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两种外生菌根在响应养分变化时的外生菌根发育差异策略。 (你原文中“between and ”部分内容缺失,请补充完整准确信息以便得到更精准译文 )

Differential Strategies of Ectomycorrhizal Development between and in Response to Nutrient Changes.

作者信息

Pan Xueyu, Liang Junfeng, Zhang Jinhua, Zhao Yan, Chen Mingjie

机构信息

Institute of Edible Fungi, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.

Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China.

出版信息

J Fungi (Basel). 2024 Aug 19;10(8):587. doi: 10.3390/jof10080587.

Abstract

Ectomycorrhizal fungi employ different strategies for mycelial growth and host colonization under varying nutrient conditions. However, key genes associated with mycorrhizal interaction should be influenced solely by the inoculation treatment and not by nutrient variations. To utilize subtle nutrient differences and rapidly screen for key genes related to the interaction between and , we performed an inoculation experiment using culture bottles containing high- and low-nutrient media. Interestingly, LS88 promoted the growth of seedlings without mature ectomycorrhiza, and the impact of LS88 inoculation on roots was greater than that of nutrient changes. In this study, the resequenced genome of the LS88 strain was utilized for transcriptome analysis of the strain. The analysis indicated that a unique gene encoding glutathione S-transferase (GST) in LS88 is likely involved in colonizing roots. In this study, the GST gene expression was independent of nutrient levels. It was probably induced by and could be used as a marker for colonization degree.

摘要

外生菌根真菌在不同营养条件下采用不同策略进行菌丝生长和宿主定殖。然而,与菌根相互作用相关的关键基因应该仅受接种处理影响,而不受营养变化影响。为了利用细微的营养差异并快速筛选与[具体内容缺失]相互作用相关的关键基因,我们使用含有高营养和低营养培养基的培养瓶进行了接种实验。有趣的是,LS88促进了没有成熟外生菌根的[具体内容缺失]幼苗的生长,并且LS88接种对[具体内容缺失]根的影响大于营养变化的影响。在本研究中,利用LS88菌株的重测序基因组进行该菌株的转录组分析。分析表明,LS88中一个编码谷胱甘肽S-转移酶(GST)的独特基因可能参与了[具体内容缺失]根的定殖。在本研究中,GST基因表达与营养水平无关。它可能是由[具体内容缺失]诱导的,并且可以用作[具体内容缺失]定殖程度的标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e827/11355094/02e413d1f06e/jof-10-00587-g001.jpg

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