Chironomid counts for surface sediment samples (0-1cm depth) from a set of 20 lakes near Bergen, Norway

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Bibliographic Details
Main Authors: Engels, Stefan, Lane, Christine S, Wilkinson-Rowe, Eloise
Format: Dataset Open Access
Language:en
Published: PANGAEA 2024
Subjects:
Ablabesmyia; Anthropocene; Biodiversity; Brillia; Chironomids; Chironomus anthracinus-type; Chironomus plumosus-type; Cladopelma lateralis-type; Cladotanytarsus mancus-type; Climate change; Corynoneura arctica-type; Corynoneura edwardsi-type; Corynoneura lobata-type; Counting, microscope; Cricotopus bicinctus-type; Cricotopus cylindraceus-type; Cricotopus intersectus-type; Cricotopus obnixus-type; Cricotopus sylvestris-type; Cricotopus trifasciatus-type; Cricotopus-type C; Cricotopus-type P; Cryptochironomus; Dalevatnet_DL219; Dalevatnet_DLV19; DEPTH, sediment/rock; Diamesa indeterminata; Dicrotendipes nervosus-type; DL2_19; DLV_19; Eukiefferiella indeterminata; Event label; FJO_19; Flotatjorn_FJO19; FUL_19; Fullskjeggevatnet_FUL19; GC; Georthocladius; GRA_19; Grastjorn_GRA19; Gravity corer; Guttipelopia; Heterotanytarsus; Heterotrissocladius grimshawi-type; Heterotrissocladius maeaeri-type; Heterotrissocladius marcidus-type; Heterotrissocladius subpilosus-type; HOL_19; Holebudalen_HOL19; insects; KON_19; Konsdalsvatnet_KON19; KRA_19; Krakenesvatnet_KRA19; Krenopelopia; Lake sediment; LATITUDE; Lauterborniella/Zavreliella; Limnophyes; LIN_19; Lintjorna_LIN19; LIT_19; Litlevatnet_LIT19; Litlevatnet_LT219; Location; LON_19; LONGITUDE; Lontjornane_LON19; LT2_19; Mesocricotopus; Metriocnemus eurynotus-type; Micropsectra insignilobus-type; Micropsectra pallidula-type; Micropsectra radialis-type; Microtendipes pedellus-type; Monopelopia; Nanocladius rectinervis-type; Norway; Orthocladius consobrinus-type; Orthocladius indeterminata; Orthocladius oliveri-type; Pagastiella; Palaeoecology; Parachironomus varus-type; Parakiefferiella bathophila-type; Parakiefferiella triquetra-type; Parakiefferiella-type A; Paramerina; Parametriocnemus/Paraphaenocladius; Paratanytarsus indeterminata; Paratendipes albimanus-type; Parochlus; Polypedilum nubeculosum-type; Procladius; Prodiamesa; Protanypus; Psectrocladius barbatipes-type; Psectrocladius flavus-type; Psectrocladius septentrionalis-type; Psectrocladius sordidellus-type; Pseudochironomus; Pseudodiamesa; Pseudorthocladius; Pseudosmittia; RAD_19; Radalstjorna_RAD19; Rheocricotopus effusus-type; ROY_19; Royrtjorna_ROY19; Sample code/label; Sergentia coracina-type; Smittia; STA_19; Stangavatnet_STA19; Stempellina/Zavrelia; Stempellinella; Stenochironomus; STI_19; Stictochironomus rosenschoeldi-type; Stigedalsvatnet_STI19; STO_19; Stolstjorna_STO19; Stoylsvatnet_STV19; STV_19; SVA_19; Svartevatnet_SVA19; Synorthocladius; Tanytarsus chinyensis-type; Tanytarsus lugens-type; Tanytarsus mendax-type; Tanytarsus pallidicornis-type; Thienemanniella clavicornis-type; Thienemannimyia-type; Trissocladius; VAT_19; Vatnedalsvatnet_VAT19; Zalutschia-type B; Zalutschia zalutschicola; Zavrelimyia
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_version_ 1867171041168588800
author Engels, Stefan
Lane, Christine S
Wilkinson-Rowe, Eloise
author_facet Engels, Stefan
Lane, Christine S
Wilkinson-Rowe, Eloise
collection Datos científicos de ciencias marinas y ambientales
contents This dataset provides chironomid count data for core tops from 20 lakes located near Bergen, Norway. The lakes are situated either in the Røldal region or in the Førde region. For each lake, the chironomid counts as well as the coordinates (latitude/longitude) are presented. We obtained samples from the centre of each lake using a HON/Kajak gravity corer and analysed the top-centimetre (0-1 cm sediment depth) to determine the composition of the chironomid fauna. All sediment samples were retrieved during fieldwork in August and September 2019. Samples were transported to the laboratory (Birkbeck University of London, UK), where they were weighted and processed using standard protocols – this involved 20 min treatment with warm KOH (10 %) and sieving over a 100 µm mesh. Chironomid head capsules were subsequently handpicked from the residue, mounted on permanent microscope slides, and identified using Brooks et al. (2007). This dataset provides chironomid count data in number of chironomid head capsules per sample. Through a comparison against data from 1996 (Brooks & Birks, 2001), the chironomid dataset provides insight in the recent changes in the insect community of the lake ecosystem under ongoing climate change.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_964302
institution PANGAEA
language en
publishDate 2024
publisher PANGAEA
record_format pangaea
spellingShingle Chironomid counts for surface sediment samples (0-1cm depth) from a set of 20 lakes near Bergen, Norway
Engels, Stefan
Lane, Christine S
Wilkinson-Rowe, Eloise
Ablabesmyia; Anthropocene; Biodiversity; Brillia; Chironomids; Chironomus anthracinus-type; Chironomus plumosus-type; Cladopelma lateralis-type; Cladotanytarsus mancus-type; Climate change; Corynoneura arctica-type; Corynoneura edwardsi-type; Corynoneura lobata-type; Counting, microscope; Cricotopus bicinctus-type; Cricotopus cylindraceus-type; Cricotopus intersectus-type; Cricotopus obnixus-type; Cricotopus sylvestris-type; Cricotopus trifasciatus-type; Cricotopus-type C; Cricotopus-type P; Cryptochironomus; Dalevatnet_DL219; Dalevatnet_DLV19; DEPTH, sediment/rock; Diamesa indeterminata; Dicrotendipes nervosus-type; DL2_19; DLV_19; Eukiefferiella indeterminata; Event label; FJO_19; Flotatjorn_FJO19; FUL_19; Fullskjeggevatnet_FUL19; GC; Georthocladius; GRA_19; Grastjorn_GRA19; Gravity corer; Guttipelopia; Heterotanytarsus; Heterotrissocladius grimshawi-type; Heterotrissocladius maeaeri-type; Heterotrissocladius marcidus-type; Heterotrissocladius subpilosus-type; HOL_19; Holebudalen_HOL19; insects; KON_19; Konsdalsvatnet_KON19; KRA_19; Krakenesvatnet_KRA19; Krenopelopia; Lake sediment; LATITUDE; Lauterborniella/Zavreliella; Limnophyes; LIN_19; Lintjorna_LIN19; LIT_19; Litlevatnet_LIT19; Litlevatnet_LT219; Location; LON_19; LONGITUDE; Lontjornane_LON19; LT2_19; Mesocricotopus; Metriocnemus eurynotus-type; Micropsectra insignilobus-type; Micropsectra pallidula-type; Micropsectra radialis-type; Microtendipes pedellus-type; Monopelopia; Nanocladius rectinervis-type; Norway; Orthocladius consobrinus-type; Orthocladius indeterminata; Orthocladius oliveri-type; Pagastiella; Palaeoecology; Parachironomus varus-type; Parakiefferiella bathophila-type; Parakiefferiella triquetra-type; Parakiefferiella-type A; Paramerina; Parametriocnemus/Paraphaenocladius; Paratanytarsus indeterminata; Paratendipes albimanus-type; Parochlus; Polypedilum nubeculosum-type; Procladius; Prodiamesa; Protanypus; Psectrocladius barbatipes-type; Psectrocladius flavus-type; Psectrocladius septentrionalis-type; Psectrocladius sordidellus-type; Pseudochironomus; Pseudodiamesa; Pseudorthocladius; Pseudosmittia; RAD_19; Radalstjorna_RAD19; Rheocricotopus effusus-type; ROY_19; Royrtjorna_ROY19; Sample code/label; Sergentia coracina-type; Smittia; STA_19; Stangavatnet_STA19; Stempellina/Zavrelia; Stempellinella; Stenochironomus; STI_19; Stictochironomus rosenschoeldi-type; Stigedalsvatnet_STI19; STO_19; Stolstjorna_STO19; Stoylsvatnet_STV19; STV_19; SVA_19; Svartevatnet_SVA19; Synorthocladius; Tanytarsus chinyensis-type; Tanytarsus lugens-type; Tanytarsus mendax-type; Tanytarsus pallidicornis-type; Thienemanniella clavicornis-type; Thienemannimyia-type; Trissocladius; VAT_19; Vatnedalsvatnet_VAT19; Zalutschia-type B; Zalutschia zalutschicola; Zavrelimyia
This dataset provides chironomid count data for core tops from 20 lakes located near Bergen, Norway. The lakes are situated either in the Røldal region or in the Førde region. For each lake, the chironomid counts as well as the coordinates (latitude/longitude) are presented. We obtained samples from the centre of each lake using a HON/Kajak gravity corer and analysed the top-centimetre (0-1 cm sediment depth) to determine the composition of the chironomid fauna. All sediment samples were retrieved during fieldwork in August and September 2019. Samples were transported to the laboratory (Birkbeck University of London, UK), where they were weighted and processed using standard protocols – this involved 20 min treatment with warm KOH (10 %) and sieving over a 100 µm mesh. Chironomid head capsules were subsequently handpicked from the residue, mounted on permanent microscope slides, and identified using Brooks et al. (2007). This dataset provides chironomid count data in number of chironomid head capsules per sample. Through a comparison against data from 1996 (Brooks & Birks, 2001), the chironomid dataset provides insight in the recent changes in the insect community of the lake ecosystem under ongoing climate change.
title Chironomid counts for surface sediment samples (0-1cm depth) from a set of 20 lakes near Bergen, Norway
topic Ablabesmyia; Anthropocene; Biodiversity; Brillia; Chironomids; Chironomus anthracinus-type; Chironomus plumosus-type; Cladopelma lateralis-type; Cladotanytarsus mancus-type; Climate change; Corynoneura arctica-type; Corynoneura edwardsi-type; Corynoneura lobata-type; Counting, microscope; Cricotopus bicinctus-type; Cricotopus cylindraceus-type; Cricotopus intersectus-type; Cricotopus obnixus-type; Cricotopus sylvestris-type; Cricotopus trifasciatus-type; Cricotopus-type C; Cricotopus-type P; Cryptochironomus; Dalevatnet_DL219; Dalevatnet_DLV19; DEPTH, sediment/rock; Diamesa indeterminata; Dicrotendipes nervosus-type; DL2_19; DLV_19; Eukiefferiella indeterminata; Event label; FJO_19; Flotatjorn_FJO19; FUL_19; Fullskjeggevatnet_FUL19; GC; Georthocladius; GRA_19; Grastjorn_GRA19; Gravity corer; Guttipelopia; Heterotanytarsus; Heterotrissocladius grimshawi-type; Heterotrissocladius maeaeri-type; Heterotrissocladius marcidus-type; Heterotrissocladius subpilosus-type; HOL_19; Holebudalen_HOL19; insects; KON_19; Konsdalsvatnet_KON19; KRA_19; Krakenesvatnet_KRA19; Krenopelopia; Lake sediment; LATITUDE; Lauterborniella/Zavreliella; Limnophyes; LIN_19; Lintjorna_LIN19; LIT_19; Litlevatnet_LIT19; Litlevatnet_LT219; Location; LON_19; LONGITUDE; Lontjornane_LON19; LT2_19; Mesocricotopus; Metriocnemus eurynotus-type; Micropsectra insignilobus-type; Micropsectra pallidula-type; Micropsectra radialis-type; Microtendipes pedellus-type; Monopelopia; Nanocladius rectinervis-type; Norway; Orthocladius consobrinus-type; Orthocladius indeterminata; Orthocladius oliveri-type; Pagastiella; Palaeoecology; Parachironomus varus-type; Parakiefferiella bathophila-type; Parakiefferiella triquetra-type; Parakiefferiella-type A; Paramerina; Parametriocnemus/Paraphaenocladius; Paratanytarsus indeterminata; Paratendipes albimanus-type; Parochlus; Polypedilum nubeculosum-type; Procladius; Prodiamesa; Protanypus; Psectrocladius barbatipes-type; Psectrocladius flavus-type; Psectrocladius septentrionalis-type; Psectrocladius sordidellus-type; Pseudochironomus; Pseudodiamesa; Pseudorthocladius; Pseudosmittia; RAD_19; Radalstjorna_RAD19; Rheocricotopus effusus-type; ROY_19; Royrtjorna_ROY19; Sample code/label; Sergentia coracina-type; Smittia; STA_19; Stangavatnet_STA19; Stempellina/Zavrelia; Stempellinella; Stenochironomus; STI_19; Stictochironomus rosenschoeldi-type; Stigedalsvatnet_STI19; STO_19; Stolstjorna_STO19; Stoylsvatnet_STV19; STV_19; SVA_19; Svartevatnet_SVA19; Synorthocladius; Tanytarsus chinyensis-type; Tanytarsus lugens-type; Tanytarsus mendax-type; Tanytarsus pallidicornis-type; Thienemanniella clavicornis-type; Thienemannimyia-type; Trissocladius; VAT_19; Vatnedalsvatnet_VAT19; Zalutschia-type B; Zalutschia zalutschicola; Zavrelimyia
url https://doi.org/10.1594/PANGAEA.964302