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克隆劫掠蚁(Cerapachys biroi)的基因组。

The genome of the clonal raider ant Cerapachys biroi.

作者信息

Oxley Peter R, Ji Lu, Fetter-Pruneda Ingrid, McKenzie Sean K, Li Cai, Hu Haofu, Zhang Guojie, Kronauer Daniel J C

机构信息

Laboratory of Insect Social Evolution, The Rockefeller University, 1230 York Avenue, New York, NY 10065, USA.

China National Genebank, BGI-Shenzhen, Shenzhen 518083, China.

出版信息

Curr Biol. 2014 Feb 17;24(4):451-8. doi: 10.1016/j.cub.2014.01.018. Epub 2014 Feb 6.

Abstract

Social insects are important models for social evolution and behavior. However, in many species, experimental control over important factors that regulate division of labor, such as genotype and age, is limited. Furthermore, most species have fixed queen and worker castes, making it difficult to establish causality between the molecular mechanisms that underlie reproductive division of labor, the hallmark of insect societies. Here we present the genome of the queenless clonal raider ant Cerapachys biroi, a powerful new study system that does not suffer from these constraints. Using cytology and RAD-seq, we show that C. biroi reproduces via automixis with central fusion and that heterozygosity is lost extremely slowly. As a consequence, nestmates are almost clonally related (r = 0.996). Workers in C. biroi colonies synchronously alternate between reproduction and brood care, and young workers eclose in synchronized cohorts. We show that genes associated with division of labor in other social insects are conserved in C. biroi and dynamically regulated during the colony cycle. With unparalleled experimental control over an individual's genotype and age, and the ability to induce reproduction and brood care, C. biroi has great potential to illuminate the molecular regulation of division of labor.

摘要

社会性昆虫是社会进化和行为研究的重要模式生物。然而,在许多物种中,对调节劳动分工的重要因素(如基因型和年龄)的实验控制有限。此外,大多数物种具有固定的蚁后和工蚁等级制度,这使得难以确定昆虫社会标志性的生殖劳动分工背后的分子机制之间的因果关系。在此,我们展示了无蚁后克隆掠夺蚁(Cerapachys biroi)的基因组,这是一个强大的新研究系统,不存在这些限制。通过细胞学和RAD测序,我们表明,C. biroi通过中央融合的自动融合进行繁殖,杂合性丧失极慢。因此,同巢个体几乎是克隆相关的(r = 0.996)。C. biroi蚁群中的工蚁在繁殖和育雏之间同步交替,年轻工蚁在同步群体中羽化。我们表明,与其他社会性昆虫劳动分工相关的基因在C. biroi中是保守的,并在蚁群周期中受到动态调控。凭借对个体基因型和年龄的无与伦比的实验控制,以及诱导繁殖和育雏的能力,C. biroi在阐明劳动分工的分子调控方面具有巨大潜力。

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