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Temporal variation in nutrient requirements of tea (Camellia sinensis) in China based on QUEFTS analysis.


ABSTRACT: Fertilisation datasets collected from field experiments (n?=?21) in tea-producing areas from 2016 to 2018 were used to build a quantitative evaluation of the fertility of tropical soils (QUEFTS) model to estimate nutrient uptake of tea plants, and to investigate relationships between tea yield and nutrient accumulation. The production of 1000?kg spring tea (based on one bud with two young expanding leaves) required 12.2?kg nitrogen (N), 1.2?kg phosphorus (P), and 3.9?kg potassium (K), and the corresponding internal efficiencies (IEs) for N, P, and K were 82.0, 833.3, and 256.4?kg?kg-1. To produce 1000?kg summer tea, 9.1?kg?N, 0.8?kg?P, and 3.1?kg?K were required, and the corresponding IEs for N, P, and K were 109.9, 1250.0, and 322.6?kg?kg-1. For autumn tea, 8.8?kg?N, 1.0?kg?P, and 3.2?kg?K were required to produce 1000?kg tea, and the corresponding IEs for N, P, and K were 113.6, 1000.0, and 312.5?kg?kg-1. Field validation experiments performed in 2019 suggested that the QUEFTS model can appropriately estimate nutrient uptake of tea plants at a certain yield and contribute to developing a fertiliser recommendation strategy for tea production.

SUBMITTER: Tang S 

PROVIDER: S-EPMC7000836 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Temporal variation in nutrient requirements of tea (Camellia sinensis) in China based on QUEFTS analysis.

Tang Sheng S   Liu Yanling Y   Zheng Nan N   Li Yu Y   Ma Qingxu Q   Xiao Han H   Zhou Xuan X   Xu Xinpeng X   Jiang Taiming T   He Ping P   Wu Lianghuan L  

Scientific reports 20200204 1


Fertilisation datasets collected from field experiments (n = 21) in tea-producing areas from 2016 to 2018 were used to build a quantitative evaluation of the fertility of tropical soils (QUEFTS) model to estimate nutrient uptake of tea plants, and to investigate relationships between tea yield and nutrient accumulation. The production of 1000 kg spring tea (based on one bud with two young expanding leaves) required 12.2 kg nitrogen (N), 1.2 kg phosphorus (P), and 3.9 kg potassium (K), and the co  ...[more]

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