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Phylogenetic inferences in the dung-moss family splachnaceae from analyses of CPDNA sequence data and implications for the evolution of entomophily

机译:从CPDNA序列数据分析对粪苔藓科的系统发育论及其对嗜昆虫性进化的启示

摘要

The moss family Splachnaceae is characterized by half of its members relying on insects for spore dispersal. These species grow on dung or other animal substrates. They produce small and aggregated spores, and their capsule is modified to attract coprophilous insects or carrion flies using olfactory and visual cues. Systematic concepts and implicit evolutionary inferences have relied much on variation in characters associated with the spore dispersal syndrome. Phylogenetic reconstructions based on sequence variation of two chloroplast loci (trnL-trnF region and the rps4 gene) suggest that most supraspecific taxa are poly- or paraphyletic. Transformations in morphological characters associated to the syndrome thus offer little if any phylogenetically informative signal. Brachymitrion is resolved in a nested position within Tayloria. A new combination, Tayloria immersa (Goffinet) Goffinet, Shaw & Cox is proposed for B. immersum. Only one of the five subgenera of Tayloria (subg. Orthodon) is potentially monophyletic. Voitia shares a common ancestor with Tetraplodon and is thus nested within the Splachnoideae. The affinities of Aplodon remain ambiguous. Reconstruction of shifts between wind and insect spore dispersal syndromes suggests that entomophily arose more than once and may have been followed by a reversal to the generalist strategy in two lineages.
机译:苔藓科的苔藓科的特征是其一半成员依靠昆虫进行孢子传播。这些物种生长在粪便或其他动物底物上。它们产生小的和聚集的孢子,并通过嗅觉和视觉提示对它们的胶囊进行修饰,以吸引同食性昆虫或腐肉蝇。系统的概念和隐式的进化推论在很大程度上依赖于与孢子散布综合症有关的性状的变化。基于两个叶绿体基因座(trnL-trnF区和rps4基因)的序列变异的系统发生重建表明,大多数超特异类群是多系或类系的。因此,与该综合征相关的形态特征的转化几乎不能提供任何系统发育的信息信号。 Brachymitrion在Tayloria中的嵌套位置分解。提出了一种新的组合,即拟南芥芽孢杆菌Tayloria immersa(Goffinet)Goffinet,Shaw&Cox。泰勒菌属(正畸)的五个亚属中只有一个可能是单系的。 Voitia与Tetraplodon有共同的祖先,因此嵌套在Splatchnoideae中。 Aplodon的相似性仍然不明确。风和昆虫孢子散布综合症之间的转变的重建表明,嗜昆虫性出现了不止一次,并且可能在两个谱系中逆转了通才策略。

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