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应用分子和遗传方法于树木及其真菌群落。

Applying molecular and genetic methods to trees and their fungal communities.

机构信息

Forest Genetics and Forest Tree Breeding, Faculty for Forest Sciences and Forest Ecology, University of Goettingen, Büsgenweg 2, 37077, Göttingen, Germany.

Center for Integrated Breeding Research (CiBreed), University of Goettingen, 37073, Göttingen, Germany.

出版信息

Appl Microbiol Biotechnol. 2023 May;107(9):2783-2830. doi: 10.1007/s00253-023-12480-w. Epub 2023 Mar 29.

Abstract

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. KEY POINTS: • Current knowledge of genetic methods applied to forest trees and associated fungi. • Genomic methods are essential in conservation, breeding, management, and research. • Important role of phytobiomes for trees and their ecosystems.

摘要

森林提供了无价的经济、生态和社会效益。与此同时,它们也面临着多种威胁,如碎片化、气候变化或日益破坏性的害虫和病原体。树木是森林的固有物种,不能被视为孤立的生物体。多种(微生物)与树木相关的生物体在森林生态系统中发挥着关键作用。在这些生物体中,真菌可能对树木的生命产生最大的影响。现在有许多分子和遗传方法可用于研究树种及其相关生物。由于真菌的基因组大小与树种相比要小得多,因此通常会对不同真菌的全基因组进行比较。此类研究在森林树种中才刚刚开始。在这里,我们总结了分子和遗传方法在森林保护遗传学、树木育种和关联遗传学中的应用,以及对真菌群落及其相关生态功能的研究。这些技术为适应特征的分子基础、森林管理的影响以及环境条件变化对树种和真菌群落的影响提供了有价值的见解,并由于减少了田间测试时间,从而可以增强树木育种周期。很明显,微生物物种之间以及这些生物与树木之间存在着多方面的相互作用。我们基于树木和真菌的案例研究展示了不同方法的多功能性。要点:• 应用于森林树木和相关真菌的遗传方法的现有知识。• 基因组方法在保护、育种、管理和研究中至关重要。• 植物生物群对树木及其生态系统的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6689/10106355/7bccf42a03a9/253_2023_12480_Fig1_HTML.jpg

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