Blaz Jazmín, Barrera-Redondo Josué, Vázquez-Rosas-Landa Mirna, Canedo-Téxon Anahí, Aguirre von Wobeser Eneas, Carrillo Daniel, Stouthamer Richard, Eskalen Akif, Villafán Emanuel, Alonso-Sánchez Alexandro, Lamelas Araceli, Ibarra-Juarez Luis Arturo, Pérez-Torres Claudia Anahí, Ibarra-Laclette Enrique
Red de Estudios Moleculares Avanzados, Instituto de Ecología A.C, Xalapa, Veracruz 91070, Mexico.
Departamento de Ecología Evolutiva, Instituto de Ecología, Universidad Nacional Autónoma de México, Ciudad de México 04500, Mexico.
Life (Basel). 2018 Dec 22;9(1):2. doi: 10.3390/life9010002.
Mutualistic symbiosis and eusociality have developed through gradual evolutionary processes at different times in specific lineages. Like some species of termites and ants, ambrosia beetles have independently evolved a mutualistic nutritional symbiosis with fungi, which has been associated with the evolution of complex social behaviors in some members of this group. We sequenced the transcriptomes of two ambrosia complexes ( sp. near ⁻ and ) to find evolutionary signatures associated with mutualism and behavior evolution. We identified signatures of positive selection in genes related to nutrient homeostasis; regulation of gene expression; development and function of the nervous system, which may be involved in diet specialization; behavioral changes; and social evolution in this lineage. Finally, we found convergent changes in evolutionary rates of proteins across lineages with phylogenetically independent origins of sociality and mutualism, suggesting a constrained evolution of conserved genes in social species, and an evolutionary rate acceleration related to changes in selective pressures in mutualistic lineages.
互利共生和群居昆虫的社会行为通过特定谱系在不同时期的逐渐进化过程而发展。像某些白蚁和蚂蚁物种一样,粉蠹虫独立地与真菌进化出了一种互利的营养共生关系,这与该群体中一些成员复杂社会行为的进化有关。我们对两个粉蠹虫复合体(近种和种)的转录组进行了测序,以寻找与共生和行为进化相关的进化特征。我们在与营养稳态、基因表达调控、神经系统的发育和功能(可能参与饮食特化)、行为变化以及该谱系中的社会进化相关的基因中鉴定出了正选择特征。最后,我们发现,在具有社会行为和共生关系的系统发育独立起源的谱系中,蛋白质进化速率存在趋同变化,这表明社会物种中保守基因的进化受到限制,而共生谱系中与选择压力变化相关的进化速率加速。