Department of Zoology, Institute of Biosciences, University of São Paulo, Rua do Matão, Tv. 14, n101, São Paulo, SP 05508-090, Brazil.
Mol Phylogenet Evol. 2022 Aug;173:107479. doi: 10.1016/j.ympev.2022.107479. Epub 2022 May 6.
Arsenic is a ubiquitous element in the environment, a source of constant evolutionary pressure on organisms. The arsenic resistance machinery is thoroughly described for bacteria. Highly resistant lineages are also common in eukaryotes, but evolutionary knowledge is much more limited. While the origin of the resistance machinery in eukaryotes is loosely attributed to horizontal gene transfer (HGT) from bacteria, only a handful of eukaryotes were deeply studied. Here we investigate the origin and evolution of the core genes in arsenic resistance in eukaryotes using a broad phylogenetic framework. We hypothesize that, as arsenic pressure is constant throughout Earth's history, resistance mechanisms are probably ancestral to eukaryotes. We identified homologs for each of the arsenic resistance genes in eukaryotes and traced their possible origin using phylogenetic reconstruction. We reveal that: i. an important component of the arsenic-resistant machinery originated before the last eukaryotic common ancestor; ii. later events of gene duplication and HGT generated new homologs that, in many cases, replaced ancestral ones. Even though HGT has an important contribution to the expansion of arsenic metabolism in eukaryotes, we propose the hypothesis of ancestral origin and differential retention of arsenic resistance mechanisms in the group. Key-words: Environmental adaptation; resistance to toxic metalloids; detoxification; comparative genomics; functional phylogenomics.
砷是环境中普遍存在的元素,是生物体不断进化的压力源。细菌的砷抗性机制已得到充分描述。高度抗性的谱系在真核生物中也很常见,但进化知识却要有限得多。虽然抗性机制在真核生物中的起源被笼统地归因于来自细菌的水平基因转移(HGT),但只有少数真核生物被深入研究。在这里,我们使用广泛的系统发育框架来研究真核生物砷抗性核心基因的起源和进化。我们假设,由于砷压力在地球历史上是恒定的,因此抵抗机制可能是真核生物的祖先。我们在真核生物中鉴定了每个砷抗性基因的同源物,并通过系统发育重建追踪它们可能的起源。我们揭示了:i. 砷抗性机制的一个重要组成部分起源于最后一个真核生物共同祖先之前;ii. 后来的基因复制和 HGT 事件产生了新的同源物,在许多情况下,这些同源物取代了祖先的同源物。尽管 HGT 对真核生物砷代谢的扩展有重要贡献,但我们提出了砷抗性机制在该组中具有祖先起源和差异保留的假说。关键词:环境适应;有毒类金属抗性;解毒;比较基因组学;功能系统发生学。