RNA干扰支持Nanchung-Inactive在蟑螂,美洲大蠊,触觉棘的机械转导中的作用。

Q4 Neuroscience Invertebrate Neuroscience Pub Date : 2020-01-21 DOI:10.1007/s10158-019-0234-x
Anneka Hennenfent, Hongxia Liu, Päivi H Torkkeli, Andrew S French
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引用次数: 6

摘要

由nanchung, inactive, nompC和piezo基因编码的蛋白质在各种昆虫听觉神经元,伤害感受器和触觉感受器对机械力的初始检测中起着至关重要的作用。之前的大部分研究都是在果蝇的幼虫和成年果蝇上进行的。我们在美洲大蠊的转录组中鉴定并组装了所有四个同源基因。通过定量PCR (RT-qPCR)检测,将长双链RNA (dsRNA)注射到成虫腹部成功地降低了每个基因的表达。采用简单的电生理方法记录了蟑螂股触刺传入神经在标准机械步移时的动作电位放电。在注射后14天和21天,南涌敲低动物的反应与匹配的假注射动物相比显著降低,在21天时,无活性敲低动物的反应也相似。相比之下,nompC和压电敲除的响应没有变化。我们的研究结果支持了一个模型,在这个模型中,Nanchung蛋白和Inactive蛋白结合形成了蟑螂触觉脊柱机械转导机制的一部分。
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RNA interference supports a role for Nanchung-Inactive in mechanotransduction by the cockroach, Periplaneta americana, tactile spine.

Proteins encoded by nanchung, inactive, nompC and piezo genes have been shown to play crucial roles in the initial detection of mechanical force by various insect auditory neurons, nociceptors and touch receptors. Most of this previous research has been performed on the larval and adult fruit fly, Drosophila melanogaster. We identified and assembled all four homologous genes in transcriptomes from the cockroach, Periplaneta americana. Injection of long double-stranded RNA (dsRNA) into the adult cockroach abdomen successfully reduced the expression of each gene, as measured by quantitative PCR (RT-qPCR). A simple electrophysiological assay was used to record action potential firing in afferent nerves of cockroach femoral tactile spines in response to a standardized mechanical step displacement. Responses of nanchung knockdown animals were significantly reduced compared to matched sham-injected animals at 14 and 21 days after injection, and inactive knockdowns similarly at 21 days. In contrast, responses of nompC and piezo knockdowns were unchanged. Our results support a model in which Nanchung and Inactive proteins combine to form a part of the mechanotransduction mechanism in the cockroach tactile spine.

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来源期刊
Invertebrate Neuroscience
Invertebrate Neuroscience NEUROSCIENCES-
自引率
0.00%
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审稿时长
>12 weeks
期刊介绍: Invertebrate Neurosciences publishes peer-reviewed original articles, reviews and technical reports describing recent advances in the field of invertebrate neuroscience. The journal reports on research that exploits the simplicity and experimental tractability of the invertebrate preparations to underpin fundamental advances in neuroscience. Articles published in Invertebrate Neurosciences serve to highlight properties of signalling in the invertebrate nervous system that may be exploited in the field of antiparisitics, molluscicides and insecticides. Aspects of particular interest include: Functional analysis of the invertebrate nervous system; Molecular neuropharmacology and toxicology; Neurogenetics and genomics; Functional anatomy; Neurodevelopment; Neuronal networks; Molecular and cellular mechanisms of behavior and behavioural plasticity.
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