The free-living wellspring of symbiotic nitrogen fixation in Bradyrhizobium

生物 固氮 共生 缓生根瘤菌 系统发育学 基因组 基因 进化生物学 点头 固氮酶 遗传学 慢生型大豆根瘤菌 适应(眼睛) 固定(群体遗传学) 系统发育树 植物 根瘤菌 氮气循环
作者
Lu Ling,Sishuo Wang,Jinjin Tao,Marjorie Pervent,Kaitlyn E. Ho,Coline Sciallano,Alicia Camuel,Nico Nouwen,Éric Giraud,Haiwei Luo
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:123 (31): e2604918123-e2604918123
标识
DOI:10.1073/pnas.2604918123
摘要

The evolutionary origin of nitrogen-fixing symbiosis has been a long-standing question. To address this, we focused on Bradyrhizobium , a globally abundant bacterial genus that includes classic symbiotic lineages, which rely on the common Nod factor signaling pathway to form nodules, and close relatives capable of fixing nitrogen in a free-living state. We isolated 88 strains carrying the key genes for nitrogen fixation ( nif ) from nonlegume environments and analyzed them alongside 586 public Bradyrhizobium genomes harboring these genes to reconstruct a robust phylogeny of nif genes. Analysis suggests that the earliest-diverging nif lineages are members capable of free-living nitrogen fixation, supporting the interpretation that this lifestyle is ancestral. The Nod factor-dependent symbiotic lineages are polyphyletic, with our data supporting at least three independent origins via horizontal acquisition of symbiosis islands. This evolutionary history is reflected in a genomic dichotomy: lineages capable of free-living nitrogen fixation possess a conserved nif island architecture that consistently includes the oxygen-protective gene glbO , whereas the symbiotic nif -associated regions are highly variable and universally lack glbO . Using both loss-of-function and gain-of-function genetic approaches, we show that glbO contributes significantly to nitrogenase activity under free-living conditions, whereas it is dispensable within the protected nodule environment. This work provides a framework for the evolution of nitrogen-fixing symbiosis, supporting the view that free-living nitrogen-fixing ancestors gave rise repeatedly and independently to symbiotic lineages in Bradyrhizobium .
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