Phoronida—A small clade with a big role in understanding the evolution of lophophorates

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Ludwik Gąsiorowski
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Abstract

Phoronids, together with brachiopods and bryozoans, form the animal clade Lophophorata. Modern lophophorates are quite diverse—some can biomineralize while others are soft-bodied, they could be either solitary or colonial, and they develop through various eccentric larval stages that undergo different types of metamorphoses. The diversity of this clade is further enriched by numerous extinct fossil lineages with their own distinct body plans and life histories. In this review, I discuss how data on phoronid development, genetics, and morphology can inform our understanding of lophophorate evolution. The actinotrocha larvae of phoronids is a well documented example of intercalation of the new larval body plan, which can be used to study how new life stages emerge in animals with biphasic life cycle. The genomic and embryonic data from phoronids, in concert with studies of the fossil lophophorates, allow the more precise reconstruction of the evolution of lophophorate biomineralization. Finally, the regenerative and asexual abilities of phoronids can shed new light on the evolution of coloniality in lophophorates. As evident from those examples, Phoronida occupies a central role in the discussion of the evolution of lophophorate body plans and life histories.

Abstract Image

Abstract Image

噬菌目--一个小支系,但在了解噬孔动物的进化过程中发挥着重要作用。
噬孔动物与腕足动物和岩虫一起组成了噬孔动物支系。现代栉孔动物种类繁多--有的可以生物矿化,有的则是软体动物,它们可以是单生的,也可以是群生的,而且它们的幼虫发育阶段各不相同,会经历不同类型的变态。这一支系的多样性因众多已灭绝的化石种系而进一步丰富,这些化石种系具有各自不同的身体结构和生活史。在这篇综述中,我将讨论有关噬虫目发育、遗传学和形态学的数据如何帮助我们理解噬虫目的进化。法氏囊虫的actinotrocha幼虫是一个有据可查的新幼虫体型穿插实例,可用于研究具有双相生命周期的动物如何出现新的生命阶段。噬虫目动物的基因组和胚胎数据与对化石噬虫目动物的研究相结合,可以更精确地重建噬虫目动物生物矿化的演化过程。最后,噬菌体的再生能力和无性生殖能力可以为嗜叶虫的集落演化提供新的启示。从这些例子中可以看出,噬菌体在讨论噬菌体身体计划和生活史的进化中占据着核心地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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