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Drosophila tracks carbon dioxide in flight.果蝇在飞行中追踪二氧化碳。
Curr Biol. 2013 Feb 18;23(4):301-6. doi: 10.1016/j.cub.2012.12.038. Epub 2013 Jan 24.
2
The belly rules the nose: feeding state-dependent modulation of peripheral chemosensory responses.腹主导鼻:进食状态依赖的外周化学感觉反应调制。
Curr Opin Neurobiol. 2013 Feb;23(1):68-75. doi: 10.1016/j.conb.2012.08.001. Epub 2012 Aug 29.
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Chemosensory behaviors of parasites.寄生虫的化学感觉行为。
Trends Parasitol. 2012 Oct;28(10):427-36. doi: 10.1016/j.pt.2012.07.004. Epub 2012 Aug 24.
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Olfaction shapes host-parasite interactions in parasitic nematodes.嗅觉塑造寄生线虫的宿主-寄生虫相互作用。
Proc Natl Acad Sci U S A. 2012 Aug 28;109(35):E2324-33. doi: 10.1073/pnas.1211436109. Epub 2012 Jul 31.
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Population dynamics and habitat sharing of natural populations of Caenorhabditis elegans and C. briggsae.秀丽隐杆线虫和粗糙链孢菌自然种群的种群动态和栖息地共享。
BMC Biol. 2012 Jun 25;10:59. doi: 10.1186/1741-7007-10-59.
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A single gene target of an ETS-family transcription factor determines neuronal CO2-chemosensitivity.一个 ETS 家族转录因子的单一基因靶标决定了神经元的 CO2 化学敏感性。
PLoS One. 2012;7(3):e34014. doi: 10.1371/journal.pone.0034014. Epub 2012 Mar 29.
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The structure of the nervous system of the nematode Caenorhabditis elegans.秀丽隐杆线虫的神经系统结构。
Philos Trans R Soc Lond B Biol Sci. 1986 Nov 12;314(1165):1-340. doi: 10.1098/rstb.1986.0056.
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Path integration controls nest-plume following in desert ants.路径整合控制沙漠蚂蚁的巢羽追随行为。
Curr Biol. 2012 Apr 10;22(7):645-9. doi: 10.1016/j.cub.2012.02.029. Epub 2012 Mar 8.
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Tonic signaling from O₂ sensors sets neural circuit activity and behavioral state.O₂ 感受器的紧张性信号调节神经回路活动和行为状态。
Nat Neurosci. 2012 Mar 4;15(4):581-91. doi: 10.1038/nn.3061.
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Neuronal and molecular substrates for optimal foraging in Caenorhabditis elegans.秀丽隐杆线虫最优觅食的神经元和分子基础。
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氧感应神经元控制秀丽隐杆线虫的二氧化碳反应。

O2-sensing neurons control CO2 response in C. elegans.

机构信息

Department of Microbiology, Immunology, and Molecular Genetics, University of California, Los Angeles, Los Angeles, California 90095, USA.

出版信息

J Neurosci. 2013 Jun 5;33(23):9675-83. doi: 10.1523/JNEUROSCI.4541-12.2013.

DOI:10.1523/JNEUROSCI.4541-12.2013
PMID:23739964
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3721734/
Abstract

Sensory behaviors are often flexible, allowing animals to generate context-appropriate responses to changing environmental conditions. To investigate the neural basis of behavioral flexibility, we examined the regulation of carbon dioxide (CO2) response in the nematode Caenorhabditis elegans. CO2 is a critical sensory cue for many animals, mediating responses to food, conspecifics, predators, and hosts (Scott, 2011; Buehlmann et al., 2012; Chaisson and Hallem, 2012). In C. elegans, CO2 response is regulated by the polymorphic neuropeptide receptor NPR-1: animals with the N2 allele of npr-1 avoid CO2, whereas animals with the Hawaiian (HW) allele or an npr-1 loss-of-function (lf) mutation appear virtually insensitive to CO2 (Hallem and Sternberg, 2008; McGrath et al., 2009). Here we show that ablating the oxygen (O2)-sensing URX neurons in npr-1(lf) mutants restores CO2 avoidance, suggesting that NPR-1 enables CO2 avoidance by inhibiting URX neurons. URX was previously shown to be activated by increases in ambient O2 (Persson et al., 2009; Zimmer et al., 2009; Busch et al., 2012). We find that, in npr-1(lf) mutants, O2-induced activation of URX inhibits CO2 avoidance. Moreover, both HW and npr-1(lf) animals avoid CO2 under low O2 conditions, when URX is inactive. Our results demonstrate that CO2 response is determined by the activity of O2-sensing neurons and suggest that O2-dependent regulation of CO2 avoidance is likely to be an ecologically relevant mechanism by which nematodes navigate gas gradients.

摘要

感觉行为通常是灵活的,使动物能够针对不断变化的环境条件产生适当的反应。为了研究行为灵活性的神经基础,我们研究了线虫秀丽隐杆线虫中二氧化碳(CO2)反应的调节。CO2 是许多动物的关键感觉提示,介导对食物、同种生物、捕食者和宿主的反应(Scott,2011;Buehlmann 等人,2012;Chaisson 和 Hallem,2012)。在秀丽隐杆线虫中,CO2 反应受多态神经肽受体 NPR-1 的调节:具有 npr-1 的 N2 等位基因的动物避免 CO2,而具有夏威夷(HW)等位基因或 npr-1 功能丧失(lf)突变的动物对 CO2 几乎不敏感(Hallem 和 Sternberg,2008;McGrath 等人,2009)。在这里,我们表明在 npr-1(lf)突变体中消融氧气(O2)感应 URX 神经元可恢复 CO2 回避,表明 NPR-1 通过抑制 URX 神经元来实现 CO2 回避。先前已显示 URX 被环境 O2 增加激活(Persson 等人,2009;Zimmer 等人,2009;Busch 等人,2012)。我们发现,在 npr-1(lf)突变体中,URX 的 O2 诱导激活抑制 CO2 回避。此外,HW 和 npr-1(lf)动物在低 O2 条件下也会避免 CO2,此时 URX 不活跃。我们的结果表明 CO2 反应由 O2 感应神经元的活性决定,并表明 O2 依赖的 CO2 回避调节可能是线虫在气体梯度中导航的一种生态相关机制。