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关于[具体物质1]与[具体物质2]之间相互作用的体外观察及其潜在的环境相关性。 (你提供的原文中“and”之间内容缺失,以上是按补充完整后的大致翻译)

In Vitro Observations of the Interactions between and and Its Potential Environmental Relevance.

作者信息

Raudabaugh Daniel B, Wells Daniel G, Matheny Patrick B, Hughes Karen W, Sargent Malcolm, Iturriaga Teresa, Miller Andrew N

机构信息

Illinois Natural History Survey, University of Illinois Urbana-Champaign, Champaign, IL 61820, USA.

Department of Environmental Engineering, Duke University, Durham, NC 27708, USA.

出版信息

Life (Basel). 2021 Jun 3;11(6):518. doi: 10.3390/life11060518.

Abstract

Wildfires play a critical role in maintaining biodiversity and shaping ecosystem structure in fire-prone regions, and successional patterns involving numerous plant and fungal species in post-fire events have been elucidated. Evidence is growing to support the idea that some post-fire fungi can form endophytic/endolichenic relationships with plants and lichens. However, no direct observations of fire-associated fungal-moss interactions have been visualized to date. Therefore, physical interactions between a post-fire fungus, , and a moss, , were visually examined under laboratory conditions. Fungal appressoria were visualized on germinating spores and living protonemata within two weeks of inoculation in most growth chambers. Appressoria were pigmented, reddish gold to braun, and with a penetration peg. Pigmented, reddish gold to braun fungal hyphae were associated with living tissue, and numerous mature rhizoids contained fungal hyphae at six months. Inter-rhizoidal hyphae were pigmented and reddish gold to braun, but no structures were visualized on mature gametophyte leaf or stem tissues. Based on our visual evidence and previous work, we provide additional support for having multiple strategies in how it obtains nutrients from the environment, and provide the first visual documentation of these structures in vitro.

摘要

野火在维护生物多样性和塑造易发生火灾地区的生态系统结构方面发挥着关键作用,并且涉及火灾后众多植物和真菌物种的演替模式已得到阐明。越来越多的证据支持这样一种观点,即一些火灾后的真菌可以与植物和地衣形成内生/地衣内共生关系。然而,迄今为止尚未观察到与火灾相关的真菌与苔藓之间的直接相互作用。因此,在实验室条件下对一种火灾后真菌( )与一种苔藓( )之间的物理相互作用进行了可视化检查。在大多数生长室中,接种后两周内,在萌发的孢子和活的原丝体上可观察到真菌附着胞。附着胞有色素沉着,呈红金色至棕色,并有一个侵入栓。有色素沉着、呈红金色至棕色的真菌菌丝与活组织相关联,并且在六个月时许多成熟的假根中含有真菌菌丝。假根间的菌丝有色素沉着,呈红金色至棕色,但在成熟的配子体叶或茎组织上未观察到任何结构。基于我们的直观证据和先前的研究,我们进一步支持了 在从环境中获取营养方面具有多种策略,并首次在体外对这些结构进行了直观记录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/796f/8227111/a7b2e99bd89f/life-11-00518-g001.jpg

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