共生塞浦路斯属植物菌根多样性及群落组成。

IF 3.3 2区 生物学 Q2 MYCOLOGY
Huanchu Liu, Hans Jacquemyn, Shuai Yu, Wei Chen, Xingyuan He, Yanqing Huang
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引用次数: 0

摘要

兰花通常依靠菌根真菌来获得种子发芽和生长所需的资源。虽然大多数光合作用的兰花通常与所谓的根核菌真菌一起完成它们的生命周期,但越来越多的证据表明,其他真菌也可能参与其中,并且与兰花相关的菌根群落可能更加多样化。共存的兰花种类也倾向于与不同的真菌结合,以减少对相似资源的竞争,并增加长期的种群生存能力。然而,很少有研究将根际菌根群落与近缘共存的兰花物种根系中的菌根群落联系起来。本研究利用高通量测序技术,对生长在东北地区森林中的4种塞浦路斯属植物根系和根际的兰花菌根真菌的多样性和群落组成进行了研究。结果表明,所调查的杓兰属植物在根际土壤中与土拉菌科(Tulasnellaceae)、psathyrellacae科和Herpotrichiellaceae等多种真菌有丰富的联系,而与Russulaceae、Cortinariaceae、Thelephoraceae和Herpotrichiellaceae等真菌有丰富的联系。根际土壤真菌多样性远高于根际土壤。所观察到的塞浦路斯根真菌群落的变化与林点或兰花种类无关。另一方面,根际土壤菌根群落的变化与采样地点显著相关。这些结果表明,兰花根际菌根群落在不同地点表现出相当大的差异,兰花只利用当地可利用真菌的一个子集。未来对兰花菌根真菌精细空间分布的研究和对当地环境条件的更详细评估,将为解释兰花根际和根际真菌群落变化的机制提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mycorrhizal diversity and community composition in co-occurring Cypripedium species.

Mycorrhizal diversity and community composition in co-occurring Cypripedium species.

Orchids commonly rely on mycorrhizal fungi to obtain the necessary resources for seed germination and growth. Whereas most photosynthetic orchids typically associate with so-called rhizoctonia fungi to complete their life cycle, there is increasing evidence that other fungi may be involved as well and that the mycorrhizal communities associated with orchids may be more diverse. Coexisting orchid species also tend to associate with different fungi to reduce competition for similar resources and to increase long-term population viability. However, few studies have related the mycorrhizal communities in the rhizosphere to communities found in the roots of closely related coexisting orchid species. In this study, we used high-throughput sequencing to investigate the diversity and community composition of orchid mycorrhizal fungi in the roots and the rhizosphere of four Cypripedium species growing in forests in Northeast China. The results showed that the investigated Cypripedium species associated with a wide variety of fungi including members of Tulasnellaceae, Psathyrellaceae, and Herpotrichiellaceae, whereas members of Russulaceae, Cortinariaceae, Thelephoraceae, and Herpotrichiellaceae showed high abundance in rhizosphere soils. The diversity of fungi detected in the rhizosphere soil was much higher than that in the roots. The observed variation in fungal communities in Cypripedium roots was not related to forest site or orchid species. On the other hand, variation in mycorrhizal communities of rhizosphere soil was significantly related to sampling site. These results indicate that orchid mycorrhizal communities in the rhizosphere display considerable variation among sites and that orchids use only a subset of the locally available fungi. Future studies focusing on the fine-scale spatial distribution of orchid mycorrhizal fungi and more detailed assessments of local environmental conditions will provide novel insights into the mechanisms explaining variation of fungal communities in both orchid roots and the rhizosphere.

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来源期刊
Mycorrhiza
Mycorrhiza 生物-真菌学
CiteScore
8.20
自引率
2.60%
发文量
40
审稿时长
6-12 weeks
期刊介绍: Mycorrhiza is an international journal devoted to research into mycorrhizas - the widest symbioses in nature, involving plants and a range of soil fungi world-wide. The scope of Mycorrhiza covers all aspects of research into mycorrhizas, including molecular biology of the plants and fungi, fungal systematics, development and structure of mycorrhizas, and effects on plant physiology, productivity, reproduction and disease resistance. The scope also includes interactions between mycorrhizal fungi and other soil organisms and effects of mycorrhizas on plant biodiversity and ecosystem structure. Mycorrhiza contains original papers, short notes and review articles, along with commentaries and news items. It forms a platform for new concepts and discussions, and is a basis for a truly international forum of mycorrhizologists from all over the world.
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