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核心菌根真菌促进[某种重要药用兰花]幼苗生长

Core Mycorrhizal Fungi Promote Seedling Growth in : An Important Medicinal Orchid.

作者信息

Wu Yi-Hua, Chen Xiang-Gui, Li Neng-Qi, Li Tai-Qiang, Anbazhakan Rengasamy, Gao Jiang-Yun

机构信息

State Key Laboratory for Vegetation Structure, Functions and Construction, Ministry of Education Key Laboratory for Transboundary Ecosecurity of Southwest China, Institute of Biodiversity, School of Ecology and Environmental Science, Yunnan University, Kunming 650500, China.

出版信息

Plants (Basel). 2025 Mar 25;14(7):1024. doi: 10.3390/plants14071024.

Abstract

The critically endangered orchid , valued for its medicinal properties, depends on specific seedling-associated mycorrhizal fungi (SAMF) for successful early-stage seedling development. However, conservation efforts are often hindered by difficulties in obtaining suitable SAMF, leading to poor seedling establishment in both natural and cultivated environments. In this study, we explored the growth-promoting effects of SAMF and evaluated the performances of synthetic fungal combinations. Our results demonstrated that mycorrhizal fungi, widely distributed across multiple habitats with high isolation frequencies, significantly promoted the growth of , with specific fungi favoring different growth parameters. sp. TP-2 and TP-3 significantly improved stem diameter and plant height by 2.622 mm and 4.621 cm, while sp. TP-8 significantly increased tillering by a factor of 4.47. Additionally, sp. TP-11 and TP-13 markedly increased the number of new leaves (4.45) and new roots (2.688), respectively, identifying them as essential core OMFs for seedlings. Contrary to expectations, synthetic fungal combinations composed of core orchid mycorrhizal fungi (core OMFs) did not exhibit synergistic growth-promoting effects. Instead, pronounced offset effects were observed, indicating that interactions between fungi may introduce competition or inhibition, limiting their collective ability to enhance plant growth. Our results confirmed that the core OMFs significantly promoted the growth of seedlings. These core OMFs can serve as essential components in specialized microbial fertilizers for , improving growth efficiency and yield, and supporting the sustainable development of the industry.

摘要

这种极度濒危的兰花因其药用价值而备受珍视,其幼苗早期的成功发育依赖于特定的与幼苗相关的菌根真菌(SAMF)。然而,由于难以获得合适的SAMF,保护工作常常受到阻碍,导致在自然和人工栽培环境中幼苗的定植情况都很差。在本研究中,我们探究了SAMF的促生长作用,并评估了合成真菌组合的性能。我们的结果表明,广泛分布于多个栖息地且分离频率高的菌根真菌显著促进了[植物名称]的生长,不同的真菌对不同的生长参数有促进作用。[真菌名称]TP - 2和TP - 3分别使茎直径和株高显著增加了2.622毫米和4.621厘米,而[真菌名称]TP - 8使分蘖显著增加了4.47倍。此外,[真菌名称]TP - 11和TP - 13分别显著增加了新叶数量(4.45片)和新根数量(2.688条),这表明它们是[植物名称]幼苗必不可少的核心兰花菌根真菌(OMF)。与预期相反,由核心兰花菌根真菌(core OMFs)组成的合成真菌组合并未表现出协同的促生长作用。相反,观察到了明显的抵消效应,这表明真菌之间的相互作用可能会引入竞争或抑制,限制它们共同促进植物生长的能力。我们的结果证实,核心OMFs显著促进了[植物名称]幼苗的生长。这些核心OMFs可作为[植物名称]专用微生物肥料的重要成分,提高生长效率和产量,并支持[植物名称]产业的可持续发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/739b/11990756/d94822c7f83e/plants-14-01024-g001.jpg

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