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- W3134495770 abstract "• The leaf surface shared a core microbiota in all tested growth stages and genotypes. • Physiological activities such as biomass are related to the phyllosphere bacterial assemblage. • Phyllosphere specificity varied more with respect to growth stage than genotype. The interaction between plants and microorganisms directly affects plant health and sustainable agricultural development. Leaves represent a wide-area habitat populated by a variety of microorganisms, whose impact on host environmental adaptability could influence plant growth and function. The driving factors for phyllosphere microbiota assemblage are the focus of current research. Here, we investigated the effect of growth stage (i.e., bolting, flowering, and maturation) and genotype of Arabidopsis thaliana (wild-type and the two photosynthetic mutants ndf 4 and pgr 5) on the composition of phyllosphere microbiota. Our results show that species abundance varied significantly between the three genotypes at different growth stages, whereas species richness and evenness varied only for ndf 4. The leaf surface shared a core microbiota dominated by Proteobacteria , Actinobacteria , Bacteroidetes , and Firmicutes in all tested growth stages and genotypes. Phyllosphere specificity varied more with respect to growth stage than to genotype. In summary, both the growth stage and genotype of A. thaliana are crucial in shaping phyllosphere bacterial composition, with the former being a stronger driver. Our findings provide a novel for investigating whether the host properties influence the phyllosphere community and favor healthy development of plants." @default.
- W3134495770 created "2021-03-15" @default.
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- W3134495770 date "2021-07-01" @default.
- W3134495770 modified "2023-10-12" @default.
- W3134495770 title "Phyllosphere bacterial assemblage is affected by plant genotypes and growth stages" @default.
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- W3134495770 doi "https://doi.org/10.1016/j.micres.2021.126743" @default.
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