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转座元件插入与泛热带蝴蝶 Hypolimnas misippus 的贝氏拟态相关。

Transposable Element Insertions Are Associated with Batesian Mimicry in the Pantropical Butterfly Hypolimnas misippus.

机构信息

Department of Zoology, University of Cambridge, Cambridge CB2 3EJ, UK.

Tree of Life Programme, Wellcome Sanger Institute, Hinxton, UK.

出版信息

Mol Biol Evol. 2024 Mar 1;41(3). doi: 10.1093/molbev/msae041.

Abstract

Hypolimnas misippus is a Batesian mimic of the toxic African Queen butterfly (Danaus chrysippus). Female H. misippus butterflies use two major wing patterning loci (M and A) to imitate three color morphs of D. chrysippus found in different regions of Africa. In this study, we examine the evolution of the M locus and identify it as an example of adaptive atavism. This phenomenon involves a morphological reversion to an ancestral character that results in an adaptive phenotype. We show that H. misippus has re-evolved an ancestral wing pattern present in other Hypolimnas species, repurposing it for Batesian mimicry of a D. chrysippus morph. Using haplotagging, a linked-read sequencing technology, and our new analytical tool, Wrath, we discover two large transposable element insertions located at the M locus and establish that these insertions are present in the dominant allele responsible for producing mimetic phenotype. By conducting a comparative analysis involving additional Hypolimnas species, we demonstrate that the dominant allele is derived. This suggests that, in the derived allele, the transposable elements disrupt a cis-regulatory element, leading to the reversion to an ancestral phenotype that is then utilized for Batesian mimicry of a distinct model, a different morph of D. chrysippus. Our findings present a compelling instance of convergent evolution and adaptive atavism, in which the same pattern element has independently evolved multiple times in Hypolimnas butterflies, repeatedly playing a role in Batesian mimicry of diverse model species.

摘要

红肩美眼蛱蝶是非洲君主斑蝶(Danaus chrysippus)的贝氏拟态模拟种。雌性红肩美眼蛱蝶利用两个主要的翅膀斑纹基因座(M 和 A)来模拟在非洲不同地区发现的三种颜色形态的 D. chrysippus。在这项研究中,我们研究了 M 基因座的进化,并将其鉴定为适应倒退的一个例子。这种现象涉及到对祖先特征的形态回归,导致适应性表型。我们表明,红肩美眼蛱蝶重新进化出了其他 Hypolimnas 物种中存在的祖先翅膀图案,将其重新用于 D. chrysippus 形态的贝氏拟态。我们使用单倍型标记、连锁读取测序技术和我们的新分析工具 Wrath,发现了位于 M 基因座的两个大型转座元件插入,并确定这些插入存在于产生拟态表型的显性等位基因中。通过对其他 Hypolimnas 物种进行比较分析,我们证明了该显性等位基因是衍生的。这表明,在衍生等位基因中,转座元件破坏了一个顺式调控元件,导致回归到祖先表型,然后用于对不同模型,即 D. chrysippus 的不同形态进行贝氏拟态。我们的研究结果提供了一个引人注目的趋同进化和适应倒退的例子,即在 Hypolimnas 蝴蝶中,相同的模式元素独立进化了多次,反复在不同模型物种的贝氏拟态中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69f4/10924252/5e7a207a14f3/msae041f1.jpg

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