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AVONET: morphological, ecological and geographical data for all birds
Ecology Letters ( IF 7.6 ) Pub Date : 2022-02-24 , DOI: 10.1111/ele.13898
Joseph A Tobias 1, 2 , Catherine Sheard 2, 3 , Alex L Pigot 2, 4 , Adam J M Devenish 1 , Jingyi Yang 1 , Ferran Sayol 4 , Montague H C Neate-Clegg 2, 5 , Nico Alioravainen 2, 6 , Thomas L Weeks 1, 7 , Robert A Barber 1 , Patrick A Walkden 1, 7 , Hannah E A MacGregor 2, 8 , Samuel E I Jones 2, 9 , Claire Vincent 10 , Anna G Phillips 11 , Nicola M Marples 12 , Flavia A Montaño-Centellas 13, 14 , Victor Leandro-Silva 15 , Santiago Claramunt 16, 17 , Bianca Darski 18 , Benjamin G Freeman 19 , Tom P Bregman 2, 20 , Christopher R Cooney 21 , Emma C Hughes 21 , Elliot J R Capp 21 , Zoë K Varley 21, 22 , Nicholas R Friedman 23 , Heiko Korntheuer 24 , Andrea Corrales-Vargas 25 , Christopher H Trisos 2, 26, 27 , Brian C Weeks 28, 29 , Dagmar M Hanz 30 , Till Töpfer 31 , Gustavo A Bravo 32, 33 , Vladimír Remeš 34, 35 , Larissa Nowak 11, 36 , Lincoln S Carneiro 37 , Amilkar J Moncada R 38 , Beata Matysioková 34 , Daniel T Baldassarre 39 , Alejandra Martínez-Salinas 38 , Jared D Wolfe 40 , Philip M Chapman 41 , Benjamin G Daly 2 , Marjorie C Sorensen 42 , Alexander Neu 11, 43 , Michael A Ford 44 , Rebekah J Mayhew 45 , Luis Fabio Silveira 46 , David J Kelly 12 , Nathaniel N D Annorbah 47 , Henry S Pollock 48 , Ada M Grabowska-Zhang 49 , Jay P McEntee 50 , Juan Carlos T Gonzalez 2, 51, 52 , Camila G Meneses 51 , Marcia C Muñoz 53 , Luke L Powell 54, 55, 56 , Gabriel A Jamie 57, 58 , Thomas J Matthews 59, 60 , Oscar Johnson 61 , Guilherme R R Brito 62 , Kristof Zyskowski 63 , Ross Crates 64 , Michael G Harvey 65 , Maura Jurado Zevallos 66 , Peter A Hosner 67, 68 , Tom Bradfer-Lawrence 45 , James M Maley 69 , F Gary Stiles 70 , Hevana S Lima 71 , Kaiya L Provost 29, 72 , Moses Chibesa 73 , Mmatjie Mashao 74 , Jeffrey T Howard 61, 75 , Edson Mlamba 76 , Marcus A H Chua 77, 78 , Bicheng Li 79 , M Isabel Gómez 80 , Natalia C García 81 , Martin Päckert 82 , Jérôme Fuchs 83 , Jarome R Ali 84 , Elizabeth P Derryberry 85 , Monica L Carlson 84 , Rolly C Urriza 86 , Kristin E Brzeski 40 , Dewi M Prawiradilaga 87 , Matt J Rayner 88, 89 , Eliot T Miller 90 , Rauri C K Bowie 91 , René-Marie Lafontaine 92 , R Paul Scofield 93 , Yingqiang Lou 94 , Lankani Somarathna 95 , Denis Lepage 96 , Marshall Illif 90 , Eike Lena Neuschulz 11 , Mathias Templin 11 , D Matthias Dehling 97 , Jacob C Cooper 98 , Olivier S G Pauwels 99 , Kangkuso Analuddin 100 , Jon Fjeldså 67, 68 , Nathalie Seddon 101 , Paul R Sweet 29 , Fabrice A J DeClerck 102 , Luciano N Naka 15 , Jeffrey D Brawn 48 , Alexandre Aleixo 103 , Katrin Böhning-Gaese 11, 36 , Carsten Rahbek 67, 68, 104, 105 , Susanne A Fritz 11, 106 , Gavin H Thomas 21, 22 , Matthias Schleuning 11
Affiliation  

Functional traits offer a rich quantitative framework for developing and testing theories in evolutionary biology, ecology and ecosystem science. However, the potential of functional traits to drive theoretical advances and refine models of global change can only be fully realised when species-level information is complete. Here we present the AVONET dataset containing comprehensive functional trait data for all birds, including six ecological variables, 11 continuous morphological traits, and information on range size and location. Raw morphological measurements are presented from 90,020 individuals of 11,009 extant bird species sampled from 181 countries. These data are also summarised as species averages in three taxonomic formats, allowing integration with a global phylogeny, geographical range maps, IUCN Red List data and the eBird citizen science database. The AVONET dataset provides the most detailed picture of continuous trait variation for any major radiation of organisms, offering a global template for testing hypotheses and exploring the evolutionary origins, structure and functioning of biodiversity.

中文翻译:

AVONET:所有鸟类的形态、生态和地理数据

功能性状为进化生物学、生态学和生态系统科学中的理论开发和测试提供了丰富的定量框架。然而,功能性状在推动理论进步和完善全球变化模型方面的潜力只有在物种水平信息完整的情况下才能完全实现。在这里,我们展示了 AVONET 数据集,其中包含所有鸟类的综合功能特征数据,包括 6 个生态变量、11 个连续形态特征以及范围大小和位置信息。原始形态测量来自 181 个国家的 11,009 种现存鸟类的 90,020 个体。这些数据也被总结为三种分类格式的物种平均值,允许与全球系统发育、地理范围图、IUCN 红色名录数据和 eBird 公民科学数据库。AVONET 数据集提供了生物体任何主要辐射的连续性状变异的最详细图片,为检验假设和探索生物多样性的进化起源、结构和功能提供了一个全球模板。
更新日期:2022-02-24
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