Spatial resource arrangement influences both network structures and activity of fungal mycelia: A form of pattern recognition?

IF 1.9 3区 环境科学与生态学 Q3 ECOLOGY Fungal Ecology Pub Date : 2024-09-12 DOI:10.1016/j.funeco.2024.101387
Yu Fukasawa , Kosuke Hamano , Koji Kaga , Daisuke Akai , Takayuki Takehi
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Abstract

The present study investigated the behavior and wood decay ability of mycelial network of Phanerochaete velutina, a cord-forming fungus, on multiple wood blocks. We placed well-colonized wood blocks in two spatial arrangements (Circle and Cross) on a soil plate and compared the development of the mycelial network and wood decay over 116 days. In the Circle arrangement, the degree of connection (number of connected cords) of the blocks ranged from 0 to 8, with no significant differences observed across positions. However, in the Cross arrangement, the outer blocks exhibited a greater degree of connection than the inner blocks. The mass loss of the wood block was positively associated with the degree of connection and was significantly smaller in the Cross than in the Circle arrangement. These findings suggest that fungal mycelium can “recognize” the difference in the spatial arrangement of wood blocks as part of their wood decay activity.

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空间资源安排影响真菌菌丝体的网络结构和活动:一种模式识别形式?
本研究调查了脐带形成真菌 Phanerochaete velutina 的菌丝网络在多个木块上的行为和木材腐烂能力。我们将定殖好的木块以两种空间排列方式(环形和十字形)放置在土板上,并比较了 116 天内菌丝网络的发展和木材腐烂的情况。在环形排列中,木块的连接度(连接绳的数量)从 0 到 8 不等,不同位置之间没有观察到显著差异。然而,在 "十字 "排列中,外侧木块的连接程度高于内侧木块。木块的质量损失与连接程度呈正相关,在 "十字 "排列中明显小于 "圆环 "排列。这些研究结果表明,真菌菌丝可以 "识别 "木块空间排列的差异,这也是其木材腐烂活动的一部分。
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来源期刊
Fungal Ecology
Fungal Ecology 环境科学-生态学
CiteScore
5.80
自引率
3.40%
发文量
51
审稿时长
3 months
期刊介绍: Fungal Ecology publishes investigations into all aspects of fungal ecology, including the following (not exclusive): population dynamics; adaptation; evolution; role in ecosystem functioning, nutrient cycling, decomposition, carbon allocation; ecophysiology; intra- and inter-specific mycelial interactions, fungus-plant (pathogens, mycorrhizas, lichens, endophytes), fungus-invertebrate and fungus-microbe interaction; genomics and (evolutionary) genetics; conservation and biodiversity; remote sensing; bioremediation and biodegradation; quantitative and computational aspects - modelling, indicators, complexity, informatics. The usual prerequisites for publication will be originality, clarity, and significance as relevant to a better understanding of the ecology of fungi.
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