Idiosyncratic responses to biotic and environmental filters in wood-inhabiting fungal communities

IF 4.3 2区 环境科学与生态学 Q1 ECOLOGY
Ecology Pub Date : 2025-02-12 DOI:10.1002/ecy.70013
Sonja Saine, Reijo Penttilä, Tadashi Fukami, Brendan Furneaux, Tuija Hytönen, Otto Miettinen, Norman Monkhouse, Raisa Mäkipää, Jorma Pennanen, Evgeny V. Zakharov, Otso Ovaskainen, Nerea Abrego
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引用次数: 0

Abstract

Quantification of different processes affecting the assembly of ecological communities remains challenging, especially in species-rich communities. While the role of environmental filtering has generally been well established, fewer studies have experimentally shown how other ecological assembly processes, such as biotic filtering, structure species-rich communities. Here, we studied the relative roles of biotic and environmental filtering in the colonization of wood-inhabiting fungi, a species-rich, highly interactive, and environment-sensitive group of species. We conducted a field experiment where we simulated colonization with inoculations of nine fungal species in habitat patches (i.e., logs) with varying biotic and abiotic conditions. We characterized the local resident communities before the inoculations and the colonization success of the inoculated species after one and two years using DNA metabarcoding. We asked what determined the colonization success of the inoculated species by comparing the predictive performance of alternative models. These models included either only abiotic environmental predictors (i.e., physical log properties) or additionally different aspects of the resident fungal communities (i.e., resident fungal species richness, community composition, and DNA amount) as biotic predictors. While all nine species successfully colonized the logs, the rate of success and the factors explaining their colonization success varied among species. The colonization success of four of the inoculated species was explained mostly by the abiotic environmental variables, while the colonization success of three species was additionally explained by the resident communities. The influential biotic predictors varied from the presence of individual species to the collective presence of multiple species. Finally, for two of the inoculated species, all the models showed poor predictive performance. Our results indicate how environmental and biotic filtering may jointly structure species-rich communities. Overall, the results show that species vary idiosyncratically in their response to biotic and environmental factors, highlighting the need to consider the complexity of species-level responses when predicting community-level changes.

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木材真菌群落对生物和环境过滤器的特殊反应
量化影响生态群落聚集的不同过程仍然具有挑战性,特别是在物种丰富的群落中。虽然环境过滤的作用通常已经很好地确立,但很少有研究通过实验表明其他生态组装过程,如生物过滤,如何构建物种丰富的群落。在这里,我们研究了生物和环境过滤在木材真菌定植中的相对作用,真菌是一种物种丰富、高度相互作用和环境敏感的物种群。我们进行了一项野外实验,在不同的生物和非生物条件下,我们模拟了9种真菌在栖息地斑块(即原木)上的定植。我们利用DNA元条形码技术对接种前的当地居民社区和接种后1年和2年的定殖成功进行了表征。我们通过比较不同模型的预测性能,询问是什么决定了接种物种的定植成功。这些模型要么只包括非生物环境预测因子(即物理对数属性),要么额外包括常驻真菌群落的不同方面(即常驻真菌物种丰富度、群落组成和DNA数量)作为生物预测因子。虽然所有九个物种都成功地在原木上定居,但成功率和解释其定居成功的因素因物种而异。4种接种种的定殖成功主要由非生物环境变量解释,3种接种种的定殖成功主要由居住群落解释。有影响的生物预测因子从单个物种的存在到多个物种的集体存在各不相同。最后,对于其中两个接种种,所有模型的预测性能都较差。我们的研究结果表明,环境和生物过滤可能共同构建物种丰富的群落。总体而言,研究结果表明,物种对生物和环境因素的响应具有特异性,这表明在预测群落水平变化时需要考虑物种水平响应的复杂性。
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来源期刊
Ecology
Ecology 环境科学-生态学
CiteScore
8.30
自引率
2.10%
发文量
332
审稿时长
3 months
期刊介绍: Ecology publishes articles that report on the basic elements of ecological research. Emphasis is placed on concise, clear articles documenting important ecological phenomena. The journal publishes a broad array of research that includes a rapidly expanding envelope of subject matter, techniques, approaches, and concepts: paleoecology through present-day phenomena; evolutionary, population, physiological, community, and ecosystem ecology, as well as biogeochemistry; inclusive of descriptive, comparative, experimental, mathematical, statistical, and interdisciplinary approaches.
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