Q4 Agricultural and Biological Sciences
Arctoa Pub Date : 2018-12-01 DOI:10.15298/arctoa.27.03
D. Sandanov, O. Pisarenko
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引用次数: 7

摘要

这项工作的主要目的是测试生物气候模拟方法对苔藓的适用性。苔藓植物由于体型微小,局限于微生境,可以改变气候因子的影响。以鳞片十字桃为试验对象。利用最大熵(MaxEnt)模型,基于4个不同体积的数据集(24 ~ 267个点),模拟了该物种在世界范围内的潜在适宜气候区。所有模型都具有有效的AUC值(AUC=0.72 ~ 0.96)。计算结果表明,决定squamiferum分布的最重要变量是BIO4(温度季节性)和BIO8(最湿季平均温度)。西伯利亚南部物种的栖息地标志着欧亚大陆物种区域的北部气候边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioclimatic modeling of Crossidium squamiferum (Viv.) Jur. (Pottiaceae, Bryophyta) distribution
The main purpose of the work was to test the applicability of bioclimatic modeling methods to mosses. Due to tiny size bryophyta are confined to micro-habitats, which can transmute the influence of climatic factors. Crossidium squamiferum was taken as test object. Potentially suitable climatic area of the species in the world was simulated using maximum entropy (MaxEnt) modeling on base of four datasets different in volume (from 24 to 267 points). All the models are characterized by valid AUC values (from AUC=0.72 to AUC=0.96). According to the calculations, the most important variables determining the distribution of C. squamiferum are BIO4 (Temperature seasonality) and BIO8 (mean temperature of the wettest quarter). Habitats of the species in southern Siberia mark the Northern climatic boundary of the species area in Eurasia.
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来源期刊
Arctoa
Arctoa Agricultural and Biological Sciences-Plant Science
CiteScore
1.20
自引率
0.00%
发文量
9
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