TY - JOUR
T1 - Challenges, pitfalls, and potential solutions in assessing status and trends of Spheniscus penguins
AU - Balza, Ulises
AU - Ampuero-Merino, Lyanne
AU - Arce, Paulina
AU - Barham, Peter J.
AU - Boersma, P. Dee
AU - Cárdenas-Alayza, Susana
AU - Daigre, Maximiliano
AU - Doig-Alba, Leonardo
AU - Garcia-Borboroglu, Pablo
AU - Makhado, Azwianewi
AU - McGill, Patricia A.
AU - Pütz, Klemens
AU - Rodríguez-Planes, Lucía
AU - Simeone, Alejandro
AU - Velez-Zuazo, Ximena
AU - Wagner, Eric
AU - Zavalaga, Carlos B.
AU - Raya-Rey, Andrea
N1 - Publisher Copyright:
Copyright © 2026 Balza, Ampuero-Merino, Arce, Barham, Boersma, Cárdenas-Alayza, Daigre, Doig-Alba, Garcia-Borboroglu, Makhado, McGill, Pütz, Rodríguez-Planes, Simeone, Velez-Zuazo, Wagner, Zavalaga and Raya-Rey.
PY - 2026/6
Y1 - 2026/6
N2 - Reliable, up-to-date assessments of population status and trends are essential for effective conservation. For the four Spheniscus penguin species, these are often undermined by methodological and logistical constraints due to their unique breeding ecology (e.g., burrow nesting and asynchronous breeding). As a result, no single survey method is universally applicable across the genus. Moreover, uneven sampling effort, inconsistent survey protocols, and variable data quality across countries and research groups further obscure true demographic patterns and complicate interpretations across species and regions. In consequence, population trends for these species—among the world's most threatened seabirds—are frequently uncertain or contradictory, limiting our ability to propose effective management actions. Here, we summarize the current challenges faced by researchers working across the ranges of Humboldt, African, Magellanic, and Galápagos penguins. We discuss pitfalls associated with extrapolating from non-representative colonies, integrating disparate data types, and interpreting trends in the context of climate-driven variability and threats. Finally, we propose a suite of solutions to strengthen future assessments and improve consistency and accuracy. Overall, we aim to chart a collaborative path toward more robust, comparable, and effective conservation assessments for these penguins as well as other seabirds.
AB - Reliable, up-to-date assessments of population status and trends are essential for effective conservation. For the four Spheniscus penguin species, these are often undermined by methodological and logistical constraints due to their unique breeding ecology (e.g., burrow nesting and asynchronous breeding). As a result, no single survey method is universally applicable across the genus. Moreover, uneven sampling effort, inconsistent survey protocols, and variable data quality across countries and research groups further obscure true demographic patterns and complicate interpretations across species and regions. In consequence, population trends for these species—among the world's most threatened seabirds—are frequently uncertain or contradictory, limiting our ability to propose effective management actions. Here, we summarize the current challenges faced by researchers working across the ranges of Humboldt, African, Magellanic, and Galápagos penguins. We discuss pitfalls associated with extrapolating from non-representative colonies, integrating disparate data types, and interpreting trends in the context of climate-driven variability and threats. Finally, we propose a suite of solutions to strengthen future assessments and improve consistency and accuracy. Overall, we aim to chart a collaborative path toward more robust, comparable, and effective conservation assessments for these penguins as well as other seabirds.
KW - abundance estimation models
KW - Benguela current
KW - density estimates
KW - Humboldt current
KW - Magellanic
KW - Malvinas (falkland) current
KW - seabirds
UR - https://www.scopus.com/pages/publications/105043732082
U2 - 10.3389/fmars.2026.1819196
DO - 10.3389/fmars.2026.1819196
M3 - Artículo
AN - SCOPUS:105043732082
SN - 2296-7745
VL - 13
SP - 1
EP - 10
JO - Frontiers in Marine Science
JF - Frontiers in Marine Science
M1 - 1819196
ER -