Boyce Thompson Institute, Ithaca, New York.
Plant Biology Section, Cornell University, Ithaca, New York.
Genome Biol Evol. 2019 Jul 1;11(7):1959-1964. doi: 10.1093/gbe/evz137.
Plant endosymbiosis with nitrogen-fixing cyanobacteria has independently evolved in diverse plant lineages, offering a unique window to study the evolution and genetics of plant-microbe interaction. However, very few complete genomes exist for plant cyanobionts, and therefore little is known about their genomic and functional diversity. Here, we present four complete genomes of cyanobacteria isolated from bryophytes. Nanopore long-read sequencing allowed us to obtain circular contigs for all the main chromosomes and most of the plasmids. We found that despite having a low 16S rRNA sequence divergence, the four isolates exhibit considerable genome reorganizations and variation in gene content. Furthermore, three of the four isolates possess genes encoding vanadium (V)-nitrogenase (vnf), which is uncommon among diazotrophs and has not been previously reported in plant cyanobionts. In two cases, the vnf genes were found on plasmids, implying possible plasmid-mediated horizontal gene transfers. Comparative genomic analysis of vnf-containing cyanobacteria further identified a conserved gene cluster. Many genes in this cluster have not been functionally characterized and would be promising candidates for future studies to elucidate V-nitrogenase function and regulation.
植物与固氮蓝藻的内共生关系在不同的植物谱系中独立进化,为研究植物-微生物相互作用的进化和遗传学提供了独特的窗口。然而,很少有完整的植物蓝藻基因组存在,因此对其基因组和功能多样性知之甚少。在这里,我们介绍了从苔藓植物中分离出的四种蓝藻的完整基因组。纳米孔长读测序使我们能够获得所有主要染色体和大多数质粒的环状连续序列。我们发现,尽管 16S rRNA 序列的差异很小,但这四个分离株表现出相当大的基因组重排和基因内容的变化。此外,这四个分离株中有三个含有编码钒(V)-固氮酶(vnf)的基因,这在固氮生物中并不常见,也没有在植物蓝藻中报道过。在两种情况下,vnf 基因位于质粒上,这意味着可能存在质粒介导的水平基因转移。含有 vnf 的蓝藻的比较基因组分析进一步确定了一个保守的基因簇。该基因簇中的许多基因尚未进行功能表征,它们是未来研究 V-固氮酶功能和调控的有前途的候选基因。