Department of Biology, University of Maryland, College Park, Maryland 20742
Department of Biology, New York University, New York 10003.
Genetics. 2018 Oct;210(2):397-433. doi: 10.1534/genetics.118.300243.
Since the earliest days of research on nematodes, scientists have noted the developmental and morphological variation that exists within and between species. As various cellular and developmental processes were revealed through intense focus on , these comparative studies have expanded. Within the genus , they include characterization of intraspecific polymorphisms and comparisons of distinct species, all generally amenable to the same laboratory culture methods and supported by robust genomic and experimental tools. The paradigm has also motivated studies with more distantly related nematodes and animals. Combined with improved phylogenies, this work has led to important insights about the evolution of nematode development. First, while many aspects of development are representative of , and of terrestrial nematodes more generally, others vary in ways both obvious and cryptic. Second, the system has revealed several clear examples of developmental flexibility in achieving a particular trait. This includes developmental system drift, in which the developmental control of homologous traits has diverged in different lineages, and cases of convergent evolution. Overall, the wealth of information and experimental techniques developed in is being leveraged to make nematodes a powerful system for evolutionary cellular and developmental biology.
从最早对线虫的研究开始,科学家们就注意到了种内和种间存在的发育和形态变异。随着对这些细胞和发育过程的深入研究,这些比较研究得到了扩展。在属内,它们包括种内多态性的特征描述和不同物种的比较,所有这些通常都适用于相同的实验室培养方法,并得到强大的基因组和实验工具的支持。这一范例还激发了对亲缘关系更远的线虫和动物的研究。结合改进的系统发育,这项工作使人们对线虫发育的进化有了重要的认识。首先,虽然 发育的许多方面代表了陆地线虫更普遍的特征,但其他方面的变化既有明显的也有隐蔽的。其次,该系统揭示了在实现特定特征方面存在几种明显的发育灵活性的例子。这包括发育系统漂移,即同源特征的发育控制在不同谱系中已经分化,以及趋同进化的情况。总的来说,在 中开发的丰富信息和实验技术正在被利用,使线虫成为一个强大的进化细胞和发育生物学系统。