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利用集成建模框架对全球和极区自然发生炭疽的生态位进行建模。

Modelling the ecological niche of naturally occurring anthrax at global and circumpolar extents using an ensemble modelling framework.

机构信息

Centers for Disease Control and Prevention, Atlanta, Georgia, USA.

出版信息

Transbound Emerg Dis. 2022 Sep;69(5):e2563-e2577. doi: 10.1111/tbed.14602. Epub 2022 Jun 8.

Abstract

Bacillus anthracis, the causative agent of anthrax, is a spore-forming bacterium that primarily affects herbivorous livestock, wildlife and humans exposed to direct contact with infected animal carcasses or products. To date, there are a limited number of studies that have delineated the potential global distribution of anthrax, despite the importance of the disease from both an economic and public health standpoint. This study compiled occurrence data (n = 874) of confirmed human and animal cases from 1954 to 2021 in 94 countries. Using an ensemble ecological niche model framework, we developed updated maps of the global predicted ecological suitability of anthrax to measure relative risk at multiple scales of analysis, including a model for circumpolar regions. Additionally, we produced maps quantifying the disease transmission risk associated with anthrax to cattle, sheep and goat populations. Environmental suitability for B. anthracis globally is concentred throughout Eurasia, sub-Saharan Africa, the Americas, Southeast Asia, Australia and Oceania. Suitable environments for B. anthracis at the circumpolar scale extend above the Arctic Circle into portions of Russia, Canada, Alaska and northern Scandinavia. Environmental factors driving B. anthracis suitability globally include vegetation, land surface temperature, soil characteristics, primary climate conditions and topography. At the circumpolar scale, suitability is influenced by soil factors, topography and the derived climate characteristics. The greatest risk to livestock is concentrated within the Indian subcontinent, Australia, Anatolia, the Caucasus region, Central Asia, the European Union, Argentina, Uruguay, China, the United States, Canada and East Africa. This study expands on previous work by providing enhanced knowledge of the potential spatial distribution of anthrax in the Southern Hemisphere, sub-Saharan Africa, Asia and circumpolar regions of the Northern Hemisphere. We conclude that these updated maps will provide pertinent information to guide disease control programs, inform policymakers and raise awareness at the global level to lessen morbidity and mortality among animals and humans located in environmentally suitable areas.

摘要

炭疽杆菌是炭疽病的病原体,是一种形成孢子的细菌,主要影响草食性牲畜、野生动物和直接接触受感染动物尸体或产品的人类。尽管从经济和公共卫生的角度来看,炭疽病都很重要,但迄今为止,仅有数量有限的研究详细描述了炭疽病的潜在全球分布情况。本研究汇编了 1954 年至 2021 年期间 94 个国家中 874 例确诊的人类和动物病例的发病数据。我们使用集合生态位模型框架,开发了更新的炭疽全球预测生态适宜性地图,以在多个分析尺度上衡量相对风险,包括极地地区模型。此外,我们还制作了地图来量化炭疽对牛、绵羊和山羊种群的疾病传播风险。炭疽在全球的环境适宜性主要集中在欧亚大陆、撒哈拉以南非洲、美洲、东南亚、澳大利亚和大洋洲。极地地区炭疽的适宜环境范围扩展到北极圈以上,包括俄罗斯、加拿大、阿拉斯加和斯堪的纳维亚北部的部分地区。驱动全球炭疽适宜性的环境因素包括植被、地表温度、土壤特征、主要气候条件和地形。在极地地区,适宜性受土壤因素、地形和衍生气候特征的影响。对牲畜的最大威胁集中在印度次大陆、澳大利亚、安纳托利亚、高加索地区、中亚、欧盟、阿根廷、乌拉圭、中国、美国、加拿大和东非。本研究通过提供对南半球、撒哈拉以南非洲、亚洲和北半球极地地区炭疽潜在空间分布的更深入了解,扩展了以前的工作。我们得出的结论是,这些更新的地图将为指导疾病控制计划提供相关信息,为决策者提供信息,并在全球范围内提高认识,以减轻位于环境适宜地区的动物和人类的发病率和死亡率。

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