Department of Zoology and Center for Genome Research and Biocomputing, Oregon State University, Corvallis, OR 97331, USA.
Mol Phylogenet Evol. 2011 Nov;61(2):584-92. doi: 10.1016/j.ympev.2011.07.007. Epub 2011 Jul 20.
The Phylum Nematoda has long been known to contain a great diversity of species that vary in reproductive mode, though our understanding of the evolutionary origins, causes and consequences of nematode reproductive mode change have only recently started to mature. Here we bring together and analyze recent progress on reproductive mode evolution throughout the phylum, resulting from the application of molecular phylogenetic approaches and newly discovered nematode species. Reproductive mode variation is reviewed in multiple free-living, animal-parasitic and plant-parasitic nematode groups. Discussion ranges from the model nematode Caenorhabditis elegans and its close relatives, to the plant-parasitic nematodes of the Meloidogyne genus where there is extreme variation in reproductive mode between and even within species, to the vertebrate-parasitic genus Strongyloides and related genera where reproductive mode varies across generations (heterogony). Multiple evolutionary transitions from dioecous (obligately outcrossing) to hermaphroditism and parthenogenesis in the phylum are discussed, along with one case of an evolutionary transition from hermaphroditism to doioecy in the Oscheius genus. We consider the roles of underlying genetic mechanisms in promoting reproductive plasticity in this phylum, as well as the potential evolutionary forces promoting transitions in reproductive mode.
门 Nematoda 长期以来一直被认为包含了大量具有不同生殖方式的物种,尽管我们对线虫生殖方式变化的进化起源、原因和后果的理解直到最近才开始成熟。在这里,我们汇集并分析了由于应用分子系统发育方法和新发现的线虫物种而在整个门中发生的生殖方式进化的最新进展。生殖方式的变化在多个自由生活、动物寄生和植物寄生线虫群中进行了综述。讨论范围从模式线虫秀丽隐杆线虫及其近缘种,到生殖方式在物种之间甚至在物种内部存在极端变异的植物寄生线虫属 Meloidogyne,再到生殖方式在几代之间(异配生殖)发生变化的脊椎动物寄生线虫属 Strongyloides 和相关属。讨论了门中从雌雄同体(强制异交)到雌雄同体和孤雌生殖的多次进化转变,以及 Oscheius 属从雌雄同体到雌雄同体的一次进化转变。我们考虑了在这个门中促进生殖可塑性的潜在遗传机制的作用,以及促进生殖方式转变的潜在进化力量。