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Apple endophytic microbiota of different rootstock/scion combinations suggests a genotype-specific influence

机译:不同砧木/接穗组合的苹果内生菌群提示基因型特异性影响

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BackgroundHigh-throughput amplicon sequencing spanning conserved portions of microbial genomes (16s rRNA and ITS) was used in the present study to describe the endophytic microbiota associated with three apple varieties, “Royal Gala,” “Golden Delicious,” and “Honey Crisp,” and two rootstocks, M.9 and M.M.111. The objectives were to (1) determine if the microbiota differs in different rootstocks and apple varieties and (2) determine if specific rootstock-scion combinations influence the microbiota composition of either component. ResultsResults indicated that Ascomycota (47.8%), Zygomycota (31.1%), and Basidiomycota (11.6%) were the dominant fungal phyla across all samples. The majority of bacterial sequences were assigned to Proteobacteria (58.4%), Firmicutes (23.8%), Actinobacteria (7.7%), Bacteroidetes (2%), and Fusobacteria (0.4%). Rootstocks appeared to influence the microbiota of associated grafted scion, but the effect was not statistically significant. Pedigree also had an impact on the composition of the endophytic microbiota, where closely-related cultivars had a microbial community that was more similar to each other than it was to a scion cultivar that was more distantly-related by pedigree. The more vigorous rootstock (M.M.111) was observed to possess a greater number of growth-promoting bacterial taxa, relative to the dwarfing rootstock (M.9). ConclusionsThe mechanism by which an apple genotype, either rootstock or scion, has a determinant effect on the composition of a microbial community is not known. The similarity of the microbiota in samples with a similar pedigree suggests the possibility of some level of co-evolution or selection as proposed by the “holobiont” concept in which metaorganisms have co-evolved. Clearly, however, the present information is only suggestive, and a more comprehensive analysis is needed.
机译:背景技术本研究使用跨越微生物基因组保守部分(16s rRNA和ITS)的高通量扩增子测序来描述与三个品种“ Royal Gala”,“ Golden Delicious”和“ Honey Crisp”相关的内生菌群。和两个砧木,M.9和MM111。目的是(1)确定不同砧木和苹果品种中的微生物区系是否不同,以及(2)确定特定砧木-接穗组合是否影响任一组分的微生物区系组成。结果结果表明,在所有样品中,子囊菌(47.8%),合子菌(31.1%)和担子菌(11.6%)是优势菌门。大多数细菌序列被指定为Proteobacteria(58.4%),Firmicutes(23.8%),Actinobacteria(7.7%),Bacteroidetes(2%)和Fusobacteria(0.4%)。砧木似乎影响相关嫁接接穗的微生物,但该影响在统计学上不显着。谱系也对内生微生物群的组成有影响,其中密切相关的品种的微生物群落彼此之间的亲缘关系远比与谱系更亲近的接穗品种的微生物群落相似。相对于矮化的砧木(M.9),观察到更有活力的砧木(M.M.111)具有更多的促进生长的细菌类群。结论苹果基因型(砧木或接穗)对微生物群落组成具有决定性作用的机制尚不清楚。具有相似血统的样本中微生物群的相似性表明,正如微生物进化的“ holobiont”概念所提出的,在某种程度上可能存在共同进化或选择的可能性。但是,显然,当前信息仅是提示性的,需要更全面的分析。

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