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Decision making in C. elegans chemotaxis to alkaline pH

机译:秀丽隐杆线虫趋化性至碱性pH的决策

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Monitoring of environmental and tissue pH is critical for animal survival. The nematode, Caenorhabditis elegans (C. elegans ), is attracted to mildly alkaline pH, but avoids strongly alkaline pH. However, little is known about how the behavioral switching or decision making occurs. Genetic dissection and Ca~(2+) imaging have previously demonstrated that ASEL and ASH are the major sensory neurons responsible for attraction and repulsion, respectively. Here we report that unlike C. elegans wild type, mutants deficient in ASEL or ASH were repelled by mildly alkaline pH, or were attracted to strongly alkaline pH, respectively. These results suggest that signals through ASEL and ASH compete to determine the animal’s alkaline-pH chemotaxis. Furthermore, mutants with 2 ASEL neurons were more efficiently attracted to mildly alkaline pH than the wild type with a single ASEL neuron, indicating that higher activity of ASEL induces stronger attraction to mildly alkaline pH. This stronger attraction was overridden by normal activity of ASH, suggesting that ASH-mediated avoidance dominates ASEL-mediated attraction. Thus, C. elegans chemotactic behaviors to alkaline pH seems to be determined by signal strengths from the sensory neurons ASEL and ASH, and the behavior decision making seems to be the result of competition between the 2 sensory neurons.
机译:监测环境和组织pH值对于动物生存至关重要。线虫秀丽隐杆线虫(秀丽隐杆线虫)被吸引至弱碱性pH,但避免强碱性pH。但是,对于如何进行行为切换或决策知之甚少。遗传解剖和Ca〜(2+)成像先前已证明ASEL和ASH是分别负责吸引和排斥的主要感觉神经元。在这里,我们报告与C不同。线虫野生型,ASEL或ASH缺陷型突变体分别被弱碱性pH排斥,或被强碱性pH吸引。这些结果表明,通过ASEL和ASH产生的信号竞争确定了动物的碱pH趋化性。此外,具有2个ASEL神经元的突变体比具有单个ASEL神经元的野生型更有效地吸引到弱碱性pH,这表明更高的ASEL活性诱导了对弱碱性pH的更强吸引力。这种更强的吸引力被ASH的正常活动所取代,这表明ASH介导的回避主导了ASEL介导的吸引力。因此,C。线虫对碱性pH的趋化行为似乎取决于感觉神经元ASEL和ASH的信号强度,而行为决策似乎是两个感觉神经元之间竞争的结果。

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