Effects of Tea Plant Varieties with High- and Low-Nutrient Efficiency on Nutrients in Degraded Soil
文献类型: 外文期刊
作者: Ruan, Li 1 ; Li, Xin 2 ; Song, Yuhang 2 ; Li, Jianwu 1 ; Palansooriya, Kumuduni Niroshika 4 ;
作者机构: 1.Zhejiang Acad Agr Sci, Inst Sericulture & Tea, Hangzhou 310021, Peoples R China
2.Zhejiang A&F Univ, Inst Carbon Neutral, Hangzhou 311300, Peoples R China
3.Tangshan Agr & Rural Bur, Agr Technol Extens Stn, Tangshang 063000, Peoples R China
4.Zhejiang A&F Univ, State Key Lab Subtrop Silviculture, Hangzhou 311300, Peoples R China
关键词: tea plant varieties; soil nutrient; soil degradation; soil profile
期刊名称:PLANTS-BASEL ( 影响因子:4.5; 五年影响因子:4.8 )
ISSN:
年卷期: 2023 年 12 卷 4 期
页码:
收录情况: SCI
摘要: Tea plants are widely planted in tropical and subtropical regions globally, especially in southern China. The high leaching and strong soil acidity in these areas, in addition to human factors (e.g., tea picking and inappropriate fertilization methods) aggravate the lack of nutrients in tea garden soil. Therefore, improving degraded tea-growing soil is urgently required. Although the influence of biological factors (e.g., tea plant variety) on soil nutrients has been explored in the existing literature, there are few studies on the inhibition of soil nutrient degradation using different tea plant varieties. In this study, two tea plant varieties with different nutrient efficiencies (high-nutrient-efficiency variety: Longjing43 (LJ43); low-nutrient-efficiency variety: Liyou002 (LY002)) were studied. Under a one-side fertilization mode of two rows and two plants, the tea plant growth status, soil pH, and available nutrients in the soil profiles were analyzed, aiming to reveal the improvement of degraded soil using different tea varieties. The results showed that (1) differences in the phenotypic features of growth (such as dry tea yield, chlorophyll, leaf nitrogen (N), phosphorus (P), and potassium (K) content) between the fertilization belts in LJ43 (LJ43-near and LJ43-far) were lower than those in LY002. (2) RDA results showed that the crucial soil nutrient factors which determine the features of tea plants included available P, slowly available K, and available K. Moreover, acidification was more serious near the fertilization belt. The pH of the soil near LJ43 was higher than that near LY002, indicating an improvement in soil acidification. (3) Soil nutrient heterogeneity between fertilization belts in LJ43 (LJ43-near and LJ43-far) was lower than in LY002. In conclusion, the long-term one-side fertilization mode of two rows and two plants usually causes spatial heterogeneities in soil nutrients and aggravates soil acidification. However, LJ43 can reduce the nutrient heterogeneities and soil acidification, which is probably due to the preferential development of secondary roots. These results are helpful in understanding the influence of tea plant variety on improving soil nutrients and provide a relevant scientific reference for breeding high-quality tea varieties, improving the state of degraded soil and maintaining soil health.
- 相关文献
作者其他论文 更多>>
-
Fertilizer Effects on the Nitrogen Isotope Composition of Soil and Different Leaf Locations of Potted Camellia sinensis over a Growing Season
作者:Guo, Zuchuang;Huang, Tao;Guo, Zuchuang;Li, Chunlin;Shao, Shengzhi;Rogers, Karyne M.;Yuan, Yuwei;Li, Xin;Rogers, Karyne M.;Li, Qingsheng;Li, Da;Guo, Haowei
关键词:tea plants; Camellia sinensis; fertilizer; nitrogen isotopes; leaf locations; temporal variation
-
Systemic H2O2 signaling mediates epigallocatechin-3-gallate-induced cadmium tolerance in tomato
作者:Cheng, Yuan;Ye, Qing-Jing;Li, Zhi-Miao;Li, Xin;Fang, Ming-Ya;Ahammed, Golam Jalal;Ahammed, Golam Jalal
关键词:Cadmium; Flavonoids; Hydrogen peroxide; Phytotoxicity; RBOH1
-
Root Foraging Strategy Improves the Adaptability of Tea Plants (Camellia sinensis L.) to Soil Potassium Heterogeneity
作者:Ruan, Li;Li, Jianwu;Chang, Scott X.;Ruan, Li;Cheng, Hao;Ludewig, Uwe;Chang, Scott X.
关键词:cellulose decomposition; F1 hybrid population; low-K tolerant; organic acids; root development
-
Whole-genome resequencing of the wheat A subgenome progenitor Triticum urartu provides insights into its demographic history and geographic adaptation
作者:Wang, Xin;Li, Yiwen;Yang, Wenlong;Sun, Jiazhu;Li, Xin;Ling, Hongqing;Zhang, Aimin;Liu, Dongcheng;Zhang, Aimin;Wang, Xin;Zhou, Shengjun;Hu, Yafei;He, Weiming;Yu, Kang;Zhang, Chi;Zheng, Fengya;Zhao, Shancen;Kong, Lingrang;Yu, Kang;Zhao, Shancen
关键词:Triticum urartu; whole-genome resequencing; demographic history; geographic adaptation; selective sweep; GWAS
-
Combined transcriptomic and metabolic analyses reveal potential mechanism for fruit development and quality control of Chinese raspberry (Rubus chingii Hu)
作者:Chen, Zhen;Shu, Liangzuo;Huang, Jing;Qian, Baoying;Wang, Xiaoyan;Li, Xin;Chen, Jiangxia;Jiang, Jingyong;Li, Xiaobai;Xu, Haidan
关键词:Rubus chingii Hu; Transcriptome; Metabolome; Ellagic acid; Kaempferol-3-O-rutinoside
-
Effect of the ACAA1 Gene on Preadipocyte Differentiation in Sheep
作者:Wang, Yanli;Li, Xin;Xiao, Cheng;Liu, Yu;Jin, Haiguo;Cao, Yang;Cao, Yang
关键词:ACAA1 gene; preadipocyte differentiation; sheep; lipid metabolism; adipogenesis
-
Generation of Marker-Free Transgenic Rice Resistant to Rice Blast Disease Using Ac/Ds Transposon-Mediated Transgene Reintegration System
作者:Li, Xin;Pan, Longyu;Bi, Dongling;Tian, Xudan;Li, Lihua;Xu, Zhaomeng;Wang, Lanlan;Zou, Xiaowei;Gao, Xiaoqing;Yang, Haihe;Qu, Haiyan;Yuan, Zhengjie;He, Haiyan;Qu, Shaohong;Pan, Longyu;Tian, Xudan;Xu, Zhaomeng;Li, Lihua;Zhao, Xiangqian
关键词:rice; rice blast (Magnaporthe oryzae); disease resistance gene; selection marker; Ac; Ds transposable element; marker-free transgenic plant