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头足类动物的Hox基因与形态新奇性的起源。

Cephalopod Hox genes and the origin of morphological novelties.

作者信息

Lee Patricia N, Callaerts Patrick, De Couet Heinz G, Martindale Mark Q

机构信息

Department of Zoology, University of Hawaii at Manoa, 2538 McCarthy Mall, Honolulu, Hawaii 96822, USA.

出版信息

Nature. 2003 Aug 28;424(6952):1061-5. doi: 10.1038/nature01872.

Abstract

Cephalopods are a diverse group of highly derived molluscs, including nautiluses, squids, octopuses and cuttlefish. Evolution of the cephalopod body plan from a monoplacophoran-like ancestor entailed the origin of several key morphological innovations contributing to their impressive evolutionary success. Recruitment of regulatory genes, or even pre-existing regulatory networks, may be a common genetic mechanism for generating new structures. Hox genes encode a family of transcriptional regulatory proteins with a highly conserved role in axial patterning in bilaterians; however, examples highlighting the importance of Hox gene recruitment for new developmental functions are also known. Here we examined developmental expression patterns for eight out of nine Hox genes in the Hawaiian bobtail squid Euprymna scolopes, by whole-mount in situ hybridization. Our data show that Hox orthologues have been recruited multiple times and in many ways in the origin of new cephalopod structures. The manner in which these genes have been co-opted during cephalopod evolution provides insight to the nature of the molecular mechanisms driving morphological change in the Lophotrochozoa, a clade exhibiting the greatest diversity of body plans in the Metazoa.

摘要

头足类动物是一群高度特化的软体动物,包括鹦鹉螺、鱿鱼、章鱼和乌贼。头足类动物的身体结构从类似单板纲动物的祖先演化而来,这一过程伴随着几项关键形态创新的出现,这些创新促成了它们令人瞩目的进化成功。调控基因甚至是预先存在的调控网络的招募,可能是产生新结构的常见遗传机制。Hox基因编码一类转录调控蛋白,在两侧对称动物的轴向模式形成中具有高度保守的作用;然而,也有一些例子突出了Hox基因招募对新发育功能的重要性。在这里,我们通过全胚胎原位杂交技术,研究了夏威夷短尾鱿鱼Euprymna scolopes中九个Hox基因中的八个基因的发育表达模式。我们的数据表明,Hox直系同源基因在新的头足类动物结构的起源过程中被多次以多种方式招募。这些基因在头足类动物进化过程中的被征用方式,为驱动冠轮动物形态变化的分子机制的本质提供了见解,冠轮动物是后生动物中身体结构多样性最大的一个类群。

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