16S rRNA gene-based microbiome analysis identifies candidate bacterial strains that increase the storage time of potato tubers

基于 16S rRNA 基因的微生物组分析鉴定出可延长马铃薯块茎储存时间的候选细菌菌株

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作者:Franziska Buchholz, Robert Junker, Abdul Samad, Livio Antonielli, Nataša Sarić, Tanja Kostić, Angela Sessitsch, Birgit Mitter

Abstract

In the past, the potato plant microbiota and rhizosphere have been studied in detail to improve plant growth and fitness. However, less is known about the postharvest potato tuber microbiome and its role in storage stability. The storage stability of potatoes depends on genotype and storage conditions, but the soil in which tubers were grown could also play a role. To understand the ecology and functional role of the postharvest potato microbiota, we planted four potato varieties in five soil types and monitored them until the tubers started sprouting. During storage, the bacterial community of tubers was analysed by next-generation sequencing of the 16S rRNA gene amplicons. The potato tubers exhibited soil-dependent differences in sprouting behaviour. The statistical analysis revealed a strong shift of the tuber-associated bacterial community from harvest to dormancy break. By combining indicator species analysis and a correlation matrix, we predicted associations between members of the bacterial community and tuber sprouting behaviour. Based on this, we identified Flavobacterium sp. isolates, which were able to influence sprouting behaviour by inhibiting potato bud outgrowth.

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