Postel Zoé, Poux Céline, Gallina Sophie, Varré Jean-Stéphane, Godé Cécile, Schmitt Eric, Meyer Etienne, Van Rossum Fabienne, Touzet Pascal
Univ. Lille, CNRS, UMR 8198 - Evo-Eco-Paleo, F-59000 Lille, France.
Univ. Lille, Inria, UMR CNRS 9189 - CRIStAL Centre de Recherche en Informatique Signal et Automatique de Lille F-59000 Lille, France.
Mol Phylogenet Evol. 2022 Apr;169:107436. doi: 10.1016/j.ympev.2022.107436. Epub 2022 Feb 4.
Early stages of speciation in plants might involve genetic incompatibilities between plastid and nuclear genomes, leading to inter-lineage hybrid breakdown due to the disruption between co-adapted plastid and nuclear genes encoding subunits of the same plastid protein complexes. We tested this hypothesis in Silene nutans, a gynodioecious Caryophyllaceae, where four distinct genetic lineages exhibited strong reproductive isolation among each other, resulting in chlorotic or variegated hybrids. By sequencing the whole gene content of the four plastomes through gene capture, and a large part of the nuclear genes encoding plastid subunits from RNAseq data, we searched for non-synonymous substitutions fixed in each lineage on both genomes. Lineages of S. nutans exhibited a high level of dN/dS ratios for plastid and nuclear genes encoding most plastid complexes, with a strong pattern of coevolution for genes encoding the subunits of ribosome and cytochrome b6/f that could explain the chlorosis of hybrids. Overall, relaxation of selection due to past bottlenecks and positive selection have driven the diversity pattern observed in S. nutans plastid complexes, leading to plastid-nuclear incompatibilities. We discuss the possible role of gynodioecy in the evolutionary dynamics of the plastomes through linked selection.
植物物种形成的早期阶段可能涉及质体和核基因组之间的遗传不相容性,由于编码同一种质体蛋白复合物亚基的共适应质体和核基因之间的破坏,导致种间杂交衰退。我们在女娄菜(Silene nutans)中验证了这一假设,女娄菜是一种雌雄异株的石竹科植物,其中四个不同的遗传谱系彼此之间表现出强烈的生殖隔离,导致杂交后代出现黄化或杂色现象。通过基因捕获对四个质体基因组的全基因内容进行测序,并从RNAseq数据中获取编码质体亚基的大部分核基因,我们在两个基因组中寻找每个谱系中固定的非同义替换。女娄菜的谱系在编码大多数质体复合物的质体和核基因上表现出高水平的dN/dS比率,对于编码核糖体和细胞色素b6/f亚基的基因,存在强烈的协同进化模式,这可以解释杂交后代的黄化现象。总体而言,过去瓶颈导致的选择放松和正选择推动了女娄菜质体复合物中观察到的多样性模式,导致质体-核不相容性。我们讨论了雌雄异株通过连锁选择在质体基因组进化动态中的可能作用。