Bösch Yvonne, Britt Elisabeth, Perren Sarah, Naef Andreas, Frey Jürg E, Bühlmann Andreas
Competence Division Plants and Plant Products, Agroscope, Müller-Thurgaustr 29, 8820 Wädenswil, Switzerland.
Department of Forest Mycology and Plant Pathology, Swedish University of Agricultural Sciences, Box 7026, 75007 Uppsala, Sweden.
Microorganisms. 2021 Jan 28;9(2):272. doi: 10.3390/microorganisms9020272.
The contribution of the apple microbiome to the production chain of apple was so far largely unknown. Here, we describe the apple fruit microbiome and influences on its composition by parameters such as storage season, storage duration, storage technology, apple variety, and plant protection schemes. A combined culturing and metabarcoding approach revealed significant differences in the abundance, composition, and diversity of the apple fruit microbiome. We showed that relatively few genera contribute a large portion of the microbiome on fruit and that the fruit microbiome changes during the storage season depending on the storage conditions. In addition, we show that the plant protection regime has an influence on the diversity of the fruit microbiome and on the dynamics of pathogenic fungal genera during the storage season. For the genus the quantitative results from the metabarcoding approach were validated with real-time PCR. In conclusion, we identified key parameters determining the composition and temporal changes of the apple fruit microbiome, and the main abiotic driving factors of microbiome diversity on apple fruit were characterized.
迄今为止,苹果微生物群对苹果生产链的贡献在很大程度上尚不明确。在此,我们描述了苹果果实微生物群以及储存季节、储存时长、储存技术、苹果品种和植物保护方案等参数对其组成的影响。一种结合培养和元条形码分析的方法揭示了苹果果实微生物群在丰度、组成和多样性方面的显著差异。我们发现,相对较少的属构成了果实微生物群的大部分,并且果实微生物群在储存季节会根据储存条件发生变化。此外,我们表明植物保护措施对果实微生物群的多样性以及储存季节中致病真菌属的动态变化有影响。对于该属,元条形码分析方法的定量结果通过实时PCR得到了验证。总之,我们确定了决定苹果果实微生物群组成和时间变化的关键参数,并对苹果果实微生物群多样性的主要非生物驱动因素进行了表征。