方法与技术

贵州大沙河国家级自然保护区鸟兽多样性的红外相机监测初探

  • 李乔明 ,
  • 勾伟 ,
  • 姬程鹏 ,
  • 肖文宏 ,
  • 陈斯侃 ,
  • 肖治术
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  • 1 贵州大沙河国家级自然保护区管理局, 贵州 563500;
    2 中国科学院动物研究所农业虫鼠害综合治理研究国家重点实验室, 北京 100101;
    3 中国科学院大学生命科学学院, 北京 101407;
    4 贵州省林业调查规划院, 贵州 550001
李乔明(1982-),高级工程师,主要从事林业调查规划、野生动植物保护研究.

收稿日期: 2021-03-05

  修回日期: 2021-10-13

  网络出版日期: 2021-10-18

基金资助

大沙河国家级自然保护区鸟兽多样性红外相机监测(黔林科合J字[2019]14号);中国科学院中国生物多样性监测与研究网络运行项目

Camera-trapping survey of mammals and birds in the Guizhou Dashahe National Nature Reserve

  • LI Qiaoming ,
  • GOU Wei ,
  • JI Chengpeng ,
  • XIAO Wenhong ,
  • CHEN Sikan ,
  • XIAO Zhishu
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  • 1 Guizhou Management Bureau of Dashahe National Nature Reserve, Guizhou 563500, China;
    2 State Key Laboratory of Integrated Management of Pest Insects and Rodents in Agriculture, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China;
    3 College of Life Science, University of Chinese Academy of Sciences, Beijing 101407, China;
    4 Guizhou Institute of Forestry Survey and Planning, Guizhou 550001, China

Received date: 2021-03-05

  Revised date: 2021-10-13

  Online published: 2021-10-18

摘要

2016年12月至2019年8月,利用红外相机技术在贵州大沙河国家级自然保护区内对陆生大中型兽类和鸟类进行调查。本次调查设置85个1 km×1 km的公里网格和114个相机位点,共计19 950个相机工作日和10 767张独立有效照片。鉴定出鸟兽12目35科86种,其中兽类有5目14科25种和鸟类有7目21科61种,有4种国家Ⅰ级和19种国家Ⅱ级重点保护野生动物,保护区新纪录物种24种。相对多度指数和网格占有率较高的兽类为小麂(Muntiacus reevesi)、花面狸(Paguma larvata)和野猪(Sus scrofa);相对多度指数和网格占有率较高的鸟类为红腹角雉(Tragopan temminckii)、红腹锦鸡(Chrysolophus pictus)和红嘴相思鸟(Leiothrix argentauris)。本研究利用红外相机技术更新了大沙河国家级自然保护区陆生大中型兽类和鸟类本底资源,为保护区野生动物长期监测和保护管理工作奠定了重要基础。

本文引用格式

李乔明 , 勾伟 , 姬程鹏 , 肖文宏 , 陈斯侃 , 肖治术 . 贵州大沙河国家级自然保护区鸟兽多样性的红外相机监测初探[J]. 兽类学报, 2022 , 42(1) : 108 -117 . DOI: 10.16829/j.slxb.150536

Abstract

From December 2016 to August 2019, we set up 85 grids (1 km×1 km) and 114 camera-trapping stations to investigate the wildlife resources of mammals and birds in the Dashahe National Nature Reserve, Guizhou province, China. Our survey included 19 950 trap days and 10 767 independent pictures. We identified a total of 86 species from 35 families and 12 orders, including 25 species of mammals belonging to 14 families and 5 orders and 61 species of birds belonging to 21 families and 7 orders. Among them, 4 species were listed as Class Ⅰ and 19 species were listed as Class Ⅱ National Protected Wildlife in China, and 24 species were recorded for the first time in the Dashahe reserve. The most abundant mammal species based on the relative abundance index and grid occupancy were Muntiacus reevesi, Paguma larvata, and Sus scrofa. In addition, the most abundant bird species were Chrysolophus pictus, Tragopan temminckii, and Leiothrix argentauris. Our results provide basic information on the relative abundance of terrestrial wild mammals and birds for protection management and long-term monitoring in this reserve.

参考文献

Berzaghi F, Verbeeck H, Nielsen M R, Doughty C E, Bretagnolle F, Marchetti M, Scarascia-Mugnozza G. 2018. Assessing the role of megafauna in tropical forest ecosystems and biogeochemical cycles -the potential of vegetation models. Ecography, 41:1934-1954.
Bonnot N C, Couriot O, Berger A, Cagnacci F, Ciuti S, De Groeve J E, Gehr B, Heurich M, Kjellander P, Kroschel M, Morellet N, Sonnichsen L, Hewison A J M. 2020. Fear of the dark? Contrasting impacts of humans versus lynx on diel activity of roe deer across Europe. Journal of Animal Ecology, 89:132-145.
Dirzo R, Young H S, Galetti M, Ceballos G, Isaac N J B, Collen B. 2014. Defaunation in the Anthropocene. Science, 345:401-406.
Huang Z H, Zhou Q H, Huang C M, Meng Y J, Wei H. 2011. Home range and daily ranging distance of François'langur (Trachypithecus francoisi) in Nonggang Nature Reserve, Guangxi, China. Acta Theriologica Sinica, 31 (1):46-54. (in Chinese)
IUCN. 2021. The IUCN red list of threatened species.[2021-01-09]. http://www. iucnredlist. org.
Jiang Z G, Jiang J P, Wang Y Z, Zhang E, Zhang Y Y, Li L L, Zhang F, Cai B, Cao L, Zheng G M, Dong L, Zhang Z W, Ding P, Luo Z H, Ding C Q, Ma Z J, Tang S H, Cao W X, Li C W, Hu H J, Ma Y, Wu Y, Wang Y X, Zhou K Y, Liu S Y, Chen Y Y, Li J T, Feng Z J, Wang Y, Wang B, Li C, Song X L, Cai L, Zang C X, Zeng Y, Meng Z B, Fang H X, Ping X G. 2016. Red List of China's Vertebrates. Biodiversity Science, 24 (5):501-551, 615. (in Chinese)
Jiang Z G, Liu S Y, Wu Y, Jiang X L, Zhou K Y. 2017. China's mammalian diversity (the second edition). Biodiversity Science, 25(8):886-895. (in Chinese)
Karanth K U, Srivathsa A, Vasudev D, Puri M, Parameshwaran R, Kumar N S. 2017. Spatio-temporal interactions facilitate large carnivore sympatry across a resource gradient. Proceedings of the Royal Society B:Biological Sciences, 284 (1848):20161860. doi:10. 1098/rspb. 20161860
Li S, Wang D J, Xiao Z S, Li X H, Wang T M, Feng L M, Wang Y. 2014. Camera-trapping in wildlife research and conservation in China:Review and outlook. Biodiversity Science, 22 (6):685-695. (in Chinese)
Li S, McShea W J, Wang D, Gu X, Zhang X, Zhang L, Shen X. 2020. Retreat of large carnivores across the giant panda distribution range. Nature Ecology & Evolution, 4:1327-1331.
Liu J H, Wang Y, Bian K, Tang J, Wang W F, Guo L W, Wang B, Fang G, Zhao L, Qi X G. 2020. Home range utilization and individual dispersal of re-introduced forest musk deer (Moschus berezovskii). Acta Theriologica Sinica, 40 (2):109-119. (in Chinese)
McConkey K R, Nathalang A, Brockelman W Y, Saralamba C, Santon J, Matmoon U, Somnuk R, Srinoppawan K. 2018. Different megafauna vary in their seed dispersal effectiveness of the megafaunal fruit Platymitra macrocarpa (Annonaceae). PLoS ONE, 13:e0198960.
Monterroso P, Díaz-Ruiz F, Lukacs P M, Alves P C, Ferreras P. 2020. Ecological traits and the spatial structure of competitive coexistence among carnivores. Ecology, 101:e03059.
National Forestry and Grassland Administration. 2021. Wildlife under special state protection list.[2021-03-05]. http://www. forestry.gov. cn/html/main/main_3954/20210225160347342521589/file/20210225160401102702964. pdf. (in Chinese)
O' Brien T G, Kinnaird M F, Wibisono H T. 2003. Crouching tigers, hidden prey:Sumatran tiger and prey populations in a tropical forest landscape. Animal Conservation, 6 (2):131-139.
Rich L N, Davis C L, Farris Z J, Miller D A W, Tucker J M, Hamel S, Farhadinia M S, Steenweg R, Bitetti M S Di, Thapa K, Kane M D, Sunarto S, Robinson N P, Paviolo A, Cruz P, Martins Q, Gholikhani N, Taktehrani A, Whittington J, Widodo F A, Yoccoz N G, Wultsch C, Harmsen B J, Kelly M J. 2017. Assessing global patterns in mammalian carnivore occupancy and richness by integrating local camera trap surveys. Global Ecology and Biogeography, 26:918-929.
Ripple W J, Newsome T M, Wolf C, Dirzo R, Everatt K T, Galetti M, Hayward M W, Kerley G I H, Levi T, Lindsey P A, Macdonald D W, Malhi Y, Painter L E, Sandom C J, Terborgh J, Van Valkenburgh B. 2015. Collapse of the world's largest herbivores. Science Advances, 1:e1400103.
Tian C, Zhang Y Y, Liu Z X, Dayananda B, Fu X B, Yuan D, Tu Z B, Luo C P, Li J Q. 2020. Temporal niche patterns of large mammals in Wanglang National Nature Reserve, China. Global Ecology and Conservation, 22:e01015.
Wang F, McShea W J, Wang D, Li S. 2015. Shared resources between giant panda and sympatric wild and domestic mammals. Biological Conservation, 186:319-325.
Xiao W H, Zhou Q S, Zhu C D, Wu D H, Xiao Z S. 2020. Advances in techniques and methods of wildlife monitoring. Chinese Journal of Plant Ecology, 44 (4):409-417. (in Chinese)
Xiao Z S. 2016. Wildlife resource inventory using camera-trapping in natural reserves in China. Acta Theriologica Sinica, 36 (3):207-271. (in Chinese)
Xiao Z S, Chen L J, Song X J, Shu Z F, Xiao R G, Huang X Q. 2019. Species inventory and assessment of large-and medium-size mammals and pheasants using camera trapping in the Chebaling National Nature Reserve, Guangdong Province. Biodiversity Science, 27 (3):237-242. (in Chinese)
Xiao Z S, Wang X Z, Li X H. 2014. An introduction to CameraData:an online database of wildlife camera trap data. Biodiversity Science, 22 (6):712-716. (in Chinese)
Xiao Z S. 2019. Application of camera trapping to species inventory and assessment of wild animals across China's protected areas. Biodiversity Science, 27 (3):235-236. (in Chinese)
Xie W X, Yu L F, Zhou Q. 2006. Resource Background Investigation in Dashahe National Nature Reserve. Guiyang:Guizhou Scientific Publishing Housing. (in Chinese)
Zheng G M. 2017. A Checklist on the Classification and Distribution of the Birds of China, 3rd ed. Beijing:Science Press. (in Chinese)
刘嘉辉, 王艳, 边坤, 唐婕, 王伟峰, 郭林文, 王波, 方谷, 赵兰, 齐晓光. 2020. 重引入林麝的家域利用与个体迁移. 兽类学报, 40(2):109-119.
李晟, 王大军, 肖治术, 李欣海, 王天明, 冯利民, 王云. 2014. 红外相机技术在我国野生动物研究与保护中的应用与前景. 生物多样性, 22 (6):685-695.
肖文宏, 周青松, 朱朝东, 吴东辉, 肖治术. 2020. 野生动物监测技术和方法应用进展与展望. 植物生态学报, 44 (4):409-417.
肖治术, 王学志, 李新海. 2014. 野生动物多样性监测图像数据管理系统 CameraData介绍. 生物多样性, 22 (6):712-716.
肖治术. 2016. 红外相机技术促进我国自然保护区野生动物资源编目调查.兽类学报, 36 (3):207-271.
肖治术, 陈立军, 宋相金, 束祖飞, 肖荣高, 黄小群. 2019. 基于红外相机技术对广东车八岭国家级自然保护区大中型兽类与雉类的编目清查与评估. 生物多样性, 27 (3):237-242.
肖治术. 2019. 红外相机技术在我国自然保护地野生动物清查与评估中的应用. 生物多样性, 27 (3):235-236.
国家林业和草原局政府网. 2021. 国家重点保护野生动物名录.http://www. forestry. gov. cn/html/main/main_3954/20210225160347342521589/file/20210225160401102702964. pdf
郑光美. 2017. 中国鸟类分类与分布名录 (第 3 版). 北京:科学出版社.
黄中豪, 周岐海, 黄乘明, 蒙渊君, 韦华. 2011. 广西弄岗黑叶猴的家域和日漫游距离. 兽类学报, 31 (1):46-54.
蒋志刚, 刘少英, 吴毅, 蒋学龙, 周开亚. 2017. 中国哺乳动物多样性 (第 2版). 生物多样性, 25 (8):886-895.
蒋志刚, 江建平, 王跃招, 张鹗, 张雁云, 李立立, 谢锋, 蔡波, 曹亮, 郑光美, 董路, 张正旺, 丁平, 罗振华, 丁长青, 马志军, 汤宋华, 曹文宣, 李春旺, 胡慧建, 马勇, 吴毅, 王应祥, 周开亚, 刘少英, 陈跃英, 李家堂, 冯祚建, 王燕, 王斌, 李成, 宋雪琳, 蔡蕾, 臧春鑫, 曾岩, 孟智斌, 方红霞, 平晓鸽. 2016. 中国脊椎动物红色名录.生物多样性, 24 (5):501-555, 615.
谢双喜, 喻理飞, 周庆. 2006. 大沙河自然保护区本底资源. 贵阳:贵州科技出版社.
蓝开敏. 1987. 大沙河自然保护区科学考察集. 贵阳:贵州民族出版社.
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