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Ultrastructural and immunocytochemical investigation of acoel sperms with 9 + 1 axoneme structure: new sperm characters for unraveling phylogeny in Acoela

机译:具有9 + 1轴突素结构的Acoel精子的超微结构和免疫细胞化学研究:Acoela揭示系统发育的新精子特征

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摘要

Acoel sperm characters proved useful in deciphering acoel taxonomy. The phylogenetic value of sperm characters in closely related sub-groups or in a monophyletic taxon has not yet been assessed. We have investigated sperm ultrastructure in seven members of the monophyletic taxon Childia sensu (Tekle et al. J Zool Sys Evol Res 43(1):72–90, 2005) and in their closest relatives, the Mecynostomidae (four taxa). All members of Childia examined show little variation in their sperm ultrastructure. The common characters of Childia taxa are: 9 + 1 axoneme structure, the presence of six distal cytoplasmic microtubules in the absence of axial or cortical ones, long nucleus and extensive nucleus–flagella overlap. We have identified a new set of cytoplasmic microtubules lying in the centriolar end of the sperm cell, distal microtubules. The origin and phylogenetic significance of this character is discussed. The types and arrangement of cytoplasmic granules could be used as phylogenetic characters at a low taxonomic level. A loose membrane amorphous core type of granule was found to be a synapomorphy for the following clade within the taxon Childia: C. crassum + C. groenlandica + C. vivipara + C. brachyposthium + C. macroposthium. Sausage shaped granules are plesiomorphic among the taxa examined. The rest of the granule characters were found to be homoplasious. Sperm ultrastructural characters have again proven their concordance with molecular phylogeny. The only morphological synapomorphies known for the sister taxa Childia–Mecynostomidae, in the molecular phylogeny, are characters derived from sperm ultrastructure: distal microtubules arranged in two groups of three microtubules each and a 9 + 1 axoneme structure. The spermatozoa of Childia and Mecynostomidae show 9 + 1 axoneme configuration, seemingly similar to the 9 + ‘1’ axoneme pattern of the Platyhelminthes—Trepaxonemata. Using electron-microscope immunocytochemistry, we have demonstrated that, unlike the central cylinder of trepaxonematans, the central cylinder of the 9 + 1 axonemal pattern in acoels is immunoreactive to tubulin and contains a single central microtubule. Therefore, the 9 + 1 patterns in acoels and trepaxonematans are homoplasious.
机译:事实证明,Acoel精子特征可用于解密Acoel分类。尚未评估紧密相关的亚组或单系统分类群中精子特征的系统发育价值。我们研究了单系统分类群Childia sensu的七个成员(Tekle等人,J Zool Sys Evol Res 43(1):72–90,2005)及其近亲中的Mecynostomidae(四个分类群)的精子超微结构。所有接受检查的Childia成员的精子超微结构均无变化。 Childia类群的共同特征是:9 + 1轴突结构,在不存在轴向或皮质的情况下,存在六个远端细胞质微管,长核和广泛的核-鞭毛重叠。我们已经发现了一组位于精子细胞中心端的新细胞质微管,即远端微管。讨论了该特征的起源和系统发育意义。细胞质颗粒的类型和排列可以作为低分类学水平的系统发育特征。发现一个松散的膜无定形核心类型的颗粒是分类器Childia中以下进化枝的突触同形体:景天梭菌+罗汉果梭菌+胎盘梭菌+短螺旋梭菌+大梭菌。香肠状颗粒在检查的类群中是多形的。发现其余的颗粒特征是同质的。精子的超微结构特征再次证明了它们与分子系统发育的一致性。在分子系统发育上,姊妹分类为Childia–Mecynostomidae的唯一形态突触是精子超微结构的特征:远端微管分为两组,每组三个,每个微管具有9 + 1轴突结构。 Childia和Mecynostomidae的精子显示9 + 1的轴突构型,似乎与侧柏(Trepaxonemata)的9 + -1的轴突模式相似。使用电子显微镜免疫细胞化学,我们已经证明,与曲霉酮的中央圆柱体不同,a突中9 +1轴突模式的中央圆柱体对微管蛋白具有免疫反应性,并且包含单个中央微管。因此,acoels和trepaxonematans中的9 +1模式是同质的。

著录项

  • 来源
    《Zoomorphology》 |2007年第1期|1-16|共16页
  • 作者单位

    Department of Systematic Zoology Evolutionary Biology Centre Uppsala University Norbyvägen 18D 75236 Uppsala Sweden;

    Department of Systematic Zoology Evolutionary Biology Centre Uppsala University Norbyvägen 18D 75236 Uppsala Sweden;

    Department of Systematic Zoology Evolutionary Biology Centre Uppsala University Norbyvägen 18D 75236 Uppsala Sweden;

    Department of Systematic Zoology Evolutionary Biology Centre Uppsala University Norbyvägen 18D 75236 Uppsala Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acoela; Ultrastructure; Immunocytochemistry; Cytoplasmic microtubules; Flagella;

    机译:Acoela;超微结构;免疫细胞化学;细胞质微管;小鳞片;

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