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利用CRISPR/Cas9技术鉴定机械感觉神经元发育和功能所需的基因。

Using CRISPR/Cas9 to identify genes required for mechanosensory neuron development and function.

作者信息

Johnson Christopher J, Kulkarni Akhil, Buxton William J, Hui Tsz Y, Kayastha Anusha, Khoja Alwin A, Leandre Joviane, Mehta Vanshika V, Ostrowski Logan, Pareizs Erica G, Scotto Rebecca L, Vargas Vanesa, Vellingiri Raveena M, Verzino Giulia, Vohra Rhea, Wakade Saurabh C, Winkeljohn Veronica M, Winkeljohn Victoria M, Rotterman Travis M, Stolfi Alberto

机构信息

Georgia Institute of Technology.

出版信息

bioRxiv. 2023 May 8:2023.05.08.539861. doi: 10.1101/2023.05.08.539861.

Abstract

Tunicates are marine, non-vertebrate chordates that comprise the sister group to the vertebrates. Most tunicates have a biphasic lifecycle that alternates between a swimming larva and a sessile adult. Recent advances have shed light on the neural basis for the tunicate larva's ability to sense a proper substrate for settlement and initiate metamorphosis. Work in the highly tractable laboratory model tunicate suggests that sensory neurons embedded in the anterior papillae of transduce mechanosensory stimuli to trigger larval tail retraction and initiate the process of metamorphosis. Here, we take advantage of the low-cost and simplicity of by using tissue-specific CRISPR/Cas9-mediated mutagenesis to screen for genes potentially involved in mechanosensation and metamorphosis, in the context of an undergraduate "capstone" research course. This small screen revealed at least one gene, , that appears crucial for the ability of the papillae to trigger metamorphosis. We also provide step-by-step protocols and tutorials associated with this course, in the hope that it might be replicated in similar CRISPR-based laboratory courses wherever are available.

摘要

被囊动物是海洋无脊椎脊索动物,是脊椎动物的姐妹类群。大多数被囊动物具有双相生命周期,在游泳幼虫和固着成体之间交替。最近的进展揭示了被囊动物幼虫感知合适的附着基质并启动变态的神经基础。在高度易处理的实验室模型被囊动物中的研究表明,嵌入前乳头的感觉神经元将机械感觉刺激转化为触发幼虫尾部收缩并启动变态过程。在这里,我们利用其低成本和简易性,在本科“顶点”研究课程的背景下,使用组织特异性CRISPR/Cas9介导的诱变来筛选可能参与机械感觉和变态的基因。这个小规模筛选揭示了至少一个基因,该基因似乎对乳头触发变态的能力至关重要。我们还提供了与本课程相关的分步方案和教程,希望在任何有可用的地方,类似的基于CRISPR的实验室课程中都能复制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94e5/10197531/3200a854961c/nihpp-2023.05.08.539861v1-f0001.jpg

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