动植物复杂发育的独立进化:深层同源性和横向基因转移。

IF 0.8 3区 生物学 Q4 CELL BIOLOGY
Development Genes and Evolution Pub Date : 2019-01-01 Epub Date: 2019-01-26 DOI:10.1007/s00427-019-00626-8
Aurora M Nedelcu
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引用次数: 0

摘要

多细胞生物的进化是表型趋同的一个主要例子:简单的多细胞生物多次独立进化,而复杂的多细胞表型在几个遥远的群体中被发现。此外,动物和植物谱系都独立地达到了形态、功能和发育复杂性的极端水平。本研究探讨了动物和绿色植物(即绿藻和陆生植物)谱系中复杂多细胞平行进化和发育的遗传基础。具体来说,该研究(i)确定了SAND结构域——在细胞增殖和分化调控中起重要作用的dna结合结构域,是动物、绿藻和陆地植物所特有的;(ii)表明,在相似的调节角色中,这一祖先域的平行部署可能促成了这些遥远群体复杂发展的独立进化。考虑到动物与绿色植物之间的深层差异,SAND结构域的有限分布最好的解释是从绿藻到早期后生动物的横向基因转移(LGT)事件。在藻藻复杂多细胞进化过程中,含有SAND的转录因子家族和动物进化早期出现的两种SAND蛋白所共享的序列基序的存在与这种情况是一致的。总的来说,这些发现表明:(1)除了参与相似表型的进化,深层同源序列也有助于形成遥远谱系中的平行进化轨迹;(2)LGT可以提供潜在同源序列的额外来源,这些序列可以发挥类似的作用,并影响远亲群体的进化潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Independent evolution of complex development in animals and plants: deep homology and lateral gene transfer.

The evolution of multicellularity is a premier example of phenotypic convergence: simple multicellularity evolved independently many times, and complex multicellular phenotypes are found in several distant groups. Furthermore, both animal and plant lineages have independently reached extreme levels of morphological, functional, and developmental complexity. This study explores the genetic basis for the parallel evolution of complex multicellularity and development in the animal and green plant (i.e., green algae and land plants) lineages. Specifically, the study (i) identifies the SAND domain-a DNA-binding domain with important roles in the regulation of cell proliferation and differentiation, as unique to animals, green algae, and land plants; and (ii) suggests that the parallel deployment of this ancestral domain in similar regulatory roles could have contributed to the independent evolution of complex development in these distant groups. Given the deep animal-green plant divergence, the limited distribution of the SAND domain is best explained by invoking a lateral gene transfer (LGT) event from a green alga to an early metazoan. The presence of a sequence motif specifically shared by a family of SAND-containing transcription factors involved in the evolution of complex multicellularity in volvocine algae and two types of SAND proteins that emerged early in the evolution of animals is consistent with this scenario. Overall, these findings imply that (i) in addition to be involved in the evolution of similar phenotypes, deep homologous sequences can also contribute to shaping parallel evolutionary trajectories in distant lineages, and (ii) LGT could provide an additional source of latent homologous sequences that can be deployed in analogous roles and affect the evolutionary potentials of distantly related groups.

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来源期刊
Development Genes and Evolution
Development Genes and Evolution 生物-发育生物学
CiteScore
4.30
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: Development Genes and Evolution publishes high-quality reports on all aspects of development biology and evolutionary biology. The journal reports on experimental and bioinformatics work at the systemic, cellular and molecular levels in the field of animal and plant systems, covering key aspects of the following topics: Embryological and genetic analysis of model and non-model organisms Genes and pattern formation in invertebrates, vertebrates and plants Axial patterning, embryonic induction and fate maps Cellular mechanisms of morphogenesis and organogenesis Stem cells and regeneration Functional genomics of developmental processes Developmental diversity and evolution Evolution of developmentally relevant genes Phylogeny of animals and plants Microevolution Paleontology.
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