Literature DB >> 30872941

Stream benthic macroinvertebrates abundances over a 6-year monitoring period of an Italian glacier-fed stream.

Alberto Scotti1,2, Ulrike Tappeiner1,2, Roberta Bottarin1.   

Abstract

BACKGROUND: Aquatic macroinvertebrates are widely used as bioindicators for water quality assessments involving different kinds of disruptive factors, such as hydrological regime variations or pollutant spills. Recently, they demonstrated to be effective in monitoring effects of climate change in alpine stream and rivers. Indeed, since the distribution of macroinvertebrates in glacier-fed streams has been succesfully investigated and described by several authors, the discrepancy in presence/absence and quantity of specific taxa from the established models may represent an early warning of the effects of climatic changes occurring in alpine riverine ecosystems. NEW INFORMATION: Together with the present paper, we provide a dataset covering a period of 6 years (2010-2015) sampling of aquatic macroinvertebrates along a longitudinal transect of a glacier-fed stream located in the Italian Alps, inside the International Long Term Ecological Research (ILTER) macrosite of Matsch|Mazia (IT-25). Data were collected during the glacial melt period (April - September), with monthly resolution. Owing to the unique temporal resolution of the dataset, we aim to produce a reliable tool (i.e. reference point) for future ecological assessment on the same stream, but also to similar streams worldwide.

Entities:  

Keywords:  Alps; ILTER; Saldur; biodiversity; biomonitoring; climate change; community structure; insects; macroinvertebrates; mountains; stream

Year:  2019        PMID: 30872941      PMCID: PMC6416225          DOI: 10.3897/BDJ.7.e33576

Source DB:  PubMed          Journal:  Biodivers Data J        ISSN: 1314-2828


Introduction

Aquatic macroinvertebrates are commonly used for biomonitoring of lotic environments (Resh 2008). The main reasons for the successful utilisation of aquatic macroinvertebrates as bioindicators are their ubiquity, their generally sedentary behaviour associated with relatively long life cycles, and the high diversity (Abel 2014). As a result, macroinvertebrates allow for detailed, long-term analyses of the quality of the freshwater environment, potentially affected by different factors (e.g. discharge variations, pollutant spills) (Rosenberg and Resh 1993). Recently, aquatic macroinvertebrates have been suggested to be used as sentinels for climate change, especially in relation to glacier retreat (Jacobsen et al. 2012, Khamis et al. 2014). Indeed, a very recent study found a direct relationship between the loss of insects in alpine riverine environments and the consequences of the changing climate (Giersch et al. 2017). In greater detail, forecasted trends in climate for glacier-fed rivers in the upcoming years suggest severe disruptions of the thermal and hydrological regime and of the sediment budget (Huss and Hoch 2018). In this context, characterisation of abiotic and biotic factors (i.e. macroinvertebrates) in alpine streams and rivers have been of interest to ecologists for long time (e.g. Ward 1994, Milner et al. 2010). In particular, several studies have defined the distribution and diversity of benthic macroinvertebrate communities along longitudinal transects of several glacier-fed streams (summarised by Milner et al. 2001). Nevertheless, the temporal resolution of these data is often quite limited, generally not allowing long term monitoring of the study sites. Here, we provide a dataset that contains aquatic macroinvertebrate records collected in 6 consecutive years along a longitudinal transect of the Saldur stream, an almost pristine glacier-fed small river located in the Italian Central Eastern Alps. The Saldur stream has been part of the International Long Term Ecological Research (ILTER) network since 2014 (site code: LTER_EU_IT_100). Our purpose is to release a valuable dataset that has been only partly explored by the studies carried out by Rogora et al. (2018) and Scotti et al. (2019). Moreover, since no similar datasets have been previously published, it constitutes a reference point and a relevant tool of comparison for aquatic ecologists eager to analyse the effects of climate change in other similar glacier-fed streams, given the widely reported constant distribution of aquatic macroinvertebrates found in this freshwater habitat (Milner et al. 2001).

Sampling methods

Study extent

Data were collected inside Matscher valley (South Tyrol, Italy; 46°N, 10°E), whose surface almost completely overlaps the Saldur stream catchment (101 km2) Fig. 1.
Figure 1.

Saldur stream in July 2015, during the glacial melting period. Distance from the glacial source of the shown location is about 2 km. Picture: R. Bottarin.

Sampling description

For each sampling occasion at each site, we randomly collected 12 Surber samples (0.0506 square metres, mesh size 500 µm) covering all the main substrate typologies present, that were previously examined and estimated. All samples were labelled and preserved in the field with 70% ethanol. Once in the laboratory, the samples were sorted and identified.

Geographic coverage

Description

Saldur stream, Matscher Valley, South Tyrol (Autonomous Province of Bolzano/Bozen), Italy. Distance from glacial source, geographic coordinates, elevation, mean stream width and depth, and size of the catchment, calculated for each sampling site, are reported in Table 1.
Table 1.

Geographical and local characteristics for each of the monitored sampling sites: latitude and longitude (DD), elevation (m a.s.l.), mean stream width and depth (m), catchment area (km2).

Site Distance from glacial source (km) Latitude (DD) Longitude (DD) Elevation (m a.s.l.) Mean stream width (m) Mean stream depth (m) Catchment area (km2)
Saldur 14.962 46.743549 10.70131 2,03060.419.7
Saldur 25.325 46.742365 10.699572 2,01680.325.6
Saldur 311.123 46.711499 10.647516 1,64560.461.5

Taxonomic coverage

All the sampled invertebrate organisms were considered in the study. Macroinvertebrates were identified to family or genus level referring to Sansoni and Ghetti (1998).

Temporal coverage

Notes

Sampling campaigns were carried out in 6 consecutive years (2010 - 2015), during the glacial melt period (April - September). Depending on the specific years, 5 to 6 samples per year were collected, thus keeping a monthly resolution for the dataset.

Usage rights

Use license

Other

IP rights notes

CC-BY-NC: Creative Commons Attribution-NonCommercial 4.0 International

Data resources

Data package title

Bottarin, Roberta; Scotti, Alberto (2019): Abundances of stream benthic macroinvertebrates during a 6-year monitoring period of a glacier-fed stream in South Tyrol, Italy. Eurac Research, PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.897915

Resource link

https://doi.pangaea.de/10.1594/PANGAEA.897915

Number of data sets

1

Data set 1.

Data set name

Saldur_invertebrates_abundance

Data format

tab-delimited text

Number of columns

9

Download URL

https://doi.pangaea.de/10.1594/PANGAEA.897915

Description

Stream benthic macroinvertebrates have been collected for a period of 6 consecutive years (2010-2015, from April to September, during the glacial melting) along a longitudinal transect of the Saldur stream, a near pristine glacier-fed stream located in South Tyrol, Italy (46°N, 10°E), part of the International Long Term Ecological Research (ILTER) network (site code: LTER_EU_IT_100). Organisms were collected through Surber samplings (0.0506 square metres, mesh size 500 µm) in 3 sites at different elevation and distance from the glacial source: Saldur 1 (2,030 m a.s.l.; 4.962 km), Saldur 2 (2,016 m a.s.l.; 5.325 km), Saldur 3 (1,645 m a.s.l.; 11.123 km). Dataset contains 1901 records, metadata as header.
Data set 1.
Column labelColumn description
EventSampling site
LatitudeLatitude (DD)
LongitudeLongitude (DD)
Date/TimeDate of sampling
IDNumber of consecutive record
OrderMacroinvertebrate order
FamilyMacroinvertebrate family
GenusMacroinvertebrate genus (if available)
Macrof abund [#/m**2]Abundance of macroinvertebrates [organisms per square metre]
  4 in total

1.  Which group is best? Attributes of different biological assemblages used in freshwater biomonitoring programs.

Authors:  Vincent H Resh
Journal:  Environ Monit Assess       Date:  2007-05-15       Impact factor: 2.513

2.  Assessment of climate change effects on mountain ecosystems through a cross-site analysis in the Alps and Apennines.

Authors:  M Rogora; L Frate; M L Carranza; M Freppaz; A Stanisci; I Bertani; R Bottarin; A Brambilla; R Canullo; M Carbognani; C Cerrato; S Chelli; E Cremonese; M Cutini; M Di Musciano; B Erschbamer; D Godone; M Iocchi; M Isabellon; A Magnani; L Mazzola; U Morra di Cella; H Pauli; M Petey; B Petriccione; F Porro; R Psenner; G Rossetti; A Scotti; R Sommaruga; U Tappeiner; J-P Theurillat; M Tomaselli; D Viglietti; R Viterbi; P Vittoz; M Winkler; G Matteucci
Journal:  Sci Total Environ       Date:  2017-12-27       Impact factor: 7.963

3.  The use of invertebrates as indicators of environmental change in alpine rivers and lakes.

Authors:  K Khamis; D M Hannah; L E Brown; R Tiberti; A M Milner
Journal:  Sci Total Environ       Date:  2014-03-17       Impact factor: 7.963

4.  Climate-induced glacier and snow loss imperils alpine stream insects.

Authors:  J Joseph Giersch; Scott Hotaling; Ryan P Kovach; Leslie A Jones; Clint C Muhlfeld
Journal:  Glob Chang Biol       Date:  2016-12-16       Impact factor: 10.863

  4 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.