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果蝇对气味剂的行为反应需要β整合素基因肌球样蛋白在神经系统中表达。

Behavioral responses to odorants in drosophila require nervous system expression of the beta integrin gene myospheroid.

作者信息

Bhandari Poonam, Gargano Julia Warner, Goddeeris Matthew M, Grotewiel Michael S

机构信息

Department of Human Genetics, Virginia Commonwealth University, Richmond, 23298, USA.

出版信息

Chem Senses. 2006 Sep;31(7):627-39. doi: 10.1093/chemse/bjl002. Epub 2006 Jun 8.

DOI:10.1093/chemse/bjl002
PMID:16763085
Abstract

Integrins are cell adhesion molecules that mediate numerous developmental processes in addition to a variety of acute physiological events. Two reports implicate a Drosophila beta integrin, betaPS, in olfactory behavior. To further investigate the role of integrins in Drosophila olfaction, we used Gal4-driven expression of RNA interference (RNAi) transgenes to knock down expression of myospheroid (mys), the gene that encodes betaPS. Expression of mys-RNAi transgenes in the wing reduced betaPS immunostaining and produced morphological defects associated with loss-of-function mutations in mys, demonstrating that this strategy knocked down mys function. Expression of mys-RNAi transgenes in the antennae, antennal lobes, and mushroom bodies via two Gal4 lines, H24 and MT14, disrupted olfactory behavior but did not alter locomotor abilities or central nervous system structure. Olfactory behavior was normal in flies that expressed mys-RNAi transgenes via other Gal4 lines that specifically targeted the antennae, the projection neurons, the mushroom bodies, bitter and sweet gustatory neurons, or Pox neuro neurons. Our studies confirm that mys is important for the development or function of the Drosophila olfactory system. Additionally, our studies demonstrate that mys is required for normal behavioral responses to both aversive and attractive odorants. Our results are consistent with a model in which betaPS mediates events within the antennal lobes that influence odorant sensitivity.

摘要

整合素是细胞黏附分子,除了介导各种急性生理事件外,还介导众多发育过程。两项报告表明果蝇的一种β整合素βPS参与嗅觉行为。为了进一步研究整合素在果蝇嗅觉中的作用,我们利用Gal4驱动的RNA干扰(RNAi)转基因表达来敲低肌球样蛋白(mys)的表达,该基因编码βPS。在翅膀中表达mys-RNAi转基因可降低βPS免疫染色,并产生与mys功能丧失突变相关的形态缺陷,表明该策略敲低了mys功能。通过两条Gal4品系H24和MT14在触角、触角叶和蘑菇体中表达mys-RNAi转基因,破坏了嗅觉行为,但未改变运动能力或中枢神经系统结构。通过其他专门针对触角、投射神经元、蘑菇体、苦味和甜味味觉神经元或痘神经神经元的Gal4品系表达mys-RNAi转基因的果蝇,其嗅觉行为正常。我们的研究证实,mys对果蝇嗅觉系统的发育或功能很重要。此外,我们的研究表明,mys是对厌恶和吸引性气味剂产生正常行为反应所必需的。我们的结果与一个模型一致,即βPS介导触角叶内影响气味剂敏感性的事件。

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