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      KCI등재 SCOPUS

      PollMap: a software for crop pollination mapping in agricultural landscapes

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      https://www.riss.kr/link?id=A107920271

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      다국어 초록 (Multilingual Abstract)

      Background: Ecosystem service mapping is an important tool for decision-making in landscape planning and natural resource management. Today, pollination service mapping is based on the Lonsdorf model (InVEST software) that determines the availability ...

      Background: Ecosystem service mapping is an important tool for decision-making in landscape planning and natural resource management. Today, pollination service mapping is based on the Lonsdorf model (InVEST software) that determines the availability of nesting and floral resources for each land cover and estimates pollination according to the foraging range of the desired species. However, it is argued that the Lonsdorf model has significant limitations in estimating pollination in a landscape that can affect the results of this model.


      Results: This paper presents a free software, named PollMap, that does not have the limitations of the Lonsdorf model. PollMap estimates the pollination service according to a modified version of the Lonsdorf model and assumes that only cells within the flight range of bees are important in the pollination mapping. This software is produced for estimating and mapping crop pollination in agricultural landscapes. The main assumption of this software is that in the agricultural landscapes, which are dominated by forest and agriculture ecosystems, forest patches serve only as a nesting habitat for wild bees and the surrounding fields provide floral resources.


      Conclusion: The present study provided new software for mapping crop pollination in agricultural landscapes that does not have the limitations of the Lonsdorf model. We showed that the use of the Lonsdorf model for pollination mapping requires attention to the limitations of this model, and by removing these limitations, we will need new software to obtain a reliable mapping of pollination in agricultural landscapes.

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      참고문헌 (Reference)

      1 Odanaka KA, "Wild bee distribution near forested landscapes is dependent on successional state" 7 (7): 1-13, 2020

      2 Rahimi E, "Using the Lonsdorf model for estimating habitat loss and fragmentation effects on pollination service" 10 (10): 1-13, 2021

      3 Hodkinson ID, "Terrestrial insects along elevation gradients : species and community responses to altitude" 80 (80): 489-513, 2005

      4 Aguirre-Gutiérrez J, "Susceptibility of pollinators to ongoing landscape changes depends on landscape history" 21 (21): 1129-1140, 2015

      5 Potts SG, "Summary for policymakers of the assessment report of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services (IPBES) on pollinators, pollination and food production" 2016

      6 Mitchell MG, "Strong and nonlinear effects of fragmentation on ecosystem service provision at multiple scales" 10 (10): 094014-, 2015

      7 Collett M, "Spatial memory in insect navigation" 23 (23): R789-R800, 2013

      8 Bell, W. J., "Searching behaviour" Springer 171-187, 1990

      9 Cole LJ, "Riparian buffer strips : their role in the conservation of insect pollinators in intensive grassland systems" 211 : 207-220, 2015

      10 Keller I, "Recent habitat fragmentation caused by major roads leads to reduction of gene flow and loss of genetic variability in ground beetles, Proceedings of the Royal Society of London" 270 (270): 417-423, 2003

      1 Odanaka KA, "Wild bee distribution near forested landscapes is dependent on successional state" 7 (7): 1-13, 2020

      2 Rahimi E, "Using the Lonsdorf model for estimating habitat loss and fragmentation effects on pollination service" 10 (10): 1-13, 2021

      3 Hodkinson ID, "Terrestrial insects along elevation gradients : species and community responses to altitude" 80 (80): 489-513, 2005

      4 Aguirre-Gutiérrez J, "Susceptibility of pollinators to ongoing landscape changes depends on landscape history" 21 (21): 1129-1140, 2015

      5 Potts SG, "Summary for policymakers of the assessment report of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services (IPBES) on pollinators, pollination and food production" 2016

      6 Mitchell MG, "Strong and nonlinear effects of fragmentation on ecosystem service provision at multiple scales" 10 (10): 094014-, 2015

      7 Collett M, "Spatial memory in insect navigation" 23 (23): R789-R800, 2013

      8 Bell, W. J., "Searching behaviour" Springer 171-187, 1990

      9 Cole LJ, "Riparian buffer strips : their role in the conservation of insect pollinators in intensive grassland systems" 211 : 207-220, 2015

      10 Keller I, "Recent habitat fragmentation caused by major roads leads to reduction of gene flow and loss of genetic variability in ground beetles, Proceedings of the Royal Society of London" 270 (270): 417-423, 2003

      11 Schulp CJ, "Quantifying and mapping ecosystem services : demand and supply of pollination in the European Union" 36 : 131-141, 2014

      12 Cunningham C, "Primary data in pollination services mapping : potential service provision by honey bees(Apis mellifera)in Cumberland and Colchester, Nova Scotia, International Journal of Biodiversity Science" 14 (14): 60-69, 2018

      13 Kells AR, "Preferred nesting sites of bumblebee queens(Hymenoptera : Apidae)in agroecosystems in the UK" 109 (109): 165-174, 2003

      14 Picanço A, "Pollination services mapping and economic valuation from insect communities : a case study in the Azores(Terceira Island)" 18 : 1-25, 2017

      15 Carvalheiro LG, "Pollination services decline with distance from natural habitat even in biodiversity-rich areas" 47 (47): 810-820, 2010

      16 Klein AM, "Pollination of Coffea canephora in relation to local and regional agroforestry management" 40 (40): 837-845, 2003

      17 Devoto M, "Patterns of interaction between plants and pollinators along an environmental gradient" 109 (109): 461-472, 2005

      18 Lonsdorf E, "Modelling pollination services across agricultural landscapes" 103 (103): 1589-1600, 2009

      19 Olsson O, "Modeling pollinating bee visitation rates in heterogeneous landscapes from foraging theory" 316 : 133-143, 2015

      20 Westphal C, "Mass flowering crops enhance pollinator densities at a landscape scale" 6 (6): 961-965, 2003

      21 McInnes RJ, "Managing. Wetlands for Pollination"

      22 Kallioniemi E, "Local resources, linear elements and mass-flowering crops determine bumblebee occurrences in moderately intensified farmlands" 239 : 90-100, 2017

      23 Kimball S, "Links between floral morphology and floral visitors along an elevational gradient in a Penstemon hybrid zone" 117 (117): 1064-1074, 2008

      24 Sharp R, "InVEST user’s guide"

      25 Klein A-M, "Importance of pollinators in changing landscapes for world crops" 274 (274): 303-313, 2007

      26 Eastman J, "IDRI SI Selva manual"

      27 Rahimi Ehsan, "How effective are artificial nests in attracting bees? A review" 한국생태학회 45 (45): 152-162, 2021

      28 Hanula JL, "Have changing forests conditions contributed to pollinator decline in the southeastern United States" 348 : 142-152, 2015

      29 Svensson B, "Habitat preferences of nest-seeking bumble bees(Hymenoptera : Apidae)in an agricultural landscape, Agriculture" 77 (77): 247-255, 2000

      30 Zadeh, "Fuzzy sets, fuzzy logic, and fuzzy systems: selected papers by Lotfi A Zadeh" World Scientific 394-432, 1996

      31 McKechnie IM, "Forested field edges support a greater diversity of wild pollinators in lowbush blueberry(Vaccinium angustifolium)" 237 : 154-161, 2017

      32 Roberts HP, "Factors affecting bee communities in forest openings and adjacent mature forest" 394 : 111-122, 2017

      33 Rahimi, E., "Estimating landscape structure effects on pollination for management of agricultural landscapes"

      34 Totland Ø, "Environment-dependent pollen limitation and selection on floral traits in an alpine species" 82 (82): 2233-2244, 2001

      35 Phillips BB, "Enhancing road verges to aid pollinator conservation: a review" 108687-, 2020

      36 Muñoz PT, "Effects of roads on insects : a review" 24 (24): 659-682, 2015

      37 Zulian G, "ESTIMAP: Ecosystem services mapping at European scale" Publications Office of the European Union 2013

      38 de Lima KB, "Does landscape context affect pollination-related functional diversity and richness of understory flowers in forest fragments of Atlantic Rainforest in southeastern Brazil" 9 (9): 1-12, 2020

      39 Saaty TL, "Decision making with the analytic hierarchy process" 1 (1): 83-98, 2008

      40 오민우, "Cushion plant Silene acaulis is a pioneer species at abandoned coal piles in the High Arctic, Svalbard" 한국생태학회 45 (45): 1-9, 2021

      41 Fernandes J, "Coupling spatial pollination supply models with local demand mapping to support collaborative management of ecosystem services" 16 (16): 212-229, 2020

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-11-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2013-04-10 학술지명변경 한글명 : 한국생태학회지 -> Journal of Ecology and Environment
      외국어명 : Journal of Ecology and Field Biology -> Journal of Ecology and Environment
      KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-03-01 학술지명변경 외국어명 : The Korean Journal of Ecology -> Journal of Ecology and Field Biology KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.08 0.08 0.12
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.15 0.17 0.298 0.1
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