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探索极端:南非红彩带蜂雌性前腿夸张形态的起源与演化

Playing with extremes: Origins and evolution of exaggerated female forelegs in South African Rediviva bees.

作者信息

Kahnt Belinda, Montgomery Graham A, Murray Elizabeth, Kuhlmann Michael, Pauw Anton, Michez Denis, Paxton Robert J, Danforth Bryan N

机构信息

Institute of Biology/General Zoology, Martin-Luther-University Halle-Wittenberg, Hoher Weg 8, 06120 Halle (Saale), Germany; German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Deutscher Platz 5e, 04103 Leipzig, Germany.

Department of Entomology, Cornell University, 3124 Comstock Hall, Ithaca, NY 14853-2601, USA.

出版信息

Mol Phylogenet Evol. 2017 Oct;115:95-105. doi: 10.1016/j.ympev.2017.07.025. Epub 2017 Jul 27.

DOI:10.1016/j.ympev.2017.07.025
PMID:28757446
Abstract

Despite close ecological interactions between plants and their pollinators, only some highly specialised pollinators adapt to a specific host plant trait by evolving a bizarre morphology. Here we investigated the evolution of extremely elongated forelegs in females of the South African bee genus Rediviva (Hymenoptera: Melittidae), in which long forelegs are hypothesised to be an adaptation for collecting oils from the extended spurs of their Diascia host flowers. We first reconstructed the phylogeny of the genus Rediviva using seven genes and inferred an origin of Rediviva at around 29MYA (95% HPD=19.2-40.5), concurrent with the origin and radiation of the Succulent Karoo flora. The common ancestor of Rediviva was inferred to be a short-legged species that did not visit Diascia. Interestingly, all our analyses strongly supported at least two independent origins of long legs within Rediviva. Leg length was not correlated with any variable we tested (ecological specialisation, Diascia visitation, geographic distribution, pilosity type) but seems to have evolved very rapidly. Overall, our results indicate that foreleg length is an evolutionary highly labile, rapidly evolving trait that might enable Rediviva bees to respond quickly to changing floral resource availability.

摘要

尽管植物与其传粉者之间存在密切的生态相互作用,但只有一些高度特化的传粉者通过进化出奇异的形态来适应特定的寄主植物特征。在这里,我们研究了南非红壁蜂属(膜翅目:隧蜂科)雌性蜜蜂极长前腿的进化,其中长前腿被认为是一种适应,用于从其寄主植物双色鼠尾草花的延长距中采集花蜜。我们首先使用七个基因重建了红壁蜂属的系统发育,并推断红壁蜂属起源于约2900万年前(95%最高后验密度区间=1920万-4050万年前),这与肉质卡鲁植物区系的起源和辐射同时发生。红壁蜂属的共同祖先被推断为一种短腿物种,不访双色鼠尾草花。有趣的是,我们所有的分析都有力地支持了红壁蜂属内长腿至少有两个独立的起源。腿的长度与我们测试的任何变量(生态特化、访双色鼠尾草花情况、地理分布、毛被类型)均无相关性,但似乎进化得非常迅速。总体而言,我们的结果表明,前腿长度是一个进化上高度不稳定、快速进化的性状,这可能使红壁蜂能够快速响应不断变化的花卉资源可用性。

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Playing with extremes: Origins and evolution of exaggerated female forelegs in South African Rediviva bees.探索极端:南非红彩带蜂雌性前腿夸张形态的起源与演化
Mol Phylogenet Evol. 2017 Oct;115:95-105. doi: 10.1016/j.ympev.2017.07.025. Epub 2017 Jul 27.
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Should I stay or should I go? Pollinator shifts rather than cospeciation dominate the evolutionary history of South African Rediviva bees and their Diascia host plants.我是去还是留?传粉者转移而非共演化主导南非 Rediviva 蜜蜂及其 Diascia 寄主植物的进化历史。
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Allometric relationships shape foreleg evolution of long-legged oil bees (Melittidae: Rediviva).种间体型关系塑造了长腿油蜜蜂(蜜蜂科:Rediviva)前腿的进化。
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Analysis of family-level relationships in bees (Hymenoptera: Apiformes) using 28S and two previously unexplored nuclear genes: CAD and RNA polymerase II.利用28S以及两个此前未被探索的核基因CAD和RNA聚合酶II对蜜蜂(膜翅目:蜜蜂总科)科级关系进行分析。
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Subgeneric classification of the bee genus Rediviva Friese (Hymenoptera: Apiformes: Melittidae).红腹蜂属(膜翅目:蜜蜂总科:隧蜂科)的亚属分类
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引用本文的文献

1
The allometry of proboscis length in Melittidae (Hymenoptera: Apoidae) and an estimate of their foraging distance using museum collections.金小蜂科(膜翅目:蚁蜂科)喙长度的异速生长及其利用博物馆馆藏估计其觅食距离。
PLoS One. 2019 Jun 7;14(6):e0217839. doi: 10.1371/journal.pone.0217839. eCollection 2019.
2
Small and genetically highly structured populations in a long-legged bee, Rediviva longimanus, as inferred by pooled RAD-seq.通过汇集 RAD-seq 推断,长腿蜜蜂 Rediviva longimanus 是一个小型且遗传结构高度复杂的种群。
BMC Evol Biol. 2018 Dec 19;18(1):196. doi: 10.1186/s12862-018-1313-z.
3
Long-legged bees make adaptive leaps: linking adaptation to coevolution in a plant-pollinator network.
长腿蜜蜂实现适应性飞跃:在植物-传粉者网络中将适应性与协同进化联系起来。
Proc Biol Sci. 2017 Sep 13;284(1862). doi: 10.1098/rspb.2017.1707.