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尽管雄性和雌性生殖器形态存在差异,但 Clitarchus 竹节虫物种之间存在微弱的交配前隔离。

Weak premating isolation between Clitarchus stick insect species despite divergent male and female genital morphology.

机构信息

Manaaki Whenua - Landcare Research, Auckland, New Zealand.

School of Biological Sciences, The University of Auckland, Auckland, New Zealand.

出版信息

J Evol Biol. 2019 May;32(5):398-411. doi: 10.1111/jeb.13424. Epub 2019 Mar 4.

Abstract

Documenting natural hybrid systems builds our understanding of mate choice, reproductive isolation and speciation. The stick insect species Clitarchus hookeri and C. tepaki differ in their genital morphology and hybridize along a narrow peninsula in northern New Zealand. We utilize three lines of evidence to understand the role of premating isolation and species boundaries: (a) genetic differentiation using microsatellites and mitochondrial DNA; (b) variation in 3D surface topology of male claspers and 2D morphometrics of female opercular organs; and (c) behavioural reproductive isolation among parental and hybrid populations through mating crosses. The genetic data show introgression between the parental species and formation of a genetically variable hybrid swarm. Similarly, the male and female morphometric data show genital divergence between the parental species as well as increased variation within the hybrid populations. This genital divergence has not resulted in reproductive isolation between species, instead weak perimating isolation has enabled the formation of a hybrid swarm. Behavioural analysis demonstrates that the entire mating process influences the degree of reproductive isolation between species undergoing secondary contact. Mechanical isolation may appear strong, whereas perimating isolation is weak.

摘要

记录自然杂种系统有助于我们理解配偶选择、生殖隔离和物种形成。新西兰北部狭长半岛上栖息着的两种竹节虫 Clitarchus hookeri 和 C. tepaki 存在生殖器形态差异,且存在杂交现象。我们利用三条证据来理解生殖隔离和物种界限的作用:(a)微卫星和线粒体 DNA 的遗传分化;(b)雄性足跗节的 3D 表面拓扑结构和雌性闭锁器器官的 2D 形态测量学的变化;(c)通过交配杂交,对亲本和杂交种群之间的行为生殖隔离进行研究。遗传数据显示,亲种之间存在基因渐渗,形成遗传上可变的杂种群。同样,雄性和雌性形态计量学数据显示亲种之间生殖器的差异,以及杂种种群内的变异增加。这种生殖器的差异并没有导致物种之间的生殖隔离,而是弱的前交配隔离使得杂种群得以形成。行为分析表明,整个交配过程影响着经历二次接触的物种之间的生殖隔离程度。机械隔离可能很强,而前交配隔离很弱。

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