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首页> 外文期刊>Entomological Science >Variation and evolution of the complex life cycle in Adelgidae (Hemiptera).
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Variation and evolution of the complex life cycle in Adelgidae (Hemiptera).

机译:蜘蛛科(半翅目)复杂生命周期的变化和演变。

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The family Adelgidae is a small group of insects within Aphidoidea (Hemiptera). Adelgids are typically holocyclic with host-alternation between the primary and secondary hosts, but some anholocyclic species persist either on the primary or secondary host. Like Aphididae, complexities and variation of adelgid life cycles are good models for understanding the evolution of complex life cycles. In this review, we outline the complex life cycles of adelgids, and current status and recent advances in adelgid life cycle studies. We also discuss the evolution of adelgid life cycles by comparing them to closely related aphid life cycles. A switch from holocycly to anholocycly on the primary host needs evolutionary innovations in gallicola behavior and reproduction. This radical evolution can be explained by mutations in a regulatory system that controls the sequence of gene sets producing phenotypes of one morph. In contrast, anholocycly on the secondary host consists of a series of exulis generations already existing in the holocycle. Thus, it may evolve by loss of primary-host generations through extinction of the primary host, expansion beyond the geographical range of the primary host, or loss of male-producing sexuparae that return to the primary host. Although the holocycle and its anholocyclic derivatives have been regarded as different species, morphological, ecological and genetic differences are too subtle to separate them into different species. The holocycle and its anholocyclic derivatives should not be split into different species without clearly identifiable morphological differences.Digital Object Identifier http://dx.doi.org/10.1111/j.1479-8298.2011.00483.x
机译:蚜科(Adelgidae)是蚜虫(半翅目)内的一小群昆虫。 Adelgids通常是整体的,在主要和次要宿主之间具有宿主交替性,但是一些杂环类物种在主要或次要宿主上仍然存在。与蚜虫一样,阿德吉德生命周期的复杂性和变异性也是理解复杂生命周期演变的良好模型。在这篇综述中,我们概述了adelgids的复杂生命周期,以及adelgid生命周期研究的现状和最新进展。我们还通过将它们与密切相关的蚜虫生命周期进行比较来讨论其进化过程。在主要宿主上从全周期到全周期的转变需要在盖洛斯拉行为和繁殖方面进行进化创新。这种自由基的进化可以通过调节系统中的突变来解释,所述调节系统控制产生一种形态的表型的基因集的序列。相比之下,次要宿主上的杂环则由完整周期中已经存在的一系列疏松世代组成。因此,它可能会因主要宿主的灭绝而失去主要宿主代,进化超出主要宿主的地理范围,或失去返回主要宿主的雄性产生性繁殖而进化。尽管整个环及其杂环衍生物被视为不同的物种,但形态,生态和遗传差异仍然微妙,无法将它们分为不同的物种。没有清晰可辨的形态学差异,不应将整环及其全环衍生物分为不同的物种。数字对象标识符http://dx.doi.org/10.1111/j.1479-8298.2011.00483.x

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