Zhou Ying, Loeza-Cabrera Mario, Liu Zheng, Aleman-Meza Boanerges, Nguyen Julie K, Jung Sang-Kyu, Choi Yuna, Shou Qingyao, Butcher Rebecca A, Zhong Weiwei
Department of BioSciences, Rice University, Houston, Texas 77005.
Department of Chemistry, University of Florida, Gainesville, Florida 32611.
Genetics. 2017 Jul;206(3):1469-1478. doi: 10.1534/genetics.116.197293. Epub 2017 May 11.
It is crucial for animal survival to detect dangers such as predators. A good indicator of dangers is injury of conspecifics. Here we show that fluids released from injured conspecifics invoke acute avoidance in both free-living and parasitic nematodes. avoids extracts from closely related nematode species but not fruit fly larvae. The worm extracts have no impact on animal lifespan, suggesting that the worm extract may function as an alarm instead of inflicting physical harm. Avoidance of the worm extract requires the function of a cGMP signaling pathway that includes the cGMP-gated channel TAX-2/TAX-4 in the amphid sensory neurons ASI and ASK. Genetic evidence indicates that the avoidance behavior is modulated by the neurotransmitters GABA and serotonin, two common targets of anxiolytic drugs. Together, these data support a model that nematodes use a nematode-specific alarm pheromone to detect conspecific injury.
检测诸如捕食者等危险对于动物生存至关重要。同种个体受伤是危险的一个良好指标。在此我们表明,受伤同种个体释放的体液会引发自由生活线虫和寄生线虫的急性回避反应。[此处缺失主语,根据上下文推测可能是某种线虫]回避来自亲缘关系相近的线虫物种的提取物,但不回避果蝇幼虫的提取物。线虫提取物对动物寿命没有影响,这表明线虫提取物可能起到警报作用而非造成身体伤害。对该线虫提取物的回避需要一个cGMP信号通路发挥作用,该信号通路包括位于双凹感觉神经元ASI和ASK中的cGMP门控通道TAX - 2/TAX - 4。遗传学证据表明,回避行为受到神经递质γ-氨基丁酸(GABA)和血清素的调节,这两种物质是抗焦虑药物的常见作用靶点。总之,这些数据支持了一种模型,即线虫利用一种线虫特异性警报信息素来检测同种个体的受伤情况。