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外生菌根菌属(Pisolithus spp.)与巨桉(Eucalyptus grandis)间的外生菌根关系中,真菌代谢和游离氨基酸含量可能预测氮向宿主植物的转移。

Fungal metabolism and free amino acid content may predict nitrogen transfer to the host plant in the ectomycorrhizal relationship between Pisolithus spp. and Eucalyptus grandis.

机构信息

NSW Department of Primary Industries, Elizabeth Macarthur Agricultural Institute, Menangle, NSW, 2568, Australia.

Hawkesbury Institute for the Environment, Western Sydney University, Richmond, NSW, 2753, Australia.

出版信息

New Phytol. 2024 May;242(4):1589-1602. doi: 10.1111/nph.19400. Epub 2023 Nov 16.

Abstract

Ectomycorrhizal (ECM) fungi are crucial for tree nitrogen (N) nutrition; however, mechanisms governing N transfer from fungal tissues to the host plant are not well understood. ECM fungal isolates, even from the same species, vary considerably in their ability to support tree N nutrition, resulting in a range of often unpredictable symbiotic outcomes. In this study, we used isotopic labelling to quantify the transfer of N to the plant host by isolates from the ECM genus Pisolithus, known to have significant variability in colonisation and transfer of nutrients to a host. We considered the metabolic fate of N acquired by the fungi and found that the percentage of plant N acquired through symbiosis significantly correlated to the concentration of free amino acids in ECM extra-radical mycelium. Transcriptomic analyses complemented these findings with isolates having high amino acid content and N transfer showing increased expression of genes related to amino acid transport and catabolic pathways. These results suggest that fungal N metabolism impacts N transfer to the host plant in this interaction and that relative N transfer may be possible to predict through basic biochemical analyses.

摘要

外生菌根 (ECM) 真菌对树木的氮 (N) 营养至关重要;然而,真菌组织向宿主植物转移 N 的机制尚未得到很好的理解。即使来自同一物种的 ECM 真菌分离株,其支持树木 N 营养的能力也有很大差异,导致共生的结果往往不可预测。在这项研究中,我们使用同位素标记来量化从外生菌根属 Pisolithus 的分离株向植物宿主转移 N 的情况,已知这些分离株在定植和向宿主转移养分方面存在显著的变异性。我们考虑了真菌获得的 N 的代谢命运,发现通过共生获得的植物 N 百分比与 ECM 外生菌根菌丝中游离氨基酸的浓度显著相关。转录组分析通过具有高氨基酸含量和 N 转移的分离株得到了补充,这些分离株的氨基酸运输和分解代谢途径相关基因的表达增加。这些结果表明,在这种相互作用中,真菌的 N 代谢会影响 N 向宿主植物的转移,并且通过基本的生化分析可能可以预测相对的 N 转移。

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