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欧洲沿纬度梯度与石松(Lycopodium clavatum L.)和扁枝石松(Diphasiastrum complanatum (L.) Holub)相关的真菌群落生物地理学

Biogeography of Fungal Communities Associated with L. and (L.) H. Karst. along the Latitudinal Gradient in Europe.

作者信息

Mishcherikova Valeriia, Lynikienė Jūratė, Marčiulynas Adas, Gedminas Artūras, Prylutskyi Oleh, Marčiulynienė Diana, Menkis Audrius

机构信息

Institute of Forestry, Lithuanian Research Centre for Agriculture and Forestry, Liepų Str. 1, Girionys, 53101 Kaunas, Lithuania.

Department of Mycology and Plant Resistance, V.N. Karazin Kharkiv National University, Svobody Sq., 61022 Kharkiv, Ukraine.

出版信息

J Fungi (Basel). 2023 Aug 6;9(8):829. doi: 10.3390/jof9080829.

Abstract

We assessed the diversity and composition of fungal communities in different functional tissues and the rhizosphere soil of and stands along the latitudinal gradient of these tree species distributions in Europe to model possible changes in fungal communities imposed by climate change. For each tree species, living needles, shoots, roots, and the rhizosphere soil were sampled and subjected to high-throughput sequencing. Results showed that the latitude and the host tree species had a limited effect on the diversity and composition of fungal communities, which were largely explained by the environmental variables of each site and the substrate they colonize. The mean annual temperature and mean annual precipitation had a strong effect on root fungal communities, isothermality on needle fungal communities, mean temperature of the warmest quarter and precipitation of the driest month on shoot fungal communities, and precipitation seasonality on soil fungal communities. Fungal communities of both tree species are predicted to shift to habitats with a lower annual temperature amplitude and with increasing precipitation during the driest month, but the suitability of these habitats as compared to the present conditions is predicted to decrease in the future.

摘要

我们评估了欧洲这些树种分布沿纬度梯度的不同功能组织以及其根际土壤中真菌群落的多样性和组成,以模拟气候变化对真菌群落可能造成的变化。对于每个树种,采集了活针叶、嫩枝、根以及根际土壤,并进行高通量测序。结果表明,纬度和寄主树种对真菌群落的多样性和组成影响有限,其主要由每个地点的环境变量及其定殖的基质所解释。年平均温度和年平均降水量对根真菌群落影响强烈,等温性对针叶真菌群落影响强烈,最暖季度的平均温度和最干月份的降水量对嫩枝真菌群落影响强烈,降水季节性对土壤真菌群落影响强烈。预计这两个树种的真菌群落都将转移到年温度振幅较低且最干月份降水量增加的栖息地,但与当前条件相比,这些栖息地未来的适宜性预计会降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2870/10455207/5a5d4fd74d78/jof-09-00829-g001.jpg

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