Recommendations

Project Type # Outcome Report Year FEC
Arctic TEEBKey finding4.2Valuing Arctic ecosystem services: Key Finding 4.2. Any effective, equitable and sustainable policy must account for a diversity of perspectives and encompass a diversity of value systems.The Economics of Ecosystems and Biodiversity (TEEB) for the Arctic: A Scoping Study Executive Summary2015
CBMP Terrestrial Biodiversity MonitoringKey findingMost European populations are increasing or stable, yet several populations lack effective count coordination networks to generate annual assessments of total population size and trends.A Global Audit of the Status and Trends of Arctic And Northern Hemisphere Goose Populations2018
Key finding3Observations from those spending much time on the land and sea are necessary in not only understanding local environmental change but also in understanding the effects of environmental changes on human well-being and traditional practicesProject Summary: Bering Sea Sub-Network II2015
CBMP Freshwater Biodiversity MonitoringAdvice

Monitoring Design and Assessment

  • Establish a circumpolar monitoring network based on a hub-and-spoke model in remote areas.
  • Increase focus on the response of biotic communities to environmental changes by designing monitoring to address impact hypotheses developed in the CBMP-Freshwater Plan.
  • Ensure that the CBMP Freshwater group continues to serve as the focal point for the development and implementation of Arctic, freshwater biodiversity monitoring.
  • Provide resources to maintain and build the CBMP freshwater database for future assessments in order to maximize the benefits of this database.
  • Efforts should be made to document and preserve data from short-term research projects, research expeditions, industrial, university and government programs and to make these data accessible to the public.
  • Status assessments of Arctic lakes and rivers must explore the close association of biodiversity with spatial patterns of physical and chemical quality of aquatic habitats that can drive biological systems.
  • CBMP-Freshwater database allows the identification of predominant sampling approaches across the Arctic and should be used to inform the development of harmonized monitoring approaches.
  • Where valuable long-term data series exist, these should be given high priority in monitoring programs, to continue to provide data for the detection of long-term trends and changes in biodiversity.
State of the Arctic Freshwater Biodiversity: Key Findings and Advice for Monitoring2016
CBMP Marine Biodiversity MonitoringAdvice

Marine fishes

  • Conduct pan-Arctic taxonomic analyses to clarify zoogeographic patterns that are important for detecting and understanding change.
  • Establish and conduct a monitoring plan that is independent of fisheries-related programs to assess changes in fish abundance and distributions. Use information from non-commercial fish species caught in groundfish surveys to provide a first step in this direction.
  • Use information from TK holders for monitoring marine fishes.
  • Connect monitoring initiatives across scales.
  • Conduct laboratory studies to examine the possible effects of abiotic and biotic changes (e.g. temperature, salinity, acidity and diseases) on fish species
  • Ensure that data on fisheries (commercial as well as artisanal) are accurate and registered in catch databases (such as the Food Agriculture Organisation of the United Nations). Information from logbooks is also relevant as it can be used to estimate the bycatch and the effects of fisheries.
State of the Arctic Marine Biodiversity: Key Findings and Advice for Monitoring2017
CBMP Terrestrial Biodiversity MonitoringAdvice

Arthropods : Arthropods are highly diverse and under-studied. They serve as important connections between trophic levels and several are important indicators of changing environments. The START reports on six FECs: pollinators, decomposers, herbivores, prey for vertebrates, blood-feeding insects, and predators and parasitoids. Only a few localized trends are provided due to high variability and lack of monitoring.

  • Implement long-term sampling programs at strategic sites with rigorous standardized trapping protocols.
  • Collect baseline data, including structured inventories, using standardized protocols for FECs and key attributes.
  • Work with Indigenous Knowledge holders, Local Knowledge holders, and/or citizen science to identify regionally important species to monitor, and key locations for long-term monitoring activities.
  • Focus monitoring efforts on taxa that: (a) are well-studied with existing data; (b) respond to, or are vulnerable to, change; and/or (c) have possible range shifts. • Monitor dominant habitats at a variety of sites at both small and large geographic scales.
  • Monitor relevant microhabitat environmental parameters, in addition to climatological variables, and connect to biological trends at relevant scale.
  • Focus on critical FEC attributes, including ecosystem processes such as pollination, decomposition, and herbivory.
  • Continue specimen sorting, identification and reporting and construct a complete trait database.
  • Complete molecular sequence libraries, increase international collaboration to collate, analyze, archive, and make data accessible.
State of the Arctic Terrestrial Biodiversity: Key Findings and Advice for Monitoring2021
Arctic Species Trend Index (ASTI)Key finding3

Tracking trends through space and time.

3.1 Spatial analysis of the full ASTI data set (1951 to 2010) started with an evaluation of vertebrate population trend data from around the Arctic. The maps produced from this analysis provide information useful for identifying gaps and setting priorities for biodiversity monitoring programs.

3.2 Mapping trends in vertebrate populations provides information on patterns of biodiversity change over space and time, especially when examined at regional scales.

3.3 Understanding of the causes of Arctic vertebrate population change can be improved by expanding the spatial analysis of ASTI data to include spatial data on variables that represent driversof biodiversity change.

The Arctic Species Trend Index 2011: Key findings from an in-depth look at marine species and development of spatial analysis techniques2012
Inspiring Arctic Voices Through YouthFoster collaborations such as exchanges, meetings, or training with important Indigenous constituencies through the permanent participants and their associated youth programs.CAFF Arctic Youth Engagement Strategy: 2021-20262021
CBird: Seabird Expert Group2.6

Reduce the threat of anthropogenic pollution.

2.6.1. Reduce marine litter and plastics by raising public awareness, and through facilitation of environment-friendly handling of garbage etc.

2.6.2. Reduce the risk of local oil spills close to breeding colonies by regulating nearby human activities.

International Black-legged Kittiwake - Conservation Strategy and Action Plan2021
CBird: Seabird Expert GroupAdviceCollaboration Guidelines • Each country should prepare a national implementation plan for the strategy giving special attention to international collaboration. • Ensure the regional and local governments participate in developing a National Implementation Plan • Enlist the participation of local residents and technical specialists at an early stage in deciding how to implement the Strategy.International Ivory Gull Conservation Strategy and Action Plan2008
CBird: Seabird Expert GroupAction3.1

Consumptive use:

  1. Ensure that consumptive uses of murres are sustainable.
  2. Monitor harvest levels and assess their impacts on populations.
  3. Harmonize management and harvest regimes for shared populations.
  4. Involve local and Indigenous people in the management of consumptive uses.
International Murre Conservation Strategy and Action Plan1996
Arctic Migratory Birds Initiative (AMBI)Action1

Improve conservation and management of shorebird sites throughout the African-Eurasian flyway

1.1 Secure intertidal habitat of Arctic-breeding shorebirds in Bijagós Archipelago, Guinea-Bissau

1.2 Ensure identification and documentation of key sites for shorebirds in available format as a tool for national/international sustainable site management

AMBI Work Plan 2019-2025: African Eurasian Flyway2021
Arctic Migratory Birds Initiative (AMBI)Action5Support the activities and priorities of the International Snowy Owl Working Group (ISOWG) 5.1 Publish a more precise global population estimate and assessment of population trends 5.2 Implement wider-scale tracking of Snowy Owls throughout their range AMBI Work Plan 2019-2025: Circumpolar Flyway2021
Arctic Biodiversity Assessment (ABA)Recommendation2Incorporate resilience and adaptation of biodiversity to climate change into plans for development in the Arctic.Arctic Biodiversity Assessment: Report for Policy Makers2013
Arctic Biodiversity Assessment (ABA)ActionA

Implementation plan for ABA recommendations (Actions for Arctic Biodiversity).

a. Prepare, track, and update biennially the plan.

b. Review and update actions in plan by all Working Groups and Task Forces related to ABA recommendations.

c. Evaluate progress on implementing the ABA recommendations and produce recommendations for follow-up work.

d. Encourage states to develop national implementation plans consistent with this implementation plan for the ABA recommendations as an essential adaptation measure.

Actions for Arctic Biodiversity, 2013-2021: Implementing the recommendations of the Arctic Biodiversity Assessment2015
Arctic Biodiversity Assessment (ABA)Action14

Recognize the value of traditional ecological knowledge and work to further integrate it into the assessment, planning and management of Arctic biodiversity. This includes involving Arctic peoples and their knowledge in the survey, monitoring and analysis of Arctic biodiversity.

14.1. Develop recommendations for the integration of traditional and local knowledge intothe work of the Arctic Council.

14.2. Complete traditional knowledge component of the ABA by preparing a report on traditional knowledge on biodiversity change in the North American Arctic.

14.3. Prepare a report on lessons learned on the inclusion of traditional knowledge in CAFF.

14.4. Improve understanding of biodiversity change.

a. Explore the potential of developing a case study centred on walrus to demonstrate the use of an Inuit food security lens and ecosystem approach. The project would focus on walrus and bring together representatives of AMAP, SDWG, CAFF and Traditional Knowledge holders to look at indicators that cross over social and natural systems, paints a holistic picture and brings together discussion on biotic and abiotic systems.

b. Explore the development of the Salmon Peoples project.

14.5. Develop the community observation network for adaptation and security (CONAS) to increase the contribution of community-based monitoring and knowledge from Arctic peoples to existing knowledge.

14.6. Work to develop methods and techniques to survey the use of the Arctic marine ecosystem by Indigenous peoples to better assess the impact of shipping (Survey of Arctic Indigenous Marine Use AMSA IIA).

14.7. Seek ways to enhance the integration of traditional and local knowledge, including follow-up to the recommendations from the Iqaluit Declaration (Action 14.1), and encourage co-production of knowledge methodologies.

Actions for Arctic Biodiversity, 2013-2021: Implementing the recommendations of the Arctic Biodiversity Assessment2015
AdviceExpand both the marine and terrestrial protected areas network and monitor its effectiveness at safeguarding biodiversity.Arctic Biodiversity Congress 2014, Co-Chairs Report2014
Arctic Biodiversity Assessment (ABA)Action

CHALLENGE Institutional structures can marginalize other forms of knowledge.

POTENTIAL SOLUTION/AUTHOR RECOMMENDATION Work to remove institutional barriers and improve processes for the effective use of Traditional Knowledge and Wisdom and involvement of Arctic indigenous peoples.

Arctic Traditional Knowledge and Wisdom: Changes in the North American Arctic2017
Resilience and Management of Arctic Wetlands (RAW)Key findingResearch findings make it clear that restoration of damaged or compromised Arctic wetlands ecosystems offers substantial benefits across multiple areas of interest – water-centric ecosystem services, biodiversity, and increasingly over the past decade, climate mitigation.Resilience and Management of Arctic Wetlands Phase 2 Report2021
Resilience and Management of Arctic Wetlands (RAW)Key finding9

Policy inconsistencies and practical difficulties with implementation are obstacles in wetland management or restoration efforts. Goal conflicts or gaps in policies undermine successful implementation of good wetland management or restoration practices.

Key challenges include:

(i) inconsistencies or conflicts between different national-level policies or between national and sub-national policies,

(ii) the organization of responsibility between multiple agencies with differing mandates, and

(iii) challenges in ensuring effective coordination and communication between agencies and the public.

Resilience and Management of Arctic Wetlands: Key Findings and Recommendations2021
This website is using cookies to provide a good browsing experience

These include essential cookies that are necessary for the operation of the site, as well as others that are used only for anonymous statistical purposes, for comfort settings or to display personalized content. You can decide for yourself which categories you want to allow. Please note that based on your settings, not all functions of the website may be available.

This website is using cookies to provide a good browsing experience

These include essential cookies that are necessary for the operation of the site, as well as others that are used only for anonymous statistical purposes, for comfort settings or to display personalized content. You can decide for yourself which categories you want to allow. Please note that based on your settings, not all functions of the website may be available.

Your cookie preferences have been saved.