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实验室维持和培养线虫诱捕真菌少孢节丛孢。

Laboratory Maintenance and Culturing of the Nematode-Trapping Fungus Arthrobotrys oligospora.

机构信息

Institute of Molecular Biology, Academia Sinica, Nangang, Taipei, Taiwan.

出版信息

Curr Protoc. 2021 Feb;1(2):e41. doi: 10.1002/cpz1.41.

Abstract

Nematode-trapping fungi (NTF) and nematodes are common and sympatric in nature. The molecular basis that underlies this interkingdom predator-prey interaction remains largely uncharacterized. Both NTF and nematodes can be easily isolated from soil samples. NTF do not form traps in nutrient-rich environments, yet trap morphogenesis can be observed under nutrient-poor conditions and upon simultaneous sensing of the nematode cues. Here, we present protocols for laboratory maintenance and culturing of the model NTF Arthrobotrys oligospora. © 2021 Wiley Periodicals LLC. Basic Protocol 1: Growth of nematode-trapping fungi on solid medium Basic Protocol 2: Growth of nematode-trapping fungi in liquid medium Basic Protocol 3: Collection of conidia from solid medium Support Protocol 1: Preparation of Miracloth filter funnel Basic Protocol 4: Induction of trap morphogenesis Alternate Protocol: Quantitative measurement of trap induction Support Protocol 2: Preparation of synchronized C. elegans L4 Basic Protocol 5: Establishing C. elegans survival rate upon exposure to A. oligospora Basic Protocol 6: Storage of nematode-trapping fungi strains.

摘要

线虫诱捕真菌 (NTF) 和线虫在自然界中很常见且共生。这种跨界捕食者-猎物相互作用的分子基础在很大程度上仍未被描述。NTF 和线虫都可以很容易地从土壤样本中分离出来。在营养丰富的环境中,NTF 不会形成陷阱,但在营养贫瘠的条件下,并且同时感知线虫线索时,可以观察到陷阱形态发生。在这里,我们提供了用于实验室维持和培养模型 NTF Arthrobotrys oligospora 的方案。©2021 年威立出版社。基础方案 1:在固体培养基上生长线虫诱捕真菌 基础方案 2:在液体培养基中生长线虫诱捕真菌 基础方案 3:从固体培养基中收集分生孢子 支持方案 1:Miracloth 过滤漏斗的制备 基础方案 4:诱捕形态发生的诱导 备选方案:诱捕诱导的定量测量 支持方案 2:同步 C. elegans L4 的制备 基础方案 5:暴露于 A. oligospora 后 C. elegans 存活率的建立 基础方案 6:线虫诱捕真菌株的储存。

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