武夷岩茶中矿质养分的地域性差异及影响因素
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S571.1

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福建省自然科学基金项目(2017J01602)和农业农村部农业科研杰出人才项目共同资助


Variation of Wuyi Rock Tea in Mineral Nutrition with Region and Its Affecting Factors
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Supported by the Natural Science Foundation of Fujian Province in China (No. 2017J01602) and the Modern Agricultural Talents Support Project of Ministry of Agriculture and Rural Affairs of China

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    摘要:

    武夷岩茶是一种传统名优乌龙茶,其品质差异具有明显的地域性。本研究旨在探索不同产地武夷岩茶茶青中矿质养分的差异规律,以期了解茶青养分对武夷岩茶品质的贡献。共采集武夷山112个茶园的茶青和土壤样品,主要测定了茶青中12种矿质元素和土壤中5项肥力指标(pH、碱解氮、有效磷、速效钾和有机质)。通过主成分分析发现,不同产地茶青矿质元素差异明显;利用随机森林分析,明确了不同岩区的茶青中磷、铜和氮元素的差异贡献最大,且总体上浓度由高到低依次为洲茶区、半岩区、正岩区,表明高品质的正岩茶中存在较低浓度的磷、铜和氮;皮尔森相关分析显示,土壤肥力5项指标与茶青中上述三种元素浓度相关性较弱,说明茶青养分受到综合环境因素的影响。综上所述,茶青中磷、铜和氮的水平与武夷岩茶的品质存在一定的负相关,可为茶园土壤养分管理提供参考依据。

    Abstract:

    [Objective] Wuyi rock tea is a kind of traditional brand high-quality oolong tea. However, its quality varies from region to region significantly. This regional difference is mainly attributed to two major factors. One is soil parent material that affects soil nutrient supply, and the other is climate that determines temperature, light intensity, humidity, etc. To date, the focus of this study is to find out the determinants of quality formation of Wuyi rock tea. The purpose of this study was to explore difference in mineral nutrition of Wuyi rock teas from different planting areas, so as to better understand contributions of the nutrients to the quality of Wuyi rock tea.[Method] In this study, tea leaf samples and soil samples were collected from 112 tea gardens in the Wuyi Mountain. The tea gardens were distributed in three planting areas, i.e. Zhengyan, Banyan and Zhou, producing teas, high, medium and low in quality, respectively. The tea leaf samples were analyzed for contents of 12 mineral elements(N, P, K, Ca, Mg, Fe, Mn, Cu, Zn, B, Mo, Ni)and the soil samples were for 5 soil fertility parameters(pH, Alkaline nitrogen, Available phosphorus, Available potassium and Organic matter).[Result] Principal component analysis shows that the tea leaf samples varied evidently in content of mineral elements with the planting area. Random forest analysis shows that among all the mineral nutrients in the tea leaf samples tested, phosphorus, copper and nitrogen differed the most significantly from region to region. Furthermore, in terms of concentrations of the three elements the teas followed a decreasing order of Zhou tea > Banyan tea > Zhengyan tea, while in terms of tea quality, they followed an increasing order of Zhou tea < Banyan tea < Zhengyan tea, which indicates the lower the concentrations of phosphorus, copper and nitrogen, the higher the tea quality. Pearson correlation analysis shows that the 5 soil fertility parameters did not have much correlations with the three nutrient elements in the tea leaves, suggesting that contents of the nutrients in Wuyi rock tea are affected by comprehensive environmental factors, rather than solely determined by soil nutrient status.[Conclusion] To sum up, this study demonstrates that content of phosphorus, copper and nitrogen in tea leaves is somewhat negatively related to quality of Wuyi rock tea, which serve as reference for soil nutrient management of tea gardens.

    参考文献
    [1] Wei C,Yang H,Wang S,et al. Draft genome sequence of Camellia sinensis var. sinensis provides insights into the evolution of the tea genome and tea quality[J]. Proceedings of the National Academy of Sciences of the United States of America,2018,115(18):4151-4158.
    [2] Xia E,Zhang H B,Sheng J,et al. The tea tree genome provides insights into tea flavor and independent evolution of caffeine biosynthesis[J]. Molecular Plant,2017,10(6):866-877.
    [3] Zhuang W F. The initial using and origin of tea[J]. Agricultural Archaeology,1981(2):134-136,139.[庄晚芳. 茶的始用及其原产地问题[J]. 农业考古,1981(2):134-136,139.]
    [4] Liu B S,Lin H,Ge P Z. The historical origin,dissemination development and present situation of Wuyi Tea[J]. Tea in Fujian,2014,36(3):41-44.[刘宝顺,林慧,戈佩贞. 武夷茶历史溯源、传播发展与现状[J]. 福建茶叶,2014,36(3):41-44.]
    [5] Huang S B,Wu C J. The origin and rhyme of Wuyi rock tea[J]. China Tea,2018,40(11):21-25.[黄绍斌,吴成建. 浅谈武夷岩茶产地与岩韵[J]. 中国茶叶,2018,40(11):21-25.]
    [6] Zhou Z,Xue J P,Zhuo Z P,et al. Unique region produces special tea:Metabolomic basis of the influence of production region on the quality of Wuyi rock tea[J]. Scientia Sinica Vitae,2019,49(8):1013-1023.[周志,薛俊鹏,卓座品,等. 一方水土养一方茶:产地影响武夷岩茶品质的代谢组基础[J]. 中国科学:生命科学,2019,49(8):1013-1023.]
    [7] 7] Chen R P,Liu A X,Wang W Z,et al. The relationships between the quality of Wuyi rock tea and the microenvironmental factors[J]. China Tea,2020,42(2):35-39.[陈荣平,刘安兴,王文震,等. 武夷岩茶品质与土壤等微域环境因子的关系研究[J]. 中国茶叶,2020,42(2):35-39.]
    [8] Liu Y,Sun L L,Liao H. Effects of nutrient management on soil fertility and tea quality in Anxi tea plantation[J]. Acta Pedologica Sinica,2020,57(4):917-927.[刘扬,孙丽莉,廖红. 养分管理对安溪茶园土壤肥力及茶叶品质的影响[J]. 土壤学报,2020,57(4):917-927.]
    [9] Zhou Z,Liu Y,Zhang L M,et al. Soil nutrient status in Wuyi tea region and its effects on tea quality-related constituents[J]. Scientia Agricultura Sinica,2019,52(8):1425-1434.[周志,刘扬,张黎明,等. 武夷茶区茶园土壤养分状况及其对茶叶品质成分的影响[J]. 中国农业科学,2019,52(8):1425-1434.]
    [10] Ye J H,Zhang Q,Lin S,et al. Correlation of growth and fresh leaf quality of Dahongpao tea tree with soil characteristics[J]. Journal of Forest and Environment,2019,39(5):488-496.[叶江华,张奇,林生,等. 大红袍茶树生长及鲜叶品质与土壤特性的相关性[J]. 森林与环境学报,2019,39(5):488-496.]
    [11] Chen H K,Yang J F. Effect of soil's micronutrient element on the quality of Wuyi Rougui tea[J]. Subtropical Plant Science,2014,43(3):216-221.[陈华葵,杨江帆. 土壤微量营养元素对武夷肉桂茶品质的影响[J]. 亚热带植物科学,2014,43(3):216-221.]
    [12] Zhao M. Effect of copper and zinc nutrition on the biochemical quality of tea[D]. Kunming:Yunan Agricultural University,2016.[赵萌. 铜、锌营养对茶叶生化品质的影响[D]. 昆明:云南农业大学,2016.]
    [13] Chang S Q. Effects of Mn on tea plant growth and tea leaf quality of Fudingdabai and Zhuyeqi[D]. Changsha:Hunan Agricultural University,2006.[常硕其. 锰对福鼎大白茶和槠叶齐茶苗生长发育及茶叶品质的影响[D]. 长沙:湖南农业大学,2006.]
    [14] Sun L L,Liu Y,Wu L Q,et al. Comprehensive analysis revealed the close relationship between N/P/K status and secondary metabolites in tea leaves[J]. ACS Omega,2019,4(1):176-184.
    [15] Kováčik J,Klejdus B. Induction of phenolic metabolites and physiological changes in chamomile plants in relation to nitrogen nutrition[J]. Food Chemistry,2014,142:334-341.
    [16] Liu M Y,Burgos A,Zhang Q F,et al. Analyses of transcriptome profiles and selected metabolites unravel the metabolic response to NH4+ and NO3-as signaling molecules in tea plant(Camellia sinensis L.)[J]. Scientia Horticulturae,2017,218:293-303.
    [17] Ruan J Y,Ma L F,Shi Y Z. Potassium management in tea plantations:Its uptake by field plants,status in soils,and efficacy on yields and quality of teas in China†[J]. Journal of Plant Nutrition and Soil Science,2013,176(3):450-459.
    [18] Sharma D K,Sharma K L. Effect of nitrogen and potash application on yield and quality of China hybrid tea(Camellia sinensis)grown in kangra valley of Himachal pradesh[J]. Indian Journal of Agricultural Sciences,1998,68(6):307-309.
    [19] Ren H B,Wan Z J,Xu J,et al. Effects of soil avaible mineral elements on the mineral elements and quality of tea leaves in Laoshan[J]. Newsletter of Sericulture and Tea,2008(2):28-30.[任宏波,万中杰,许静,等. 崂山茶产区土壤中有效态矿质元素对茶叶中矿质元素及其品质的影响[J]. 蚕桑茶叶通讯,2008(2):28-30.]
    [20] Bao S D. Analysis for soil and agrochemistry[M]. 3rd ed. Beijing:China Agriculture Press,2000:25-188.[鲍士旦. 土壤农化分析[M]. 3版. 北京:中国农业出版社,2000:25-188.]
    [21] Qin L,Zhao J,Tian J,et al. The high-affinity phosphate transporter GmPT5 regulates phosphate transport to nodules and nodulation in soybean[J]. Plant Physiology,2012,159(4):1634-1643.
    [22] Sun L L,Chen Z J,Liu P D,et al. Cloning and analysis of the phosphate transporter protein SgPT1 from Stylosanthes[J]. Acta Prataculturae Sinica,2013,22(4):187-196.[孙丽莉,陈志坚,刘攀道,等. 柱花草磷转运蛋白SgPT1的克隆和表达分析[J]. 草业学报,2013,22(4):187-196.]
    [23] Yao Y M. Factors related to the quality characteristics of Wuyi rock tea[J]. Tea in Fujian,1997,19(3):25-26.[姚月明. 形成武夷岩茶品质特征的相关因子[J]. 福建茶叶,1997,19(3):25-26.]
    [24] Sun W J,Chen Q B,Lin D L,et al. Differences of soils and nutrition elements between production areas of the tea of Wuyi Yancha[J]. Journal of Fujian Agricultural and Forestry University,2008,37(1):47-50.[孙威江,陈泉宾,林锻炼,等. 武夷岩茶不同产地土壤与茶树营养元素的差异[J]. 福建农林大学学报,2008,37(1):47-50.]
    [25] Ye G S,Du Q Y,Chen H R,et al. Studies on tea geography of Wuyishan from the perspective of ecological civilization[J]. Agricultural Archaeology,2019(2):89-93.[叶国盛,杜茜雅,陈泓蓉,等. 生态文明视野下武夷山茶叶地理研究[J]. 农业考古,2019(2):89-93.]
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薛俊鹏,卓座品,刘扬,周志,黄泓晶,许锐能,郭子龙,孙丽莉,陈志长,廖红.武夷岩茶中矿质养分的地域性差异及影响因素[J].土壤学报,2022,59(2):528-535. DOI:10.11766/trxb202008170341 XUE Junpeng, ZHUO Zuopin, LIU Yang, ZHOU Zhi, HUANG Hongjing, XU Ruineng, GUO Zilong, SUN Lili, CHEN Zhichang, LIAO Hong. Variation of Wuyi Rock Tea in Mineral Nutrition with Region and Its Affecting Factors[J]. Acta Pedologica Sinica,2022,59(2):528-535.

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  • 收稿日期:2020-08-17
  • 最后修改日期:2020-10-30
  • 录用日期:2021-01-18
  • 在线发布日期: 2021-01-19
  • 出版日期: 2022-02-11
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