Urban bird diversity conservation plan based on the systematic conservation planning approach - A case study of Beijing Ecological Cultivation Area

Ecological Indicators - Tập 156 - Trang 111082 - 2023
Jianqi Yu1, Xiaoyan Ma1,2, Li Feng1,2
1School of Landscape Architecture, Beijing University of Agriculture, Beijing, 102206, China
2Ancient Tree Health and Culture Engineering Technology Research Center, National Forestry Grassland Administration, Beijing 102206, China

Tài liệu tham khảo

Bode, M., 2009. Spatial conservation prioritization: quantitative methods and computational tools edited by Moilanen A., Kerrie A., Wilson and Hugh P. (Ed.), Possingham xxi + 304 pp., 90 figs, 25 × 20 × 2 cm, ISBN 978 0 19 954776 0 hardcover, GB£ 70.00, Oxford, UK: Oxford University Press, 2009. Environmental Conservation, 36(4), 348-349. doi:10.1017/S037689291000007X. Cetin, 2015, Determining the bioclimatic comfort in Kastamonu City, Environ. Monit. Assess., 187, 640, 10.1007/s10661-015-4861-3 Cetin, 2020, Climate comfort depending on different altitudes and land use in the urban areas in Kahramanmaras City, Air Quality, Atmosphere & Health: An Int. J., 13, 10.1007/s11869-020-00858-y Çetin, 2020, The changing of important factors in the landscape planning occur due to global climate change in temperature, rain and climate types: a case study of Mersin City, Turkish J. Agri.: Food Sci. Tech., 8, 2695 Cetin, 2023, The change in biocomfort zones in the area of Muğla province in near future due to the global climate change scenarios, J. Therm. Biol, 112, 10.1016/j.jtherbio.2022.103434 Çevik Değerli, 2022, Using the remote sensing method to simulate the land change in the year 2030, Turkish J. Agri.- Food Sci. Tech., 10, 2453, 10.24925/turjaf.v10i12.2453-2466.5555 Clarke, 2019, Climate change effects on the frequency, seasonality and interannual variability of suitable prescribed burning weather conditions in south-eastern Australia, Agric. For. Meteorol., 271, 148, 10.1016/j.agrformet.2019.03.005 Cudlín, 2020, Are valuable and representative natural habitats sufficiently protected? application of marxan model in the Czech Republic, Sustainability, 12, 402, 10.3390/su12010402 Delavenne, 2012, Systematic conservation planning in the eastern English channel: comparing the Marxan and zonation decision-support tools, ICES J. Mar. Sci., 69, 75, 10.1093/icesjms/fsr180 Dietz, 2005, Conservation deficits for the continental United States: an ecosystem gap analysis, Conserv. Biol., 19, 1478, 10.1111/j.1523-1739.2005.00114.x Echeverry-Galvis, 2023, Long-term christmas bird counts describe neotropical urban bird diversity, PLoS One, 18, e0272754, 10.1371/journal.pone.0272754 Guo, 2018, Systematic conservation planning for freshwater wetlands in the Yangtze River Basin based on waterfowl, Acta Ecol. Sin., 38, 1984 Huang, 2015, Reserve network planning for fishes in the middle and lower Yangtze River basin by systematic conservation approaches, Sci. China Life Sci., 45, 1244 Hyun, 2020, Identifying high-priority conservation areas for endangered waterbirds using a flagship species in the Korean DMZ, Ecological IanR, 2011 Isaksson, 2018, Impact of Urbanization on Birds, 235 Iwamura, 2017, A climatic stability approach to prioritizing global conservation investments, PLoS One, 5, 10.1371/journal.pone.0015103 Jinying, 2020, Policy adjustment and evolution and coordinated development of beijing-tianjin-hebei based on synthetic control, Population & Economics, 05, 72 Sanderson, E.W., Walston, J., Robinson, J.G., 2018. From bottleneck to breakthrough: urbanization and the future of biodiversity conservation. Bioscience 68(6). Junnan, 2022, Identification and network construction of bird habitats around dianchi lake based on urban biodiversity conservation, Chinese Landscape Architecture, 38, 32 Kang, 2015, Effects of habitat structure, human disturbance, and habitat connectivity on urban forest bird communities, Urban Ecosyst., 18, 857, 10.1007/s11252-014-0433-5 Kowarik, 2020, Biodiversity conservation and sustainable urban development, Sustainability, 12, 4964, 10.3390/su12124964 Kukkala, 2013, Core concepts of spatial prioritisation in systematic conservation planning, Biol. Rev. Camb. Philos. Soc., 88, 10.1111/brv.12008 Li, 2014, Impact of climate change on distribution of breeding places of white-naped crane in China, J. Ecol. Rural Environ., 30, 595 Lianhua, 2023, Why does rangeland integration by transfer fail to overcome the tragedy of anticommons?, Ambio Luqin, 2023, Birds’ flight initiation distance in residential areas of beijing are lower than in pristine environments: implications for the conservation of urban bird diversity, Sustainability, 15 Ma, 2020, Study on bird species diversity in Gansu Kongtong mountain in summer from 2016 to 2018, J. Ecol. Rural Environ. Ma, 2017, Emergy analysis of ecosystem services supply and flow in Beijing ecological conservation area, Acta Geograph. Sin., 72, 974 Margules, 2000, Systematic conservation planning, Nature, 405, 10.1038/35012251 McDonald, 2020, Research gaps in knowledge of the impact of urban growth on biodiversity, Nat. Sustainability, 3 Mo, 2019, Influences of planning unit shape and size in landscapes dominated by different land-cover types on systematic conservation planning, Global Ecol. Conserv., 20, e00739, 10.1016/j.gecco.2019.e00739 Morelli, 2018, Escape behaviour of birds in urban parks and cemeteries across Europe: evidence of behavioural adaptation to human activity, Sci. Total Environ., 631-632, 803, 10.1016/j.scitotenv.2018.03.118 Nicole, 2007, Effects of climate and land-use change on species abundance in a Central European bird community, Conserv. Biol.: The J. Soc. Conserv. Biol., 21 Olga, 2018, Seasonal patterns of urban bird diversity in a Mediterranean coastal city: the positive role of open green spaces, Urban Ecosystems, 21 Onu, 2014 ONU. (2019). World population prospects 2019: Data Booklet: United Nations. Pengqian, 2021, Spatiotemporal variation of NDVI in Beijing-Tianjin-Hebei region in the past 20 years, Ecol. Environ. Sci., 30, 29 Possingham, 2000, Mathematical Methods for Identifying Representative Reserve Networks, 291 Pressey, 1998, Size of selection units for future reserves and its influence on actual vs targeted representation of features: a case study in western New South Wales, Biol. Conserv., 85, 305, 10.1016/S0006-3207(97)00146-8 Shaohua, 2021, Priority areas identification for species diversity protection in Beijing⁃Tianjin⁃Hebei Region, Acta Ecol. Sin., 41, 3144 Song, 2005, Avifauna diversity in Beijing Wulingshan nature reserve in winter, Chinese J. Zool., 02, 50 Tang, 2016, Camera trapping survey on ground-dwelling birds and mammals of spring and winter in Beijing Wulingshan nature reserve, Chinese J. Zool., 51, 751 Tognelli, 2005, Priority areas for the conservation of coastal marine vertebrates in Chile, Biol. Conserv., 126, 420, 10.1016/j.biocon.2005.06.021 Varol, 2022, The effects of climate change scenarios on carpinus betulus and carpinus orientalis in Europe, Water Air Soil Pollut., 233, 45, 10.1007/s11270-022-05516-w Venevsky, 2005, Hierarchical systematic conservation planning at the national level: Identifying national biodiversity hotspots using abiotic factors in Russia, Biol. Conserv., 124, 235, 10.1016/j.biocon.2005.01.036 Wang, 2019, Research progress and enlightenment of foreign systematic conservation planning in past 20 years, Landscape Architecture, 26, 65 Wei, 2023, Impacts of climate change on pine wilt disease outbreaks and associated carbon stock losses, Agric. For. Meteorol., 334 Wen, 2015, GAP analysis on national nature reserves in China based on the distribution of endangered species, Biodivers. Sci., 23, 591, 10.17520/biods.2015114 Wenjie, 2021, Spatio-temporal patterns and driving factors of ecological assets in Beijing's ecological conservation area, Acta Ecol. Sin., 41, 6051 Wenrui, 2022, Building ecological networks in Beijing Plain based on local species distribution, Acta Ecol. Sin., 42, 8213 Wenyuan, 2023, Potential distribution of two economic laver species-Neoporphyra haitanensis and Neopyropia yezoensis under climate change based on MaxEnt prediction and phylogeographic profiling, Ecol. Ind., 150 Williams, 2015, Cold truths: how winter drives responses of terrestrial organisms to climate change, Biol. Rev. Camb. Philos. Soc., 90, 214, 10.1111/brv.12105 Wu, 2011, A review of impacts of climate change on species, J. Ecol. Rural Environ., 27, 1 Xiao, 2019, Responses of four dominant dryland plant species to climate change in the Junggar Basin, northwest China, Ecol. Evol., 9, 13596, 10.1002/ece3.5817 Xie, 2008, Why do herders insist on “otor?” maintaining mobility in inner Mongolia, Nomadic Peoples, 12, 35, 10.3167/np.2008.120203 Xing, 2020, Spatial-temporal analysis of high-precision land use based on remote sensing technology, Water Resour. Hydropower Eng., 51, 5 Xuehong, B., Wenjie, W., Weiguo, J., Huading, S., Kun, C., & Min, C. (2019). Simulation of potential suitable distribution of endangered waterfowl and its gap analysis of national nature reserves in beijing-tianjin-hebei region under climate change scenarios. Research of Environmental Sciences, - 32(- 6), - 1001. doi:10.13198/j.issn.1001-6929.2018.08.15. Yang, 2015, GIS analysis of the distribution dynamics of rare birds in Beijing, J. Beijing Forestry Univ., 37, 119 Yan-zhi, 2022, Identification of natural conservation areas for protected species suitable habitat in Beijing, J. Zhejiang Forestry Sci. Tech., 42, 48 Yu, 2021, Spatial differentiation characteristics and trade-off/synergy relationships of rural multi-functions based on multi-source data, Geogr. Res., 40, 2036 Yue, 2019, The identification and assessment of habitats of threatened birds in plain areas of Beijing, Landscape Architecture, 26, 32 Yun, 2018, Systematic conservation planning for freshwater wetlands in the Yangtze River Basin based on waterfowl, Acta Ecol. Sin., 38 Yunyan, 2019, Discussion on evaluation of ecological service value and ecological compensation mechanism of beijing ecological conservation area, Chinese J. Environ. Manage., 11 Zeren Cetin, 2023, The effects of climate on land use/cover: a case study in Turkey by using remote sensing data, Environ. Sci. Pollut. Res., 30, 5688, 10.1007/s11356-022-22566-z Zeren Cetin, 2023, A geographic information systems and remote sensing–based approach to assess urban micro-climate change and its impact on human health in Bartin Turkey, Environ. Monitor. Assess., 195, 540, 10.1007/s10661-023-11105-z Zhang, 2009, Beijing mountain functional zoning and relative policies, Econ. Geogr, 29, 989 Zhang, 2017, Biodiversity monitoring of understory birds and mammals in beijing songshan national nature reserve, Chinese J. Wildlife, 38, 367 Zhang, 2010, Biodiversity priority areas analysis for amphibians and reptiles in the yangtze basin based on systematic conservation planning idea, Resour. Environ. Yangtze Basin, 19, 1020 Zhang, 2015, Theory, work frame and hot issues of systematic conservation planning, Acta Ecol. Sin., 35, 1284 Zhaxijie, 2017, Response model of egg-laying and incubation dates of anser indicus at dan island in qinghai lake to air temperature and normalized differential vegetation index, Wetland Sci., 15, 369 Zhou, 2019, Land use and climate change effects on soil organic carbon in North and Northeast China, Sci. Total Environ., 647, 1230, 10.1016/j.scitotenv.2018.08.016 Ziqian, 2023, Habitats change of Tibetan antelope and its influencing factors on the North Tibetan Plateau from 2020 to 2050, Global Ecol. Conserv., 43 Ziwen, 2020, Assessment on ecological health in northwest conservation area of beijing city based on PSR model, China Land Sci., 34, 105