Data on Microclimate in hollow trees and how it affects an inhabiting beetle species, Osmoderma eremita

SND-ID: 2022-71-1. Version: 1. DOI: https://doi.org/10.5878/856g-v725

Citation

Alternative title

Microclimate in hollow trees and how it affects an inhabiting beetle species, Osmoderma eremita

Creator/Principal investigator(s)

Ly Lindman - Swedish University of Agricultural Sciences, Department of Ecology orcid

Research principal

Swedish University of Agricultural Sciences - Department of Ecology rorId

Principal's reference number

SLU.ekol.2022.4.4.IÄ-11

Description

The data includes measured habitat characteristics, microclimatic variables, and species data collected with mark-recapture method. It was used for analyses to explore microclimate in tree hollows in relation to tree characteristics; and how these variables affect the occurrence and body size of Osmoderma eremita (hermit beetle). Manuscript: "Microclimate in hollow trees and how it affects an inhabiting beetle species, Osmoderma eremita". The study is in English.

Species-related data is collected with mark-recapture method (pitfall trap).
Moisture/humidity is measured with soil moisture meter (GS3 sensor; Decagon Devices).
Temperature data is recorded with Lascar EL-USB-1 data-loggers.

OE_MC_publish_ambient.tsv: 9766 R × 9 C
OE_MC_publish_internal.tsv: 9766 R × 55 C
OE_MC_publish_R.tsv: 47 R × 67 C
OE_MC_publish_RH.tsv: 53 R × 31 C

... Show more..
The data includes measured habitat characteristics, microclimatic variables, and species data collected with mark-recapture method. It was used for analyses to explore microclimate in tree hollows in relation to tree characteristics; and how these variables affect the occurrence and body size of Osmoderma eremita (hermit beetle). Manuscript: "Microclimate in hollow trees and how it affects an inhabiting beetle species, Osmoderma eremita". The study is in English.

Species-related data is collected with mark-recapture method (pitfall trap).
Moisture/humidity is measured with soil moisture meter (GS3 sensor; Decagon Devices).
Temperature data is recorded with Lascar EL-USB-1 data-loggers.

OE_MC_publish_ambient.tsv: 9766 R × 9 C
OE_MC_publish_internal.tsv: 9766 R × 55 C
OE_MC_publish_R.tsv: 47 R × 67 C
OE_MC_publish_RH.tsv: 53 R × 31 C

Specimens_data_publish_b_length-habitat-MC.tsv: 256 R × 24 C
Specimens_data_publish_Recapture.tsv: 500 R × 6 C Show less..

Data contains personal data

No

Language

Method and outcome

Time period(s) investigated

2019-07 – 2020-07

Data format / data structure

Species and taxons

Osmoderma eremita

Data collection
  • Mode of collection: Measurements and tests
  • Description of the mode of collection: Habitat characteristics were measured (e.g. with measuring tape or wooden measuring stick) or evaluated. Temperature data was recorded with data-loggers. Humidity was measured with GS3 sensor. Species data was explored with mark-recapture method, using pitfall traps.
  • Time period(s) for data collection: 2019-07 – 2020-07
  • Instrument: GS3 sensor (Decagon Devices, US) - Device for measuring soil moisture
  • Instrument: Lascar EL-USB-1 data-logger (Lascar Electronics, UK) - Device for recording temperature (every hour for a year)
Geographic coverage

Geographic spread

Geographic location: Sweden

Geographic description: Bjärka-Säby and Brokind in southern Sweden

Administrative information

Responsible department/unit

Department of Ecology

Funding 1

  • Funding agency: Bjärka-Säby Foundation

Funding 2

  • Funding agency: Carl Trygger Foundation rorId

Funding 3

  • Funding agency: The Eklandskapsfonden foundation in Linköping Municipality
Topic and keywords

Research area

Ecology (Standard för svensk indelning av forskningsämnen 2011)

Publications

Lindman L, Öckinger E, Ranius T. Microclimate in hollow trees and how it affects an inhabiting beetle species, Osmoderma eremita. Accepted by Ecological Entomology.

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Published: 2022-11-04
Last updated: 2024-03-15