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首页> 外文期刊>Probiotics and Antimicrobial Proteins >Evaluation of Probiotic Diversity from Soybean ( Glycine max) Seeds and Sprouts Using Illumina-Based Sequencing Method
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Evaluation of Probiotic Diversity from Soybean ( Glycine max) Seeds and Sprouts Using Illumina-Based Sequencing Method

机译:使用Illumina的测序法从大豆(<强调型=“斜体”>甘氨酸Max )种子和豆芽评估益生菌多样性的评估

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摘要

There is increasing interest in the use of plant probiotics as environmental-friendly and healthy biofertilizers. The study aimed at selecting for novel probiotic candidates of soybean ( Glycine max ). The bacteriome and mycobiome of soybean sprouts and seeds were analyzed by Illumina-based sequencing. Seeds contained more diverse bacteria than those in sprouts. The seeds contained similar fungal diversity with sprouts. Total 15 bacterial OTUs and 4 fungal OTUs were detected in seeds and sprouts simultaneously, suggesting that the sprouts contained bacterial and fungal taxa transmitted from seeds. The Halothiobacillus was the most dominant bacterial genus observed and coexisted in seeds and sprouts. The OTUs belonged to Ascomycota were the most dominant fungal taxa observed in seeds and sprouts. Halothiobacillus was firstly identified as endophytic probiotics of soybean. The results suggested that sprouts might contain diverse plant probiotics of mature plants and Illumina-based sequencing can be used to screen for probiotic candidates.
机译:在使用植物益生菌作为环保和健康的生物元化器时,越来越兴趣。该研究旨在选择大豆(甘氨酸)的新型益生菌候选者。基于Illumina的测序分析了大豆芽和种子的细菌组和霉菌组。种子含有比豆芽更多样化的细菌。种子含有与豆芽相似的真菌多样性。在种子中,同时检测到15种细菌OTU和4个真菌OTU,表明豆芽含有从种子传播的细菌和真菌征集。 Halothiobacillus是在种子和萌芽中观察并共存的最占优势的细菌属。属于ascomycota的Otus是种子和豆芽中观察到的最占优势的真菌分类群。首先鉴定为大豆的内生益生菌的Halothiobacillus。结果表明,豆芽可能含有成熟植物的各种植物益生菌,并且可以使用illumina的测序来筛选益生菌候选物。

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