Laboratório de Genômica Evolutiva, Departamento de Genética, Evolução, Microbiologia e Imunologia, Instituto de Biologia, Universidade Estadual de Campinas, Rua Bertrand Russell, S/N, Cidade Universitária, IB, Bloco H, Campinas, SP, Brazil.
School of Biological and Chemical Sciences, Queen Mary University of London, London, UK.
BMC Evol Biol. 2020 Jul 17;20(1):87. doi: 10.1186/s12862-020-01650-3.
The blood-feeding behavior evolved multiple times in Insecta lineages and it represents an excellent opportunity to study patterns of convergent molecular evolution regarding this habit. In insects the expansion of some gene families is linked with blood-feeding behavior, but a wide study comparing the evolution of these gene families among different lineages is still missing. Here we gathered genomic data from six independently-evolved hematophagous lineages, aiming to identify convergent expansions and/or contractions of gene families in hematophagous lineages of insects.
We found four rapidly evolving gene families shared by at least two hematophagous independently-evolved lineages, including a heat-shock and a chemosensory protein. On the expression of these four rapidly evolving gene families we found more genes expressed in mated individuals compared with virgin individuals in rapidly-expanded families and more genes expressed in non-blood-feeding individuals compared with blood-feeding individuals in rapidly-contracted families.
Our results reveal a new set of candidate genes to be explored in further analysis to help the development of new strategies to deal with blood-feeding vectors and also presents a new perspective to study the evolution of hematophagy identifying convergent molecular patterns.
昆虫纲的多个谱系中都进化出了吸血行为,这为研究与这种习性相关的趋同分子进化模式提供了极好的机会。在昆虫中,一些基因家族的扩张与吸血行为有关,但对于不同谱系中这些基因家族的进化,仍缺乏广泛的研究。在这里,我们从六个独立进化的吸血谱系中收集了基因组数据,旨在鉴定昆虫吸血谱系中基因家族的趋同扩张和/或收缩。
我们发现了四个至少被两个独立进化的吸血谱系共享的快速进化的基因家族,包括热休克蛋白和化学感受蛋白。在这些快速进化的基因家族的表达方面,我们发现与未交配个体相比,快速扩张家族中交配个体表达的基因更多,与非吸血个体相比,快速收缩家族中吸血个体表达的基因更多。
我们的结果揭示了一组新的候选基因,这些基因可以进一步探索,以帮助开发新的策略来应对吸血媒介,也为研究吸血行为的进化提供了一个新的视角,确定趋同的分子模式。