首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Hearing in Drosophila: development of Johnston's organ and emerging parallels to vertebrate ear development.
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Hearing in Drosophila: development of Johnston's organ and emerging parallels to vertebrate ear development.

机译:果蝇中的听力:约翰斯顿氏器官的发育以及与脊椎动物耳朵发育相似的新出现。

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摘要

In this review, I describe recent progress toward understanding the developmental genetics governing formation of the Drosophila auditory apparatus. The Drosophila auditory organ, Johnston's organ, is housed in the antenna. Intriguingly, key genes needed for specification or function of auditory cell types in the Drosophila antenna also are required for normal development or function of the vertebrate ear. These genes include distal-less, spalt and spalt-related, atonal, crinkled, nanchung and inactive, and prestin, and their vertebrate counterparts Dlx, spalt-like (sall), atonal homolog (ath), myosin VIIA, TRPV, and prestin, respectively. In addition, Drosophila auditory neurons recently were shown to serve actuating as well as transducing roles, much like their hair cell counterparts of the vertebrate cochlea. The emerging genetic and physiologic parallels have come as something of a surprise, because conventional wisdom holds that vertebrate and invertebrate hearing organs have separate evolutionaryorigins. The new findings raise the possibility that auditory organs are more ancient than previously thought and indicate that Drosophila is likely to be a powerful model system in which to gain insights regarding the etiologies of human deafness disorders.
机译:在这篇综述中,我描述了最近了解控制果蝇听觉器官形成的发育遗传学的进展。果蝇的听觉器官,约翰斯顿的器官,被容纳在天线中。有趣的是,果蝇触角中听觉细胞类型的规范或功能所需的关键基因对于脊椎动物耳朵的正常发育或功能也是必需的。这些基因包括无远端,与花lt和花spa相关的,无融合的,皱纹的,短毛的和不活跃的,以及prestin,以及它们的脊椎动物对应物Dlx,类似于spalt的(小),无音同系物(ath),肌球蛋白VIIA,TRPV和prestin , 分别。此外,果蝇听神经元最近被证明具有激活和转导作用,非常类似于脊椎动物耳蜗的毛细胞。新兴的遗传和生理学相似之处令人惊讶,因为传统观点认为脊椎动物和无脊椎动物的听觉器官具有不同的进化起源。新发现增加了听觉器官比以前认为的更古老的可能性,并表明果蝇可能是一个强大的模型系统,可在其中获得有关人类耳聋疾病病因的见识。

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