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Applying molecular and genetic methods to trees and their fungal communities

期刊

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
卷 107, 期 9, 页码 2783-2830

出版社

SPRINGER
DOI: 10.1007/s00253-023-12480-w

关键词

Holobiont; Conservation; Interaction; Genome; Sequencing

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Forests provide crucial services and are threatened by fragmentation, climate change, and pests. Fungi play a significant role in forest ecosystems, affecting the life of trees. Molecular and genetic methods have been used to study tree species, fungal communities, and their ecological functions, providing insights into adaptive traits, forest management, and breeding cycles.
Forests provide invaluable economic, ecological, and social services. At the same time, they are exposed to several threats, such as fragmentation, changing climatic conditions, or increasingly destructive pests and pathogens. Trees, the inherent species of forests, cannot be viewed as isolated organisms. Manifold (micro)organisms are associated with trees playing a pivotal role in forest ecosystems. Of these organisms, fungi may have the greatest impact on the life of trees. A multitude of molecular and genetic methods are now available to investigate tree species and their associated organisms. Due to their smaller genome sizes compared to tree species, whole genomes of different fungi are routinely compared. Such studies have only recently started in forest tree species. Here, we summarize the application of molecular and genetic methods in forest conservation genetics, tree breeding, and association genetics as well as for the investigation of fungal communities and their interrelated ecological functions. These techniques provide valuable insights into the molecular basis of adaptive traits, the impacts of forest management, and changing environmental conditions on tree species and fungal communities and can enhance tree-breeding cycles due to reduced time for field testing. It becomes clear that there are multifaceted interactions among microbial species as well as between these organisms and trees. We demonstrate the versatility of the different approaches based on case studies on trees and fungi.

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