藻藻生殖发育的进化。

Sexual Plant Reproduction Pub Date : 2011-06-01 Epub Date: 2010-12-21 DOI:10.1007/s00497-010-0158-4
Armin Hallmann
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引用次数: 79

摘要

多细胞生物的进化、生殖细胞与不育体细胞的分离以及雌雄分化的产生无疑是真核生物最伟大的创新之一。值得注意的是,系统发育分析表明,从简单到复杂,分化的多细胞生物的转变并不是生命进化中的一个独特进程,而是一个相当频繁的事件。球形绿藻Volvox及其近亲volvocine藻,跨越了组织复杂性的全部范围,从单细胞和殖民地属到多细胞属,具有完整的胚体分工和雌雄二分法;因此,这些藻类是理想的模式生物,用于解决与向多细胞过渡有关的基本问题,并用于发现表征这种过渡的普遍规则。在所有现存的物种中,Volvox carteri代表了产生特化体细胞的不朽生殖系的最简单版本。这种细胞特化涉及到死亡的出现和在这个谱系的进化中产生的第一个死去的祖先。因此,藻藻例证了细胞合作从细胞自主进化而来。它们也是通过几个连续的小步骤进化出复杂特征的一个主要例子。因此,我们从藻藻中了解到,向复杂的多细胞生命的进化过渡可能比通常认为的要容易得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evolution of reproductive development in the volvocine algae.

Evolution of reproductive development in the volvocine algae.

Evolution of reproductive development in the volvocine algae.

Evolution of reproductive development in the volvocine algae.

The evolution of multicellularity, the separation of germline cells from sterile somatic cells, and the generation of a male-female dichotomy are certainly among the greatest innovations of eukaryotes. Remarkably, phylogenetic analysis suggests that the shift from simple to complex, differentiated multicellularity was not a unique progression in the evolution of life, but in fact a quite frequent event. The spheroidal green alga Volvox and its close relatives, the volvocine algae, span the full range of organizational complexity, from unicellular and colonial genera to multicellular genera with a full germ-soma division of labor and male-female dichotomy; thus, these algae are ideal model organisms for addressing fundamental issues related to the transition to multicellularity and for discovering universal rules that characterize this transition. Of all living species, Volvox carteri represents the simplest version of an immortal germline producing specialized somatic cells. This cellular specialization involved the emergence of mortality and the production of the first dead ancestors in the evolution of this lineage. Volvocine algae therefore exemplify the evolution of cellular cooperation from cellular autonomy. They also serve as a prime example of the evolution of complex traits by a few successive, small steps. Thus, we learn from volvocine algae that the evolutionary transition to complex, multicellular life is probably much easier to achieve than is commonly believed.

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Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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