Literature DB >> 22077631

Herbivore-induced volatiles from tea (Camellia sinensis) plants and their involvement in intraplant communication and changes in endogenous nonvolatile metabolites.

Fang Dong1, Ziyin Yang, Susanne Baldermann, Yasushi Sato, Tatsuo Asai, Naoharu Watanabe.   

Abstract

As a defense response to attacks by herbivores such as the smaller tea tortrix ( Adoxophyes honmai Yasuda), tea ( Camellia sinensis ) leaves emit numerous volatiles such as (Z)-3-hexen-1-ol, linalool, α-farnesene, benzyl nitrile, indole, nerolidol, and ocimenes in higher concentration. Attack of Kanzawa spider mites ( Tetranychus kanzawai Kishida), another major pest insect of tea crops, induced the emission of α-farnesene and ocimenes from tea leaves. The exogenous application of jasmonic acid to tea leaves induced a volatile blend that was similar, although not identical, to that induced by the smaller tea tortrix. Most of these herbivore-induced plant volatiles (HIPV) were not stored in the tea leaves but emitted after the herbivore attack. Both the adaxial and abaxial epidermal layers of tea leaves emitted blends of similar composition. Furthermore, HIPV such as α-farnesene were emitted mostly from damaged but not from undamaged leaf regions. A principal component analysis of metabolites (m/z 70-1000) in undamaged tea leaves exposed or not to HIPV suggests that external signaling via HIPV may lead to more drastic changes in the metabolite spectrum of tea leaves than internal signaling via vascular connections, although total catechin contents were slightly but not significantly increased in the external signaling via HIPV.

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Year:  2011        PMID: 22077631     DOI: 10.1021/jf203396a

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  12 in total

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2.  Differential transcriptome analysis of leaves of tea plant (Camellia sinensis) provides comprehensive insights into the defense responses to Ectropis oblique attack using RNA-Seq.

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3.  Enhanced volatile emissions and anti-herbivore functions mediated by the synergism between jasmonic acid and salicylic acid pathways in tea plants.

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4.  Regulation of formation of volatile compounds of tea (Camellia sinensis) leaves by single light wavelength.

Authors:  Xiumin Fu; Yiyong Chen; Xin Mei; Tsuyoshi Katsuno; Eiji Kobayashi; Fang Dong; Naoharu Watanabe; Ziyin Yang
Journal:  Sci Rep       Date:  2015-11-16       Impact factor: 4.379

5.  Functional Characterization of An Allene Oxide Synthase Involved in Biosynthesis of Jasmonic Acid and Its Influence on Metabolite Profiles and Ethylene Formation in Tea (Camellia sinensis) Flowers.

Authors:  Qiyuan Peng; Ying Zhou; Yinyin Liao; Lanting Zeng; Xinlan Xu; Yongxia Jia; Fang Dong; Jianlong Li; Jinchi Tang; Ziyin Yang
Journal:  Int J Mol Sci       Date:  2018-08-18       Impact factor: 5.923

6.  Characterization of Terpene Synthase from Tea Green Leafhopper Being Involved in Formation of Geraniol in Tea (Camellia sinensis) Leaves and Potential Effect of Geraniol on Insect-Derived Endobacteria.

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7.  Formation of volatiles in response to tea green leafhopper (Empoasca onukii Matsuda) herbivory in tea plants: a multi-omics study.

Authors:  Huifan Liu; Sufen Li; Gengsheng Xiao; Qin Wang
Journal:  Plant Cell Rep       Date:  2021-02-22       Impact factor: 4.570

8.  Activation of the jasmonic acid pathway by depletion of the hydroperoxide lyase OsHPL3 reveals crosstalk between the HPL and AOS branches of the oxylipin pathway in rice.

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9.  Analysis of Terpene Synthase Family Genes in Camellia sinensis with an Emphasis on Abiotic Stress Conditions.

Authors:  Han-Chen Zhou; Lubobi Ferdinand Shamala; Xing-Kai Yi; Zhen Yan; Shu Wei
Journal:  Sci Rep       Date:  2020-01-22       Impact factor: 4.379

10.  Scenarios of Genes-to-Terpenoids Network Led to the Identification of a Novel α/β-Farnesene/β-Ocimene Synthase in Camellia sinensis.

Authors:  Jieyang Jin; Shangrui Zhang; Mingyue Zhao; Tingting Jing; Na Zhang; Jingming Wang; Bin Wu; Chuankui Song
Journal:  Int J Mol Sci       Date:  2020-01-19       Impact factor: 5.923

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