...
首页> 外文期刊>Systematic Biology >Time flies, a new molecular time-scale for brachyceran fly evolution without a clock
【24h】

Time flies, a new molecular time-scale for brachyceran fly evolution without a clock

机译:时间过得很快,这是无脉动摇蝇进化的新分子时标

获取原文
获取原文并翻译 | 示例
           

摘要

The insect order Diptera, the true flies, contains one of the four largest Mesozoic insect radiations within its suborder Brachycera. Estimates of phylogenetic relationships and divergence dates among the major brachyceran lineages have been problematic or vague because of a lack of consistent evidence and the rarity of well- preserved fossils. Here, we combine new evidence from nucleotide sequence data, morphological reinterpretations, and fossils to improve estimates of brachyceran evolutionary relationships and ages. The 28S ribosomal DNA ( rDNA) gene was sequenced for a broad diversity of taxa, and the data were combined with recently published morphological scorings for a parsimony - based phylogenetic analysis. The phylogenetic topology inferred from the combined 28S rDNA and morphology data set supports brachyceran monophyly and the monophyly of the four major brachyceran infraorders and suggests relationships largely consistent with previous classifications. Weak support was found for a basal brachyceran clade comprising the infraorders Stratiomyomorpha ( soldier flies and relatives), Xylophagomorpha ( xylophagid flies), and Tabanomorpha ( horse flies, snipe flies, and relatives). This topology and similar alternative arrangements were used to obtain Bayesian estimates of divergence times, both with and without the assumption of a constant evolutionary rate. The estimated times were relatively robust to the choice of prior distributions. Divergence times based on the 28S rDNA and several fossil constraints indicate that the Brachycera originated in the late Triassic or earliest Mesozoic and that all major lower brachyceran fly lineages had near contemporaneous origins in the mid- Jurassic prior to the origin of flowering plants ( angiosperms). This study provides increased resolution of brachyceran phylogeny, and our revised estimates of fly ages should improve the temporal context of evolutionary inferences and genomic comparisons between fly model organisms.
机译:昆虫纲双翅目(Diptera)是真正的苍蝇,在其亚目Brachycera中包含四个最大的中生昆虫辐射之一。由于缺乏一致的证据和保存完好的化石的稀有性,主要的腕足动物谱系之间的系统发育关系和分歧日期估计存在问题或模糊。在这里,我们结合了来自核苷酸序列数据,形态重新解释和化石的新证据,以改善对腕足动物进化关系和年龄的估计。对28S核糖体DNA(rDNA)基因进行了测序,获得了广泛的分类单元,并将这些数据与最近发表的形态学评分相结合,以进行基于简约的系统发育分析。从组合的28S rDNA和形态学数据集推断出的系统发育拓扑学支持短臂cer属单生和四个主要短臂cer属下足的单生,并暗示了与先前分类基本一致的关系。人们发现,对包括基底亚纲Stratiomyomorpha(士兵蝇和亲戚),Xylophagomorpha(xylophagid蝇)和Tabanomorpha(马蝇,狙击蝇和亲戚)的基底曲臂类进化支的支持不足。无论是否假设恒定的进化速率,都使用这种拓扑结构和类似的替代方案来获得发散时间的贝叶斯估计。估计的时间对于选择先前的分布是相对可靠的。基于28S rDNA的发散时间和一些化石约束条件表明,Brachycera起源于三叠纪晚期或最早的中生代,所有主要的Brachyceran下苍蝇谱系在开花植物(被子植物)起源之前的侏罗纪中期都接近于同期起源。 。这项研究提供了近距离分支的系统发育的解决方案,我们对蝇龄的修订估计应改善蝇类模型生物之间的进化推论和基因组比较的时间背景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号