Nguyen Minh-Phuong, Lehosmaa Kaisa, Martz Françoise, Koskimäki Janne J, Toth Katalin, Ahonen Saija H K, Häggman Hely, Pirttilä Anna-Maria
Ecology and Genetics Research Unit, PO Box 3000, University of Oulu, FI-90014 Oulu, Finland.
Natural Resources Institute Finland, Production Systems, Ounasjoentie 6, FI-96200 Rovaniemi, Finland.
FEMS Microbiol Ecol. 2025 Jan 7;101(1). doi: 10.1093/femsec/fiae168.
The physical and chemical properties of wild berry fruits change dramatically during development, and the ripe berries host species-specific endophytic communities. However, the development of fungal endophytic communities during berry ripening is unknown. We studied bilberries (Vaccinium myrtillus L.), valuable natural resources in northern Europe and richest sources of phenolic compounds, to characterize dynamics of the fungal communities over fruit developmental stages (raw, veraison, and ripe). Our focus was to examine the changes in the fruit phenolic compounds associated with the fungal community structure using liquid chromatography-mass spectrometry for phenolic compounds and high-throughput sequencing technology targeting the internal transcribed spacer 2 ribosomal DNA region for endophytic fungi. We found that the fungal diversity increased with the ripening stages. The fungal profile changed dramatically through fruit development, and the veraison stage was a transition stage, where the core mycobiome of fruits changed. The fungal community structure and abundance of the most dominant genera in raw and ripe stages, Monilinia and Cladosporium, respectively, were driven by the bilberry phenolic profile. We conclude that sampling time, tissue age, and phenolic compounds play important roles in the development of fruit fungal community. Moreover, phenolic compounds could be the host's strategy to recruit beneficial microbes.
野生浆果果实的物理和化学性质在发育过程中会发生显著变化,成熟的浆果中存在物种特异性的内生菌群。然而,浆果成熟过程中真菌内生菌群的发育情况尚不清楚。我们研究了北欧珍贵的自然资源、酚类化合物最丰富的来源——越橘(Vaccinium myrtillus L.),以表征果实发育阶段(生果、转色期和成熟期)真菌群落的动态变化。我们的重点是使用液相色谱 - 质谱法分析酚类化合物,并采用针对内生真菌内部转录间隔区2核糖体DNA区域的高通量测序技术,研究与真菌群落结构相关的果实酚类化合物的变化。我们发现,真菌多样性随着成熟阶段的推进而增加。真菌群落结构在果实发育过程中发生了显著变化,转色期是一个过渡阶段,果实的核心真菌群落在此发生改变。生果期和成熟期最主要的属(分别为链核盘菌属和枝孢属)的真菌群落结构和丰度受越橘酚类化合物谱的驱动。我们得出结论,采样时间、组织年龄和酚类化合物在果实真菌群落的发育中起着重要作用。此外,酚类化合物可能是宿主招募有益微生物的一种策略。