在尼日尔,预期的未来气候将比目前的气候为messpiliformis Hochst提供更好的条件。A.DC交货。富有。

A. Ali, Laouali Abdou, M. Inoussa, J. Seghieri, A. Mahamane
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引用次数: 0

摘要

人类利用植物资源和土地来面对日益增长的人口需求,使非洲一些有用的多用途物种如messpiliformis Hochst的回归甚至消失。A.里奇。日益增加的气候变化是对这些物种的另一个威胁。本研究旨在确定在尼日尔可能有利于中螺虫保护或再生的区域,并分析当前气候变化的影响。为此,利用最大熵原理(MaxEnt),收集拟裂裂螺的地理坐标、生物气候数据、土壤和植被覆盖度,对拟裂裂螺的分布区域进行评估。土壤覆盖度、年累积降水量和平均气温是最具决定性的变量。本研究还表明,拟螺旋藻的生态位位于中东部生物气候中,在当前气候条件下,该生态位内几乎有3%的地表非常有利,可能达到3%。94%在2050年之后。这些结果表明,预计尼日尔的气候变化将比目前的气候条件更有利于研究物种。这为它的驯化提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In Niger, the Expected Futur Climate Will Provide Better Conditions than the Current One to Diospyros Mespiliformis Hochst. ex A.DC. Rich.
The human use of plant resources and land to face increasing population needs in Africa to the regression or even the disappearance of some useful multi-purpose species such as Diospyros mespiliformis Hochst. Ex A. Rich. Increasing climatic variability is an additional threat for these species. The present study aims to identify the areas that are potentially favorable to D. mespiliformis conservation or regeneration in Niger and to analyze the impact of the current climate change. Thus to assess the D. mespiliformis distribution areas, the geographic coordinates of D. mespiliformis, the bioclimatic data, the soil and vegetation cover were collected and used to modeling based on the principle of maximum entropy (MaxEnt). The soil cover, annual cumulated precipitations and the average temperature are the most determining variables. This study also shows that the ecological niche of D. mespiliformis is located in the Central and Eastern bioclimates, within which almost 3% of the surface is very favorable under the current climate conditions and may reach 3. 94 % under 2050 ones after. These results indicate that the climate change expected in Niger is expected to be more favorable to the studied species than the current climate conditions. This represents an opportunity for its domestication.
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