Forest floor nematode communities and associated tree canopies: Is there an ecological linkage?

IF 9.8 1区 农林科学 Q1 SOIL SCIENCE Soil Biology & Biochemistry Pub Date : 2024-09-16 DOI:10.1016/j.soilbio.2024.109592
Dan Gafta , Marcel Ciobanu , Adrian-Ilie Stoica
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Abstract

We searched for patterns supporting the hypothesis of compositional and functional linkage between forest floor nematode communities and dominant tree canopies, while controlling for some relevant soil and climate variables. Twenty-one forest sampling sites scattered throughout the South-Eastern Carpathian basin were selected under spruce, beech, and hornbeam-oak canopies. The relative contribution of forest canopy type to nematode assemblage differentiation was estimated through nematode taxonomic composition and feeding guild structure. The forest canopy type had a significant effect on nematode taxon/feeding guild composition and diversity at stand level. Several (diagnostic) nematode taxa and feeding guilds were positively associated with and accurately predicted the forest canopy types considered. Apart from the herbivorous nematodes, all the other trophic guilds were significantly related, in terms of their relative abundance, to the forest canopy type. Both nematode taxonomic and trophic diversity were significantly higher under beech canopy compared with its two counterparts. The highest total nematode beta diversity, either taxonomic or trophic, was attained between hornbeam-oak and spruce canopies. Nematode taxonomic and trophic beta diversity between forest canopy types were largely determined by taxon replacement and respectively, by a nested trophic structure. Overall, four concordant and two discordant patterns were revealed between nematode taxon and feeding guild composition with respect to overlying forest canopy, all underpinning the addressed ecological linkage. The present results bring evidence regarding the important contribution of the forest canopy, along with climatic variables, in driving the taxonomic and functional composition/diversity of nematode communities from the soil organic horizon.

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林地线虫群落与相关树冠:是否存在生态联系?
我们在控制一些相关土壤和气候变量的情况下,寻找支持林地线虫群落与优势树冠之间构成和功能联系假设的模式。在云杉、山毛榉和角豆-栎树树冠下选择了 21 个森林采样点,这些采样点散布在喀尔巴阡山盆地东南部。通过线虫分类组成和取食行会结构,估算了森林冠层类型对线虫组合分化的相对贡献。在林分水平上,林冠类型对线虫分类群/取食行会的组成和多样性有显著影响。一些(诊断性)线虫类群和取食类群与所考虑的森林冠层类型呈正相关,并能准确预测。除食草线虫外,所有其他营养类群的相对丰度都与森林冠层类型有显著关系。在山毛榉冠层下,线虫的分类和营养多样性都明显高于其他两种冠层类型。线虫总的贝塔多样性(无论是分类学还是营养学)在黄杨-橡树和云杉树冠之间达到最高。森林树冠类型之间线虫分类学和营养学的贝塔多样性在很大程度上是由分类群的替换和嵌套营养结构分别决定的。总体而言,线虫类群和取食行会组成与上覆林冠层之间存在四种一致模式和两种不一致模式,这些模式都是生态联系的基础。本研究结果证明,森林冠层与气候变量一起,在推动土壤有机层线虫群落的分类和功能组成/多样性方面发挥了重要作用。
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来源期刊
Soil Biology & Biochemistry
Soil Biology & Biochemistry 农林科学-土壤科学
CiteScore
16.90
自引率
9.30%
发文量
312
审稿时长
49 days
期刊介绍: Soil Biology & Biochemistry publishes original research articles of international significance focusing on biological processes in soil and their applications to soil and environmental quality. Major topics include the ecology and biochemical processes of soil organisms, their effects on the environment, and interactions with plants. The journal also welcomes state-of-the-art reviews and discussions on contemporary research in soil biology and biochemistry.
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