Showing posts with label Red Kite. Show all posts
Showing posts with label Red Kite. Show all posts

Wednesday, 28 September 2022

New Publication on Red kite and early life conditions!

Sergio, F., Tavecchia, G., Blas, J., Taferna, A., Hiraldo, F., Korpimaki, E., and Beissinger, S. R. 2022. Hardship at birth alters the impact of climate change on a long-lived predator. Nature Communication 13, 5517 https://doi.org/10.1038/s41467-022-33011-7

Summary:
Photo: es.wikipedia.org
Climate change is increasing the frequency of extreme events, such as droughts or hurricanes, with substantial impacts on human and wildlife communities. Extreme events can affect individuals through two pathways: by altering the fitness of adults encountering a current extreme, and by affecting the development of individuals born during a natal extreme, a largely overlooked process. Here, we show that the impact of natal drought on an avian predator overrode the effect of current drought for decades, so that individuals born during drought were disadvantaged throughout life. Incorporation of natal effects caused a 40% decline in forecasted population size and a 21% shortening of time to extinction. These results imply that climate change may erode populations more quickly and severely than currently appreciated, suggesting the urgency to incorporate “penalties” for natal legacies in the analytical toolkit of impact forecasts. Similar double impacts may apply to other drivers of global change.

 

Thursday, 1 April 2021

Cover!

The article by Sergio et al. 2021 on Ecological Application (here) made the cover of the last issue. Nice pic.

Well done Fabrizio!

Tuesday, 19 January 2021

New Publication on Red Kite conservation!

Sergio, F, Tavecchia, G., Blas, J., Taferna, A., Hiraldo, F.  2021. Demographic modeling to fine‐tune conservation targets: importance of pre‐adults for the decline of an endangered raptor. Ecological Applications, https://doi.org/10.1002/eap.2266

Summary: Large, long‐lived species with slow life histories and protracted pre‐breeding stages are particularly susceptible to declines and extinction, often for unknown causes. Here, we show how demographic modeling of a medium‐sized raptor, the Red Kite Milvus milvus, can aid to refocus conservation research and attention on the most likely mechanisms driving its decline. Red Kites’ survival and reproduction increased through three sequential stages for 1–2, 3–6, and 7–30 yr of age, mainly corresponding to individuals that are dispersing, attempting to gain a territory, and breeding. As typical of long‐lived species, elasticities were highest for adult (≥7 yr old) survival, but this was high, with little scope for improvement. Instead, the declines were driven by an extremely low survival of pre‐adults in their first years of life, which weakened the whole demographic system by nullifying the offspring contribution of adults and curtailing their replacement by recruits. For example, 27 pairs were necessary to generate a single prime age adult. Simulation of management scenarios suggested that the decline could be halted most parsimoniously by increasing pre‐adult survival to the mean levels recorded for other areas, while only the synergistic, simultaneous improvement of breeding success, adult and pre‐adult survival could generate a recovery. We propose three actions to attain such goals through selective supplementary feeding of both breeding and non‐breeding individuals, and through mortality improvement by GPS remote‐sensing devices employed as surveillance monitoring tools. Our results show how improving demographic models by using real, local vital rates rather than “best guess” vital rates can dramatically improve model realism by refocusing attention on the actual stages and mortality causes in need of manipulation, thus building precious time and resources for conservation management. These results also highlight the frequent key role of pre‐adult survival for the management of long‐lived species, coherent with the idea of demographic systems as integrated chains only as strong as their weakest link.

Photo:F. Sergio

 

 

 

Thursday, 2 May 2019

Press release !

The last work published by members of the GEDA received media attention:

REWILDING (here)
RED KITE IN SOUTHERN SPAIN (here)

Thursday, 25 April 2019

New publication on Red Kite in Doñana National Park !

Sergio F, Tanferna A, Chicano J, Blas J, Tavecchia G, Hiraldo F. 2019 Protected areas under pressure: decline, redistribution, local eradication and projected extinction of a threatened predator, the red kite, in Doñana National Park, Spain Endangered Species Research. 38: 189-204

Photo: S. Sergio
Abstract: After a period of overfocus on reserve establishment, growing attention is being devoted to the capability of protected areas to maintain viable populations of endangered species. Here, we examined the trends and reproduction of the red kite Milvus milvus, a highly endangered raptor near-endemic to Europe, to illustrate the dual benefits and challenges faced by a national park to protect this iconic species. Over the past 4 decades, the kite population of southern Spain has declined steeply and become progressively confined to Doñana National Park and its buffering Natural Park. Population deterioration was also evident within the protected area through (1) spikes of rapid eradication of whole sub-populations from buffer areas, likely propelled by illegal poisoning, and (2) more gradual but steady deterioration of numbers and reproduction, especially in peripheral-buffer areas, probably caused by the interplay of several shocks related to food availability, habitat degradation, competition, predation, and chemical contamination. The result was a 46–55% decline with progressive confinement to the core National Park and an alarming effective population size <10 pairs. Demographic modelling suggested low adult survival and predicted further declines, with possible extinction over the next 2 decades. We outline tentative goals for management, but these will need urgent information on ranging and mortality to provide more efficient targets. These results illustrate how establishment of a large park can prevent regional extinction, but not necessarily guarantee species-safety, leading to protracted forms of extinction debt. We suspect that similar dynamics will become more widespread as anthropogenic pressures increase around protected areas and their performance-monitoring becomes more prevalent.

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