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Trap diversity and character evolution in carnivorous bladderworts (Utricularia Lentibulariaceae)

机译:肉食性膀胱藻(乌头菌属豆科)的诱捕多样性和性状演变

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摘要

Bladderworts (Utricularia, Lentibulariaceae, Lamiales) constitute the largest genus of carnivorous plants but only aquatic species (about one fifth of the genus) have so far been thoroughly studied as to their suction trap functioning. In this study, we comparatively investigated trap biomechanics in 19 Utricularia species to examine correlations between life-forms, trapping mechanisms, and functional-morphological traits. Our investigations show the existence of two functional trap principles (passive trap in U. multifida vs. active suction traps), and – in active suction traps – three main trapdoor movement types (with several subtypes). The trapdoor movement types and their corresponding functional-morphological features most presumably represent adaptations to the respective habitat. We furthermore give insights into fluid dynamics during suction in three representatives of the main types of trapdoor movement. The results on functional morphology and trapdoor movement were mapped onto a new phylogenetic reconstruction of the genus, derived from the rapidly evolving chloroplast regions trnK, rps16 and trnQ-rps16 and a sampling of 105 Utricularia species in total. We discuss potential scenarios of trap character evolution and species radiation, highlighting possible key innovations that enable such a unique carnivorous lifestyle in different habitats.
机译:膀胱草(Utricularia,Lentibulariaceae,Lamiales)构成了食肉植物的最大属,但到目前为止,就吸水器功能而言,仅对水生物种(约占该属的五分之一)进行了深入研究。在这项研究中,我们比较研究了19种乌头菌属的诱捕生物力学,以研究生命形式,诱捕机制和功能形态特征之间的相关性。我们的研究表明,存在两种功能性疏水阀原理(U. multifida中的被动疏水阀与主动吸水阀),以及–在主动吸水阀中–三种主要的活板门移动类型(有几种亚型)。活板门的移动类型及其相应的功能形态特征最有可能代表对各自栖息地的适应。此外,我们以活板门运动的主要类型的三种代表对吸气过程中的流体动力学进行了深入分析。功能形态学和活板门移动的结果被映射到该属的一个新的系统发育重建中,该重建是从快速发展的叶绿体区域trnK,rps16和trnQ-rps16以及总共105种Utricularia物种中获得的。我们讨论了诱捕器性状进化和物种辐射的潜在情况,重点介绍了可能的关键创新,这些创新使不同生境具有这种独特的食肉性生活方式。

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