Assessing the Impacts of Climate Change on Geographical Distribution of Tea (Camellia sinensis L.) in Kenya with Maximum Entropy Model
文献类型: 外文期刊
第一作者: Tesfay, Goitom
作者: Tesfay, Goitom;Zhao, Mingyue;Li, Kuo;Demelash, Tsedale;Xu, Yinlong;Tesfay, Goitom;Zhao, Yuncheng
作者机构:
关键词: climate tea suitable habitats; MaxEnt model
期刊名称:AGRONOMY-BASEL ( 影响因子:3.4; 五年影响因子:3.8 )
ISSN:
年卷期: 2024 年 14 卷 9 期
页码:
收录情况: SCI
摘要: Climate change has been disturbing the present species distribution ranges, resulting in the shifting of cultivation areas and decreases in production and quality. Tea (Camellia sinensis L.), which seeks optimum climatic resources, is a key cash crop economically in Kenya. In this study, the shifting of tea suitability was projected with the MaxEnt model under the SSP (SSP1-2.6, SSP2-4.5, SSP3-7.0, and SSP5-8.5) climate scenarios for the 2050s and 2090s relative to the 1970-2000 distribution. Analysis under the current climatic condition showed that the proportions of optimal and medium- and marginal-suitable areas were 2%, 3%, and 24% of the total area, respectively, and located in south-western (SW), central, and north-eastern (NE) Kenya and, to some extent, in the Rift Valley. It was projected that the potential suitable tea-growing areas would migrate from the western areas to the central, eastern, and north-eastern highlands in Kenya. It was detected that the precipitation of the driest period (July), precipitation of the wettest quarter (April, May, and June), and annual temperature range could be the main climatic factors determining the shift in tea distribution. Compared to the current distribution (29%), the climatically suitable areas for tea production could reach 32.58% of Kenya's land area under the SSP1-2.6 scenarios in the 2050s and 35.08% in the 2090s under the SSP5-8.5 scenario. On the contrary, it was found that the optimal climate-suitable habitats were projected to shrink by 2% and 1% in the 2050s and 2090s under all scenarios on the west side of the Great Rift Valley compared to the current distribution. In comparison, the sizes of medium- and marginal-suitable habitats would increase by 1% and 3%, respectively. The findings indicated that unless adaptive climate actions are taken, climate change could reduce the tea planting areas in western Kenya. Meanwhile, climate suitability was projected to expand upward on the east side of the Rift Valley, enhancing the potential distribution of tea. The developed climate information could be used to design and implement adaptation interventions in the lower elevation areas. Finally, we highlight that the available scientific literature on the climate suitability of tea in Kenya should be broadened by adding non-climatic factors.
分类号:
- 相关文献
作者其他论文 更多>>
-
Natural variation of CsUGT71A60 determines growth and cold tolerance via regulating cytokinin glycosylation in Camellia sinensis
作者:Zhao, Mingyue;Wang, Jingming;Jin, Jieyang;Wang, Yueyue;Zhang, Mengting;Jing, Tingting;Gao, Ting;Song, Chuankui;Hao, Xinyuan;Tang, Junwei;Wang, Xinchao;Hao, Xinyuan;Tang, Junwei;Wang, Xinchao;Schwab, Wilfried
关键词:GWAS;
Camellia sinensis ; cis-zeatin; glucosyltransferase; balancing growth and cold tolerance -
Cold Stress-Induced (Z)-3-Hexenol and Thymol Enhance Cold Tolerance of Tea Plants by Activating Ca2+Signalling
作者:Liu, Yuantao;Song, Yaling;Luo, Zhengwei;Wang, Lisha;Jin, Jieyang;Jing, Tingting;Zhao, Mingyue;Wang, Qiang;Schwab, Wilfried;Song, Chuankui;Liu, Yuantao;Ye, Meng;Schwab, Wilfried
关键词:(Z)-3-hexenol; Ca2+signalling; cold stress; Fluo-8; tea plants; thymol; VOCs
-
Carbon emissions peak of China's apple cultivation achieved in 2014: a comprehensive analysis and implications
作者:Zhang, Jingyu;Li, Yingchun;Ma, Fen;Han, Xue;Li, Kuo;Zhao, Mingyue;Ma, Xin;Wang, Yanqun;Peng, Zhengping;Peng, Zhengping
关键词:Carbon peak; Carbon footprint; Life cycle assessment; Chinese apple
-
Climate change adaptation technology development of key socioeconomic sectors and ecosystem in China
作者:Xu, Yin-Long;Li, Kuo;Zhang, Xin-Yue;Zhao, Ming-Yue
关键词:Climate risks; Adaptation technology system; Innovation; Adaptive capacity; China
-
Spatiotemporal Trends of the Carbon Footprint of Sugar Production in China
作者:Li, Kuo;Zhao, Mingyue;Li, Yingchun;Han, Xue;Ma, Xin;Ma, Fen;He, Yutong
关键词:Carbon footprint; Sugar production; Sugarcane; Sugarbeet; Life cycle assessment
-
Elevated atmospheric CO2 promotes the contribution of autotrophic nitrification to N2O emissions in a typical summer maize field
作者:Ma, Fen;Li, Yingchun;Liu, Ying;Dong, Libing;Han, Xue;Zhang, Xinyue;Li, Kuo;Guo, Liping;Dong, Libing
关键词:N2O production pathways; Autotrophic nitrification; Microbial functional genes; Climate change; Elevated atmospheric CO2; N-15 tracing
-
Low-Carbon Ecological Tea: The Key to Transforming the Tea Industry towards Sustainability
作者:Zhang, Waner;Chen, Youcheng;Ma, Yongqiang;Zhang, Waner;Zhao, Mingyue;Xu, Yinlong;Fan, Shuisheng
关键词:low-carbon ecological products; ecosystem services; tea industry; industrial chain; stakeholders