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秀丽隐杆线虫中的急性二氧化碳回避行为

Acute carbon dioxide avoidance in Caenorhabditis elegans.

作者信息

Hallem Elissa A, Sternberg Paul W

机构信息

Howard Hughes Medical Institute and Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Proc Natl Acad Sci U S A. 2008 Jun 10;105(23):8038-43. doi: 10.1073/pnas.0707469105. Epub 2008 Jun 4.

Abstract

Carbon dioxide is produced as a by-product of cellular respiration by all aerobic organisms and thus serves for many animals as an important indicator of food, mates, and predators. However, whether free-living terrestrial nematodes such as Caenorhabditis elegans respond to CO2 was unclear. We have demonstrated that adult C. elegans display an acute avoidance response upon exposure to CO2 that is characterized by the cessation of forward movement and the rapid initiation of backward movement. This response is mediated by a cGMP signaling pathway that includes the cGMP-gated heteromeric channel TAX-2/TAX-4. CO2 avoidance is modulated by multiple signaling molecules, including the neuropeptide Y receptor NPR-1 and the calcineurin subunits TAX-6 and CNB-1. Nutritional status also modulates CO2 responsiveness via the insulin and TGFbeta signaling pathways. CO2 response is mediated by a neural circuit that includes the BAG neurons, a pair of sensory neurons of previously unknown function. TAX-2/TAX-4 function in the BAG neurons to mediate acute CO2 avoidance. Our results demonstrate that C. elegans senses and responds to CO2 using multiple signaling pathways and a neural network that includes the BAG neurons and that this response is modulated by the physiological state of the worm.

摘要

所有需氧生物在细胞呼吸过程中都会产生二氧化碳,因此对许多动物来说,二氧化碳是食物、配偶和捕食者的重要指示物。然而,像秀丽隐杆线虫这样的自由生活的陆生线虫是否对二氧化碳有反应尚不清楚。我们已经证明,成年秀丽隐杆线虫在接触二氧化碳时会表现出急性回避反应,其特征是停止向前运动并迅速开始向后运动。这种反应由一个cGMP信号通路介导,该通路包括cGMP门控异源通道TAX-2/TAX-4。二氧化碳回避反应受到多种信号分子的调节,包括神经肽Y受体NPR-1以及钙调神经磷酸酶亚基TAX-6和CNB-1。营养状况也通过胰岛素和TGFβ信号通路调节对二氧化碳的反应性。二氧化碳反应由一个神经回路介导,该回路包括BAG神经元,这是一对功能此前未知的感觉神经元。TAX-2/TAX-4在BAG神经元中发挥作用,介导急性二氧化碳回避反应。我们的结果表明,秀丽隐杆线虫利用多种信号通路和一个包括BAG神经元的神经网络来感知和应对二氧化碳,并且这种反应受到线虫生理状态的调节。

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