A systematic map of studies testing the relationship between temperature and animal reproduction

A systematic map of studies testing the relationship between temperature and animal reproduction
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测试温度与动物繁殖之间关系的系统研究图

DOI:
10.1002/2688-8319.12303
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发表时间:
2024
影响因子:
2.9
通讯作者:
Dougherty L
Dougherty L
中科院分区:
--
文献类型:
--
作者:
Dougherty L

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暴露在极端温度下会破坏个体产生任何后代的能力(生育力)或可育个体产生的后代数量(繁殖力),从而对动物繁殖产生负面影响。这具有重要的生态后果,因为繁殖是种群适应性的最终衡量标准:繁殖产出的减少降低了种群增长率,增加了灭绝的风险。尽管这一点很重要,但目前还没有对温度对生殖影响的证据进行大规模总结。我们提供了一个系统的研究图,测试温度和动物繁殖之间的关系。我们系统地检索了已发表的研究,这些研究在统计上测试了温度与动物繁殖之间的直接联系,包括生育力、繁殖力或生殖潜力的间接测量(配子和性腺性状)。总的来说,我们整理了一个庞大而丰富的证据基础,有1654篇论文符合我们的纳入标准,涵盖了1191个物种。这张地图揭示了几个重要的研究空白。昆虫几乎占了数据集的一半,但爬行动物和两栖动物并不常见,非节肢动物无脊椎动物也不常见。生育能力是最常见的生殖特征,相对较少的研究测量生育能力。很少有实验研究测试不同生命阶段的暴露,暴露于短期热休克或冷休克,暴露于温度波动,或独立评估男性和女性的影响。研究最常发表在昆虫学和病虫害防治、生态学和进化、水产养殖和渔业科学以及海洋生物学等方面的期刊上。最后,虽然每个大陆都有样本,但在北半球中纬度地区存在强烈的抽样偏差,因此热带和极地地区的样本较少。这张地图揭示了大量测试温度与动物繁殖之间关系的研究文献,但也揭示了对分类群、性状和温度制度的大量缺失。该数据库将为未来的定量元分析提供宝贵的资源,并指导未来的研究,旨在填补已确定的空白。
Exposure to extreme temperatures can negatively affect animal reproduction, by disrupting the ability of individuals to produce any offspring (fertility), or the number of offspring produced by fertile individuals (fecundity). This has important ecological consequences, because reproduction is the ultimate measure of population fitness: a reduction in reproductive output lowers the population growth rate and increases the extinction risk. Despite this importance, there have been no large‐scale summaries of the evidence for effect of temperature on reproduction.We provide a systematic map of studies testing the relationship between temperature and animal reproduction. We systematically searched for published studies that statistically test for a direct link between temperature and animal reproduction, in terms of fertility, fecundity or indirect measures of reproductive potential (gamete and gonad traits).Overall, we collated a large and rich evidence base, with 1654 papers that met our inclusion criteria, encompassing 1191 species.The map revealed several important research gaps. Insects made up almost half of the dataset, but reptiles and amphibians were uncommon, as were non‐arthropod invertebrates. Fecundity was the most common reproductive trait examined, and relatively few studies measured fertility. It was uncommon for experimental studies to test exposure of different life stages, exposure to short‐term heat or cold shock, exposure to temperature fluctuations, or to independently assess male and female effects. Studies were most often published in journals focusing on entomology and pest control, ecology and evolution, aquaculture and fisheries science, and marine biology. Finally, while individuals were sampled from every continent, there was a strong sampling bias towards mid‐latitudes in the Northern Hemisphere, such that the tropics and polar regions are less well sampled.This map reveals a rich literature of studies testing the relationship between temperature and animal reproduction, but also uncovers substantial missing treatment of taxa, traits, and thermal regimes. This database will provide a valuable resource for future quantitative meta‐analyses, and direct future studies aiming to fill identified gaps.
DOI: 10.1016/j.cbpa.2016.03.020
发表时间: 2016-08-01
影响因子: 2.3
作者:
Delorme, Natali J.;Sewell, Mary A.
通讯作者: Sewell, Mary A.
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DOI: --
发表时间: 2008
期刊:
影响因子: --
作者:
G. G. Fernández
通讯作者: G. G. Fernández
气候介导的温度波动变化加剧了灭绝风险
DOI: 10.48550/arxiv.2202.12236
发表时间: 2022
期刊: ArXivorg
影响因子: --
作者:
Duffy, Kate;Gouhier, Tarik C.;Ganguly, Auroop R.
通讯作者: Ganguly, Auroop R.
DOI: 10.1073/pnas.1913007117
发表时间: 2020-02-25
影响因子: 11.1
作者:
Roman-Palacios, Cristian;Wiens, John J.
通讯作者: Wiens, John J.
发育温度波动对爬行动物表型性状的影响:荟萃分析。
DOI: --
发表时间: 2022
影响因子: 2.8
作者:
Rebecca S Raynal;D. Noble;J. Riley;A. Senior;D. Warner;G. While;L. Schwanz
通讯作者: L. Schwanz