Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insights

Endophytic fungi and bacteria are the most ubiquitous and representative commensal members that have been studied so far in various higher plants. Within colonization and interaction with their host plants, endophytic microbiota are reportedly to modulate not only the host’s growth but also holobion...

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Main Authors: Hengtong Xie, Xiaoxiao Feng, Mengcen Wang, Yuefei Wang, Mukesh Kumar Awasthi, Ping Xu
Format: Article
Language:English
Published: Taylor & Francis Group 2020-01-01
Series:Bioengineered
Subjects:
Online Access:http://dx.doi.org/10.1080/21655979.2020.1816788
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spelling doaj-9dbba320f8c94b1e9c5ee5dee1b281802021-06-02T08:43:41ZengTaylor & Francis GroupBioengineered2165-59792165-59872020-01-011111001101510.1080/21655979.2020.18167881816788Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insightsHengtong Xie0Xiaoxiao Feng1Mengcen Wang2Yuefei Wang3Mukesh Kumar Awasthi4Ping Xu5Zhejiang UniversityAgricultural Experiment Station of Zhejiang UniversityZhejiang UniversityZhejiang UniversityNorthwest A&F UniversityZhejiang UniversityEndophytic fungi and bacteria are the most ubiquitous and representative commensal members that have been studied so far in various higher plants. Within colonization and interaction with their host plants, endophytic microbiota are reportedly to modulate not only the host’s growth but also holobiont resilience to abiotic and biotic stresses, providing a natural reservoir and a promising solution for sustainable agricultural development challenged by global climate change. Moreover, possessing the talent to produce a wide array of high-value natural products, plant endophytic microbiota also serve as an alternative way for novel drug discovery. In this review, tea, one of the world’s three largest nonalcoholic beverages and a worldwide economic woody crop, was highlighted in the context of endophytic microbiota. We explore the recent studies regarding isolation approaches, distribution characteristics and diversity, and also biological functions of endophytic microbiota in Camellia sinensis (L.) O. Kuntze. Profoundly, the future insight into interaction mechanism between endophytic microbiota and tea plants will shed light on in-depth exploration of tea microbial resources.http://dx.doi.org/10.1080/21655979.2020.1816788camellia sinensisendophytic microbiotaisolationidentificationdiversitybiological functions
collection DOAJ
language English
format Article
sources DOAJ
author Hengtong Xie
Xiaoxiao Feng
Mengcen Wang
Yuefei Wang
Mukesh Kumar Awasthi
Ping Xu
spellingShingle Hengtong Xie
Xiaoxiao Feng
Mengcen Wang
Yuefei Wang
Mukesh Kumar Awasthi
Ping Xu
Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insights
Bioengineered
camellia sinensis
endophytic microbiota
isolation
identification
diversity
biological functions
author_facet Hengtong Xie
Xiaoxiao Feng
Mengcen Wang
Yuefei Wang
Mukesh Kumar Awasthi
Ping Xu
author_sort Hengtong Xie
title Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insights
title_short Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insights
title_full Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insights
title_fullStr Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insights
title_full_unstemmed Implications of endophytic microbiota in Camellia sinensis: a review on current understanding and future insights
title_sort implications of endophytic microbiota in camellia sinensis: a review on current understanding and future insights
publisher Taylor & Francis Group
series Bioengineered
issn 2165-5979
2165-5987
publishDate 2020-01-01
description Endophytic fungi and bacteria are the most ubiquitous and representative commensal members that have been studied so far in various higher plants. Within colonization and interaction with their host plants, endophytic microbiota are reportedly to modulate not only the host’s growth but also holobiont resilience to abiotic and biotic stresses, providing a natural reservoir and a promising solution for sustainable agricultural development challenged by global climate change. Moreover, possessing the talent to produce a wide array of high-value natural products, plant endophytic microbiota also serve as an alternative way for novel drug discovery. In this review, tea, one of the world’s three largest nonalcoholic beverages and a worldwide economic woody crop, was highlighted in the context of endophytic microbiota. We explore the recent studies regarding isolation approaches, distribution characteristics and diversity, and also biological functions of endophytic microbiota in Camellia sinensis (L.) O. Kuntze. Profoundly, the future insight into interaction mechanism between endophytic microbiota and tea plants will shed light on in-depth exploration of tea microbial resources.
topic camellia sinensis
endophytic microbiota
isolation
identification
diversity
biological functions
url http://dx.doi.org/10.1080/21655979.2020.1816788
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