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真菌网络中通过特化菌丝进行信号和养分的双向传递。

Bidirectional Propagation of Signals and Nutrients in Fungal Networks via Specialized Hyphae.

机构信息

Department of Biology, Institute of Microbiology, ETH Zürich, Zürich, Switzerland.

Department of Chemistry and Applied Biosciences, Institute for Chemical and Bioengineering, ETH Zürich, Zürich, Switzerland.

出版信息

Curr Biol. 2019 Jan 21;29(2):217-228.e4. doi: 10.1016/j.cub.2018.11.058. Epub 2019 Jan 3.

Abstract

Intercellular distribution of nutrients and coordination of responses to internal and external cues via endogenous signaling molecules are hallmarks of multicellular organisms. Vegetative mycelia of multicellular fungi are syncytial networks of interconnected hyphae resulting from hyphal tip growth, branching, and fusion. Such mycelia can reach considerable dimensions and, thus, different parts can be exposed to quite different environmental conditions. Our knowledge about the mechanisms by which fungal mycelia can adjust nutrient gradients or coordinate their defense response to fungivores is scarce, in part due to limitations in technologies currently available for examining different parts of a mycelium over longer time periods at the microscopic level. Here, we combined a tailor-made microfluidic platform with time-lapse fluorescence microscopy to visualize the dynamic response of the vegetative mycelium of a basidiomycete to two different stimuli. The microfluidic platform allows simultaneous monitoring at both the colony and single-hypha level. We followed the dynamics of the distribution of a locally administered nutrient analog and the defense response to spatially confined predation by a fungivorous nematode. Although both responses of the mycelium were constrained locally, we observed long-distance propagation for both the nutrient analog and defense response in a subset of hyphae. This propagation along hyphae occurred in both acropetal and basipetal directions and, intriguingly, the direction was found to alternate every 3 hr in an individual hypha. These results suggest that multicellular fungi have, as of yet, undescribed mechanisms to coordinate the distribution of nutrients and their behavioral response upon attack by fungivores.

摘要

细胞间营养物质的分布以及通过内源性信号分子协调对内外线索的反应是多细胞生物的特征。多细胞真菌的营养菌丝是由菌丝顶端生长、分支和融合形成的相互连接的菌丝的合胞体网络。这种菌丝可以达到相当大的尺寸,因此不同的部分可能暴露在截然不同的环境条件下。我们对真菌菌丝如何调整营养梯度或协调其防御反应以抵御真菌捕食者的机制知之甚少,部分原因是由于目前可用的技术限制,无法在微观水平上长时间检查菌丝的不同部分。在这里,我们结合了定制的微流控平台和延时荧光显微镜,可视化了担子菌营养菌丝对两种不同刺激的动态响应。微流控平台允许在菌落和单根菌丝水平上同时进行监测。我们跟踪了局部施用的营养类似物分布的动力学以及对真菌捕食线虫空间限制捕食的防御反应。尽管菌丝的这两种反应都受到局部限制,但我们观察到营养类似物和防御反应在一部分菌丝中沿长距离传播。这种沿菌丝的传播发生在向顶和向基方向,有趣的是,在单个菌丝中发现方向每隔 3 小时交替一次。这些结果表明,多细胞真菌具有尚未描述的机制来协调营养物质的分布及其在受到真菌捕食者攻击时的行为反应。

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