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We have found 58 datasets for the keyword " furbearer". You can continue exploring the search results in the list below.
Datasets: 106,578
Contributors: 42
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58 Datasets, Page 1 of 6
Wildlife Management Zones
Delineates the administrative units used by the NB Department of Energy and Resource Development to manage populations and harvest of deer, moose, bear and furbearer species. Examples of furbearer species are beaver, muskrat, otter, mink, fox, and raccoon.
Wildlife Management Zones
Delineates the administrative units used by the NB Department of Natural Resources and Energy Development (DNRED) to manage populations and harvest of deer, moose, bear and furbearer species. Examples of furbearer species are beaver, muskrat, otter, mink, fox, and raccoon.Wildlife Management Zones were first established by Fish & Wildlife Branch in the early 1990s by combining climate, topography, geology and soils layers to identify unique zones with differences in basic landscape features relevant to wildlife. These were adjusted to boundaries easily recognized by the public. Most boundaries follow roads, rivers, lakes, streams or railroads.Do not confuse Wildlife Management Zones with Wildlife Management Areas and Wildlife Refuges (in the Wildlife Refuge GIS layer).
French Immersion Schools in Manitoba
Point feature layer showing locations of public schools in Manitoba that offer the French Immersion Program.Point feature layer showing locations of public schools in Manitoba that offer the French Immersion Program. This is an inclusive program intended for all students with various abilities and needs whose first language is not French. The goal of the Program is to develop proud, confident, engaged, plurilingual global citizens. For more information visit Manitoba Advanced Education, Skills and Immigration. Fields included (Alias (Field Name): Field description) SCHOOL_FR_NAME (SCHOOL_FR_NAME): Name of the school in French SCHOOL_EN_PHONE_NBR (SCHOOL_EN_PHONE_NBR): Phone number for the school SCHOOL_FR_PHONE_NBR (SCHOOL_FR_PHONE_NBR): Phone number for the school, in French format DIV_NAME (DIV_NAME): Name of the school division DIV_FR_NAME (DIV_FR_NAME): Name of the school division in French DIV_EN_PHONE_NBR (DIV_EN_PHONE_NBR): Phone number for the division DIV_FR_PHONE_NBR (DIV_FR_PHONE_NBR): Phone number for the division, in French format SCHOOL_ADDR_LINE1 (SCHOOL_ADDR_LINE1): Street address of school SCHOOL_ADDR_LINE2 (SCHOOL_ADDR_LINE2): Second line, if required, of street address SCHOOL_FR_ADDR_LINE1 (SCHOOL_FR_ADDR_LINE1): Street address of school in French SCHOOL_FR_ADDR_LINE2 (SCHOOL_FR_ADDR_LINE2): Second line, if required, of street address in French SCHOOL_CITY_NAME (SCHOOL_CITY_NAME): Name of the city or town that the school is located in SCHOOL_POSTAL_CODE (SCHOOL_POSTAL_CODE): Postal code of the school TRACKS (TRACKS): This field indicates the delivery model used by the school; either single track or dual track MIDDLE_IM (MIDDLE_IM): This field indicates whether the school has a grade 4 entry point LATE_IM (LATE_IM): This field indicates whether the school has a grade 6 or 7 entry point SCHOOL_LOW_GRADE_ENG (SCHOOL_LOW_GRADE_ENG): The lowest grade offering the Program SCHOOL_LOW_GRADE_FR (SCHOOL_LOW_GRADE_FR): The lowest grade, in French, offering the Program SCHOOL_HIGH_GRADE (SCHOOL_HIGH_GRADE): The highest grade offering the Program GRADE_LIST_EN (GRADE_LIST_EN): Comma separated list of grades available in the Program GRADE_LIST_FR (GRADE_LIST_FR): Comma separated list of grades available in the Program, in French Latitude (Latitude): Latitudinal coordinate of the school Longitude (Longitude): Longitudinal coordinate of the school
Spatiotemporal variation in anadromous Arctic char (Salvelinus alpinus) foraging ecology and its influence on muscle pigmentation along western Hudson Bay, Nunavut, Canada
PURPOSE:Given the paucity of information on Arctic char along western Hudson Bay, in 2018, Fisheries and Oceans Canada (DFO) hosted an Arctic char workshop in Rankin Inlet, Nunavut, bringing together local resource users, knowledge holders, and co-management groups (e.g., Hunters and Trappers Organizations, Regional Wildlife Organization) to identify and discuss community-based Arctic char research priorities across the Kivalliq region of Nunavut. Communities were especially interested in examining “what Arctic char were eating” and “why the colour of their muscle is different” along the western Hudson Bay coastline, and in the summer of 2018, a regional community-based Arctic char monitoring program was implemented across the region. DESCRIPTION:Climate-induced alterations to Arctic sea ice dynamics are influencing the availability and distribution of resources, and in turn, the nutrient and energy intake of opportunistic predators across the food web. These temporal changes in local prey communities likely influence the availability of carotenoid-rich prey types, as well as the foraging ecology of opportunistic predators that forage in the marine environment, such as anadromous Arctic char (Salvelinus alpinus). Despite its socioeconomic importance across its range, anadromous Arctic char foraging ecology and its influence on muscle pigmentation, particularly in relation to sea ice dynamics, remains understudied. Here, over two years (2021, 2022) with contrasting sea ice dynamics, we investigated the foraging ecology of anadromous Arctic char and its influence on their muscle pigmentation at a southern (Rankin Inlet) and northern (Naujaat) location along western Hudson Bay using a combination of stomach contents, stable isotopes (δ¹³C and δ¹⁵N), highly branched isoprenoids, carotenoid spectrophotometry, and a standard muscle colour scale (DSM SalmoFan). Spatiotemporal variation in Arctic char diet occurred, where Rankin Inlet Arctic char generally consumed more fish and phytoplankton-based carbon sources, occupied a higher trophic position, and displayed a similar isotopic niche breadth compared to Arctic char in Naujaat. Invertebrates were higher in carotenoid concentration than fishes, and in association with a more invertebrate-based diet, Arctic char in Naujaat contained higher muscle carotenoid concentrations (e.g., astaxanthin) compared to Rankin Inlet Arctic char in 2021. In 2022, however, muscle carotenoid concentrations in Naujaat and Rankin Inlet Arctic char were more similar, as the diet of Arctic char in both locations was largely fish-based despite muscle colour remaining redder in Naujaat Arctic char. Overall, the observed plastic foraging ecology of Arctic char highlights this species' ability to adjust to inter-annual variability in environmental changes, which then impacts their muscle carotenoid concentration. Such inter-annual variation in Arctic char foraging ecology is anticipated to increase with unpredictable climate-driven environmental changes in the region, which could therefore negatively affect local resource users over the long term, resulting in socioeconomic impacts across the Arctic.Collection/sampling methodology:Arctic char were collected by angling and gillnetting (5.5” mesh, regularly checked) between June and August in the estuarine and marine environments near the communities of Rankin Inlet and Naujaat, Nunavut. In 2021, Naujaat Arctic char were collected by community fishers as part of a community-based sampling program. Concurrently, invertebrate prey types were opportunistically collected in the vicinity of Arctic char sampling sites using a conical zooplankton net (200-μm mesh; 10-minute tows) or obtained fresh from Arctic char stomachs. Additionally, marine fishes were opportunistically collected by angling or obtained fresh from Arctic char stomachs over both years in Rankin Inlet, while samples from the Naujaat area were collected in 2018 and 2019.The Kivalliq Wildlife Board (Rankin Inlet, NU) and Arviq Hunters and Trappers Association (Naujaat, NU) each supported this community-formulated research project and assisted with sample collections throughout the duration of the project. We would like to recognize and thank Sonny Ittinuar (Kivalliq Wildlife Board/Rankin Inlet Local Resource User), Clayton Tartak (Kivalliq Wildlife Board), Vincent L’Herault (ArctiConnexion), and Gail Davoren (University of Manitoba MSc co-supervisor) for their participation in the project. We would also like to thank Sonny Ittinuar, Poisey (Adam) Alogut, John-El, Peter, Quassa, and Goretti Tinashlu, who assisted in field work. USE LIMITATION:To ensure scientific integrity and appropriate use of the data, we would encourage you to contact the data custodian.
Stand Structure Habitat Classes in Mule Deer Winter Range - Cariboo Region
Stand structure habitat classes associated with mule deer winter range in the Cariboo Region.
MB Cattle Prices Current year
This data set contains Manitoba market cattle prices and volumes sold at local auction marts.Description of Cattle Prices -source
Footprints Yukon Composite 150 cm
::: (style="text-align:Left;")Footprints for all imagery in the Yukon Composite 150 cm Imagery Service. The Yukon Composite is a composite imagery basemap created from the most recent medium resolution SPOT-6/7 satellite images from the Government of Yukon satellite imagery repository.Distributed from GeoYukon by the Government of Yukon. Discover more digital map data and interactive maps from Yukon's digital map data collection. For more information: :::
Geotechnical report point
Geotechnical reports are indexed within a database maintained by HPW-TEB Geotechnical Unit. Meta data associated to each geotechnical report are captured within this indexing table, including report reference number, title, author, highway and km start and end. The table has been modified to include columns that aid in georeferencing geotechnical reports. Added columns include route ID, Latitude, and Longitude.Transportation Engineering Branch is continually improving its geographical information systems with a major focus on creating linear referencing routes within ArcGIS. Georeferencing geotechnical reports will utilize the linear referencing routes in creating points and line shape files by referencing the highway number and km points or ranges as defined within the indexing table.Distributed from [GeoYukon](https://yukon.ca/geoyukon) by the [Government of Yukon](https://yukon.ca/maps) . Discover more digital map data and interactive maps from Yukon's digital map data collection.For more information: [geomatics.help@yukon.ca](mailto:geomatics.help@yukon.ca)
Trapping Concessions - 250k
Registered Trapping Concessions (RTCs) are legal boundaries that define an area where the holder of the concession has the exclusive right to trap furbearing animals. Because trapping is done primarily along waterways, RTCs are often defined by watersheds, using height of land (ridges and mountain peaks) as their boundaries. This is the opposite of GMAs which are defined by mountains. Sometimes RTCs are grouped together to form a Group Trapping Concession (in which groups of individual share the right to trap). This may or may not involve the elimination of the component RTC boundaries. The Yukon has 360 RTCs and 13 Group Trapping Concessions. Only Kluane National Park, Kluane Wildlife Sanctuary, and Ddhaw Ghro Habitat Protection are are not covered by RTCs. This data was built using the 1:250,000 National Topographic Data Base (NTDB) as the digitizing base.Distributed from [GeoYukon](https://yukon.ca/geoyukon) by the [Government of Yukon](https://yukon.ca/maps) . Discover more digital map data and interactive maps from Yukon's digital map data collection.For more information: [geomatics.help@yukon.ca](mailto:geomatics.help@yukon.ca)
Trapline area
A trapline area is a polygon feature that identifies a ministry-regulated boundary used to administer traplines and fur management programs.
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