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Diversity and Variation of Bacterial Community Revealed by MiSeq Sequencing in Chinese Dark Teas

机译:中国红茶MiSeq测序揭示细菌群落的多样性和变异

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摘要

Chinese dark teas (CDTs) are now among the popular tea beverages worldwide due to their unique health benefits. Because the production of CDTs involves fermentation that is characterized by the effect of microbes, microorganisms are believed to play critical roles in the determination of the chemical characteristics of CDTs. Some dominant fungi have been identified from CDTs. In contrast, little, if anything, is known about the composition of bacterial community in CDTs. This study was set to investigate the diversity and variation of bacterial community in four major types of CDTs from China. First, the composition of the bacterial community of CDTs was determined using MiSeq sequencing. From the four typical CDTs, a total of 238 genera that belong to 128 families of bacteria were detected, including most of the families of beneficial bacteria known to be associated with fermented food. While different types of CDTs had generally distinct bacterial structures, the two types of brick teas produced from adjacent regions displayed strong similarity in bacterial composition, suggesting that the producing environment and processing condition perhaps together influence bacterial succession in CDTs. The global characterization of bacterial communities in CDTs is an essential first step for us to understand their function in fermentation and their potential impact on human health. Such knowledge will be important guidance for improving the production of CDTs with higher quality and elevated health benefits.
机译:中国黑茶(CDT)由于其独特的健康益处,如今已成为全球流行的茶饮料之一。由于CDT的生产涉及以微生物作用为特征的发酵,因此微生物被认为在CDT的化学特性测定中起着至关重要的作用。从CDTs中已经鉴定出一些优势真菌。相反,对于CDT中细菌群落的组成知之甚少。这项研究旨在调查中国四种主要类型CDT中细菌群落的多样性和变异。首先,使用MiSeq测序确定CDT细菌群落的组成。从四个典型的CDT中,总共检测到238个属128个细菌的科,包括已知与发酵食品有关的大多数有益细菌。虽然不同类型的CDT通常具有截然不同的细菌结构,但从相邻区域生产的两种砖茶在细菌组成上显示出高度相似性,这表明生产环境和加工条件可能共同影响CDT中的细菌继承。 CDT中细菌群落的全球表征是我们了解其在发酵中的功能及其对人体健康的潜在影响的重要的第一步。这些知识将是提高CDT生产质量和健康效益的重要指导。

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  • 作者

    Jianyu Fu; Haipeng Lv; Feng Chen;

  • 作者单位
  • 年(卷),期 -1(11),9
  • 年度 -1
  • 页码 e0162719
  • 总页数 12
  • 原文格式 PDF
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