive (ribosomes) and negative (RsmAE/CsrA) regulators of a positive feedback loop in capsule expression. We show that Line 6 colony switching is consistent with this model; the rpoD mutation generates an increase in ribosomal gene expression, and ultimately an increase in CAP expression.
在整个生命之树上都观察到了功能相似表型的重复进化。潜在遗传的保守程度仍然是一个相当有兴趣的领域。此前,我们报告了假单胞菌荧光 SBW25 的两个独立谱系中菌落转换的进化。第一谱系(第 1 行)中菌落转换的表型和基因型基础已在其他地方描述。在这里,我们解构了第二谱系(第 6 行)中菌落转换的进化。我们表明,与第 1 行一样,第 6 行的菌落转换是由于表达一种类似菌毛酸的聚合物 (CAP) 增加所致。在遗传水平上,第 6 行发生了九个突变。其中只有一个突变——管家 sigma 因子 rpoD 中的非同义点突变——是菌落转换所必需的。相比之下,第 1 行的菌落转换的遗传基础是代谢基因 carB 的突变。最近提出了一个分子模型,其中 carB 突变通过纠正正反馈回路中 capsulation 表达的正(核糖体)和负(RsmAE/CsrA)调节剂的细胞内平衡来增加菌毛酸的产生。我们表明,第 6 行的菌落转换与该模型一致;rpoD 突变导致核糖体基因表达增加,最终导致 CAP 表达增加。