Long-term monitoring of the abundance and diversity of diurnal butterflies (Papilionoidea) in Doñana 2007-2022

[Description of methods used for collection/generation of data] The long-term monitoring of Doñana’s diurnal butterflies is part of a harmonised protocol of the Long-term Ecological Monitoring Program of Natural Resources and Processes. The general aim of this protocol is to monitor and assess the d...

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Detalles Bibliográficos
Autores: Fernández-Zamudio, R., Paz Sánchez, David Antonio, Laffite, Rafael, Román, Isidro, López Bañez, Diego, Pérez de Ayala, Ana, Hidalgo, Antonio, Andreu, Ana C., Gallego, Nuria, Torrijo-Salesa, Mizar, Díaz-Delgado, Ricardo, Bustamante, Javier
Tipo de recurso: conjunto de datos
Fecha de publicación:2023
País:España
Institución:Consejo Superior de Investigaciones Científicas (CSIC)
Repositorio:DIGITAL.CSIC. Repositorio Institucional del CSIC
OAI Identifier:oai:digital.csic.es:10261/331669
Acceso en línea:http://hdl.handle.net/10261/331669
https://doi.org/10.20350/digitalCSIC/15453
Access Level:acceso abierto
Palabra clave:Butterflies
Samplingevent
Occurrence
Transect
Long-term monitoring
ICTS-RBD
https://vocabs.lter-europe.net/envthes/en/page/20602?clang=de
http://rs.gbif.org/vocabulary/gbif/dataset_type_2015-07-10.xml
https://vocabs.lter-europe.net/envthes/en/page/20314
https://vocabs.lter-europe.net/envthes/en/page/21337
Descripción
Sumario:[Description of methods used for collection/generation of data] The long-term monitoring of Doñana’s diurnal butterflies is part of a harmonised protocol of the Long-term Ecological Monitoring Program of Natural Resources and Processes. The general aim of this protocol is to monitor and assess the dynamics of diurnal butterflies (Papilionoidea) of Doñana. This group of insects is suitable to include in a monitoring protocol, for several reasons: a relative easy identification, it is a good group as bioindicators due to their short life cycle and their high sensitivity to climate, and their relation with plants allow relate their presence with vegetation changes.The monitoring of diurnal butterflies (Papilionoidea) in Doñana, southwestern Spain, was initiated in 2005, but until 2007 the protocol is not well stablished, that is why the temporal range of this dataset start in december of 2007 with one transect. From this first transect, in 2008 the Monitoring Program of Natural Resources and Processes applied the BMS methodology to new zones and transects. The principals aims of this protocol were: to inventory all species of diurnal butterflies that inhabits in Doñana, in order to detect the appearance of new species or the local extinction of some populations; and know the dynamics and variations of butterflies populations between years and between months, in order to detect declines in these animal populations. Following the Butterfly Monitoring Scheme (BMS) and Pollard's transects, the data collection is based in walking transect of a determinate distance where the observer must note, count and identify (when is possible also sex) all butterflies that fly in an imaginary cube of 5 meters of side. In the period 2007-2013, the data was collected with the software CyberTracker and all the butterflys occurences have a coordinate associated; but since 2014 the data collection was changed to BMS that is why individuals recorded in this period (2014-2022) did not have a coordinate. The transect was adapted to optimal period of butterflies' day activity, that is three or four hours before and after noon, always with suitable climatic conditions: no rain and/or fog, minimum temperature between 13 on sunny days and 17ºC on cloudly days, maximum temperature below 30 ºC and wind conditions under 5 in Beaufort's scale. In order to know environmental and meteorological variables, temperature, wind conditions (Beaufort's scale) and cloud coverage (eighths of coverage) were measured at initial and final of each transect. The distance of transects varies between 460 and 1170 metres. The time to complete the transects varies depending on the number of individuals observed in each one, but time values are usually between 10 and 75 minutes.