Insights into the microbiome assembly during different growth stages and storage of strawberry plants

Author:

Olimi Expedito,Kusstatscher PeterORCID,Wicaksono Wisnu Adi,Abdelfattah Ahmed,Cernava Tomislav,Berg Gabriele

Abstract

AbstractBackgroundMicrobiome assembly was identified as an important factor for plant growth and health, but this process is largely unknown, especially for the fruit microbiome. Therefore, we analyzed strawberry plants of two cultivars by focusing on microbiome tracking during the different growth stages and storage using amplicon sequencing, qPCR, and microscopic approaches.ResultsStrawberry plants carried a highly diverse microbiome, therein the bacterial familiesSphingomonadaceae(25%),Pseudomonadaceae(17%), andBurkholderiaceae(11%); and the fungal familyMycosphaerella(45%) were most abundant. All compartments were colonized by high number of bacteria and fungi (107–1010marker gene copies per g fresh weight), and were characterized by high microbial diversity (6049 and 1501 ASVs); both were higher for the belowground samples than in the phyllosphere. Compartment type was the main driver of microbial diversity, structure, and abundance (bacterial: 45%; fungal: 61%) when compared to the cultivar (1.6%; 2.2%). Microbiome assembly was strongly divided for belowground habitats and the phyllosphere; only a low proportion of the microbiome was transferred from soil via the rhizosphere to the phyllosphere. During fruit development, we observed the highest rates of microbial transfer from leaves and flowers to ripe fruits, where most of the bacteria occured inside the pulp. In postharvest fruits, microbial diversity decreased while the overall abundance increased. Developing postharvest decay caused byBotrytis cinereadecreased the diversity as well, and induced a reduction of potentially beneficial taxa.ConclusionOur findings provide insights into microbiome assembly in strawberry plants and highlight the importance of microbe transfer during fruit development and storage with potential implications for food health and safety.

Funder

Horizon 2020

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Applied Microbiology and Biotechnology,Microbiology

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