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动物重力感知的遗传学

Genetics of graviperception in animals.

作者信息

Beckingham Kathleen M, Texada Michael J, Baker Dean A, Munjaal Ravi, Armstrong J Douglas

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, TX 77005, USA.

出版信息

Adv Genet. 2005;55:105-45. doi: 10.1016/S0065-2660(05)55004-1.

Abstract

Gravity is a constant stimulus for life on Earth and most organisms have evolved structures to sense gravitational force and incorporate its influence into their behavioral repertoire. Here we focus attention on animals and their diverse structures for perceiving and responding to the gravitational vector-one of the few static reference stimuli for any mobile organism. We discuss vertebrate, arthropod, and nematode models from the perspective of the role that genetics is playing in our understanding of graviperception in each system. We describe the key sensory structures in each class of organism and present what is known about the genetic control of development of these structures and the molecular signaling pathways operating in the mature organs. We also discuss the role of large genetic screens in identifying specific genes with roles in mechanosensation and graviperception.

摘要

重力是地球上生命的一种持续刺激因素,大多数生物体已经进化出能够感知重力并将其影响纳入其行为模式的结构。在这里,我们将注意力集中在动物及其感知和响应重力矢量的多样结构上——重力矢量是任何移动生物体为数不多的静态参考刺激之一。我们从遗传学在我们对每个系统重力感知的理解中所起的作用的角度,讨论脊椎动物、节肢动物和线虫模型。我们描述了每类生物体中的关键感觉结构,并介绍了关于这些结构发育的遗传控制以及成熟器官中运作的分子信号通路的已知情况。我们还讨论了大规模遗传筛选在识别在机械感觉和重力感知中起作用的特定基因方面的作用。

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