Data from: Study "1000 Cranes. Russia. Altai."

datacite.RelatedIdentifierhttps://doi.org/10.1073/pnas.2316827121
datacite.RelatedIdentifier.relatedIdentifierTypeDOI
datacite.RelatedIdentifier.relationTypeIsSupplementTo
dc.contributor.authorIlyashenko, Elena I.
dc.contributor.authorPokrovsky, Ivan
dc.contributor.authorMudrik, Elena A.
dc.contributor.authorPolitov, Dmitry
dc.contributor.authorPostelnykh, Kirill
dc.contributor.authorIlyashenko, Valentin Yu.
dc.contributor.authorFiedler, Wolfgang
dc.contributor.authorWikelski, Martin
dc.date.accessioned2024-09-11T07:22:36Z
dc.date.available2024-09-11T07:22:36Z
dc.date.issued2024-09-11
dc.description.abstractMovement is a key means by which animals cope with variable environments. As they move, animals construct individual niches composed of the environmental conditions they experience. Niche axes may vary over time and covary with one another as animals make tradeoffs between competing needs. Seasonal migration is expected to produce substantial niche variation as animals move to keep pace with major life history phases and fluctuations in environmental conditions. Here, we apply a time-ordered principal component analysis to examine dynamic niche variance and covariance across the annual cycle for four species of migratory crane: common crane (Grus grus, n = 20), demoiselle crane (Anthropoides virgo, n = 66), black-necked crane (Grus nigricollis, n = 9), and white-naped crane (Grus vipio, n = 9). We consider four key niche components known to be important to aspects of crane natural history: enhanced vegetation index (resources availability), temperature (thermoregulation), crop proportion (preferred foraging habitat), and proximity to water (predator avoidance). All species showed a primary seasonal niche “rhythm” that dominated variance in niche components across the annual cycle. Secondary rhythms were linked to major species-specific life history phases (migration, breeding, and nonbreeding) as well as seasonal environmental patterns. Furthermore, we found that cranes’ experiences of the environment emerge from time-dynamic tradeoffs among niche components. We suggest that our approach to estimating the environmental niche as a multidimensional and time-dynamical system of tradeoffs improves mechanistic understanding of organism–environment interactions.
dc.identifier.doidoi:10.5441/001/1.596
dc.identifier.urihttps://datarepository.movebank.org/handle/10255/move.3260
dc.language.isoeng
dc.relation.isreferencedbydoi:10.1073/pnas.2316827121
dc.rightsAttribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectAnthropoides virgo
dc.subjectanimal tracking
dc.subjectavian migration
dc.subjectDemoiselle Crane
dc.subjectGPS
dc.titleData from: Study "1000 Cranes. Russia. Altai."
dspace.entity.typeData package
dwc.ScientificNameAnthropoides virgo
mdr.animal.count2
mdr.citation.BibTex
@misc{001/1_596,
  title = {Data from: Study "1000 Cranes. Russia. Altai."},
  author = {Ilyashenko, EI and Pokrovsky, I and Mudrik, EA and Politov, D and Postelnykh, K and Ilyashenko, VY and Fiedler, W and Wikelski, M},
  year = {2024},
  URL = {http://dx.doi.org/10.5441/001/1.596},
  doi = {doi:10.5441/001/1.596},
  publisher = {Movebank data repository}
}
mdr.citation.CSE
Ilyashenko EI, Pokrovsky I, Mudrik EA, Politov D, Postelnykh K, Ilyashenko VY, Fiedler W, Wikelski M. 2024. Data from: Study "1000 Cranes. Russia. Altai.". Movebank Data Repository. https://doi.org/10.5441/001/1.596
mdr.citation.RIS
TY  - DATA
ID  - doi:10.5441/001/1.596
T1  - Data from: Study "1000 Cranes. Russia. Altai."
AU  - Ilyashenko, Elena I.
AU  - Pokrovsky, Ivan
AU  - Mudrik, Elena A.
AU  - Politov, Dmitry
AU  - Postelnykh, Kirill
AU  - Ilyashenko, Valentin Yu.
AU  - Fiedler, Wolfgang
AU  - Wikelski, Martin
Y1  - 2024/09/11
KW  - Anthropoides virgo
KW  - animal movement
KW  - animal tracking
KW  - avian migration
KW  - Demoiselle Crane
KW  - GPS
KW  - Anthropoides virgo
PB  - Movebank data repository
UR  - http://dx.doi.org/10.5441/001/1.596
DO  - doi:10.5441/001/1.596
ER  -
mdr.journal.titleProceedings of the National Academy of Sciences of the USA
mdr.location.count7901
mdr.study.id497087673
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sensor.nameGPS
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