
The Burrowing Parrot (Cyanoliseus patagonus) nests in sandstone and earthen ravines and cliffs, excavating its own cavities. As in other cavity-nesting birds, reproduction is constrained by the availability of suitable nesting substrates, making the use of anthropogenic substrates particularly relevant. The expansion of urban, peri-urban, and rural landscapes, together with the species’ conservation vulnerability, underscores the need to assess the fitness of individuals breeding in human–modified habitats. In this study we describe for the first time the daily survival rate of nests (DSR) and the breeding success of the species in nests constructed in anthropogenic substrates (quarries and roadsides) in northern Patagonia, Argentina. We monitored 74 nests in six colonies established in urban and rural areas during two breeding seasons, 2021–2022 and 2022–2023. We estimated clutch size, hatching success, daily survival rate of nests (DSR), brood size, productivity and breeding success, and evaluated the potential effects of the urban and rural contexts, as well as the characteristics of ravines and nests, on breeding success. DSR and hatching success were similar between seasons, whereas breeding success showed higher, although not statistically significant, values in 2022–2023 (88
Abstract Seaweed production is a globally expanding activity that supports coastal livelihoods, phycocolloid industries, food systems, and emerging blue bioeconomy opportunities. However, its social-ecological implications differ strongly among production models. Chile represents a distinctive case because, unlike aquaculture-dominated systems in Asia, most national production depends on the extraction of wild seaweed populations by artisanal fishers. This narrative review examines Chilean seaweed production along the southeast Pacific coast through the Social-Ecological Systems Framework, integrating peer-reviewed literature, official statistics, technical reports, and institutional information published between 1980 and 2026. We synthesize evidence across four main SES components: Resource System, Resource Units, Governance System, and Actors, and analyze how their interactions shape resilience, vulnerability, and sustainability outcomes. Chile is the main seaweed producer in the Americas and one of the world’s leading producers of wild-harvested seaweeds. In 2025, national production reached 426,543 metric tons, with approximately 85% derived from wild populations. Brown seaweeds, particularly species of the Lessonia nigrescens complex and L. trabeculata , dominate production in northern Chile, whereas red seaweeds, including Gracilaria chilensis , Sarcothalia crispata , Sarcopeltis skottsbergii , and Chondracanthus chamissoi , are more relevant in central-southern and southern regions. These spatial patterns reflect biogeographic gradients, environmental heterogeneity, harvesting histories, market demand, and governance arrangements. Chile’s governance system combines Territorial Use Rights for Fisheries, Open Access Areas, bans, quotas, management plans, and participatory seaweed roundtables. These instruments can promote stewardship and ecological recovery, but their effectiveness is mediated by enforcement capacity, labour dynamics, market fluctuations, and asymmetries within value chains. Our synthesis shows that Chilean seaweed production is shaped by feedbacks among climate variability, wild population dynamics, international demand, governance responses, and local livelihoods. Dependence on global commodity markets, particularly demand from China, can intensify extraction pressure while concentrating economic benefits among intermediaries, processors, and exporters. At the same time, artisanal fishers and women seaweed workers often bear disproportionate ecological and economic risks. Future sustainability will require strengthening adaptive governance, improving equity across value chains, diversifying production through native species aquaculture and value-added products, and developing integrated long-term monitoring that links ecological indicators, market dynamics, governance performance, and community wellbeing under climate change and uncertainty.
Bioacoustics is an effective tool for identifying insectivorous bat species, particularly those that forage in the upper forest strata and show low capture probabilities using traditional methods. However, for many rare or range-restricted species, available acoustic information remains limited. In this study, we present the first acoustic description of Saccopteryx antioquensis, an endemic and threatened species restricted to karst ecosystems in southeastern Antioquia, Colombia. We describe echolocation pulses based on reference recordings obtained from an individual captured in 2020 and on free-flying recordings collected in 2022. Echolocation pulses of S. antioquensis were characterized by the alternation of low-frequency (LF) and high-frequency (HF) pulses, inverted U-shaped spectrograms, and a multi-harmonic structure, with most energy concentrated in the second harmonic. Spectral and temporal parameters exhibited distinctive frequency ranges compared to other species within the genus. Multivariate analyses revealed significant acoustic differentiation between S. antioquensis and other Saccopteryx species for both LF and HF pulses, supporting its acoustic identity and interspecific separation. This information provides a solid baseline for acoustic identification and passive monitoring of the species and represents a key tool to support conservation strategies in a context of high anthropogenic pressure on karst ecosystems. Overall, this study contributes to the knowledge of Neotropical bat bioacoustics and highlights the value of acoustic monitoring for the conservation of endemic and threatened species.
Abstract Background Micromammals play an important role in mediterranean ecosystems. The “megadrought” in the sclerophyll forest has caused a “browning” that implies, among other things, the reduction of canopy cover. The effects of forest browning on the taxonomic and functional diversity of micromammals were evaluated. Methods Forests with high and low disturbance degree were characterized based on the level of browning and canopy cover. To study the community of micromammals in these forests, the Capture-Mark-Recapture method was used with Sherman traps. Community indices such as Shannon–Wiener and Pielou were calculated. The Coefficient of Variation was used to study functional diversity for each trait separately. Multivariate measures FRic, FEve and FDiv were used to determine multidimensional diversity. Results We observed differences in species composition and in richness, diversity, and cover variables between forest types. However, micromammal communities were similar in taxonomic and functional diversity in highly and slightly disturbed forests. Discussion The micromammal community appears to show some resistance to forest changes due to disturbance, which could be related to their generalist diet and high dispersal capacity. The presence of the genus Rattus could entail a decrease in native rodent diversity and could have a greater effect than the disturbance of the forest due to drought. These results are an invitation to conduct long-term studies to better understand the potential vulnerability of the different micromammal species to disturbed sclerophyll forests affected by drought.
Abstract Background Assessing the structure of communities requires analysis of multiple dimensions of biological diversity. Such approaches provide a broader understanding of the ecological and historical factors involved in the formation and maintenance of communities. Metrics such as functional and phylogenetic diversity are crucial as they unveil how communities respond to environmental changes, providing a deeper understanding of their current state and resilience. This goes beyond species richness or community composition, enabling more profound insights into their present condition and resilience. Therefore, analysis in this sense allows accessing differences in the distribution of species, considering different landscape mosaics, and allowing strategic prioritization of conservation initiatives. In this sense, we investigated whether the composition of functional and phylogenetic groups of chiropteran species differs between the Pantanal and Cerrado biomes and various habitat types. We hypothesize that communities with greater conservation integrity are more diverse than communities that suffer anthropogenic influences. Methods The surveyed communities include two areas in the Pantanal and two in the Cerrado, with one conservation unit and one that suffers anthropic influence, for each biome. We assessed the composition of bat assemblages by examining functional richness (FRic), functional uniformity (FEve), functional divergence (FDiv), and functional dispersion (FDis). Metrics that reflect phylogenetic richness and divergence were also used, such as phylogenetic diversity (PD), mean pairwise distance (MPD), and mean nearest taxon distance (MNTD). Results and discussion Overall, conservation units sustain higher levels of functional and phylogenetic diversity compared to areas with anthropic influence. In the latter, species occupy fewer ecological niches, indicating that bats can persist in degraded environments, albeit the communities support only a portion of the functional groups. Conclusion Our results showed, through analyses across multiple dimensions of functional and phylogenetic diversity, that bat populations are impacted by environmental degradation and fragmentation. Communities in more conserved areas exhibited higher functional and phylogenetic richness, indicating a greater number of occupied niches. These findings highlight the importance of exploring measures of biological diversity and their spatial scales to advance our understanding of biodiversity dynamics and optimize conservation planning for both species and communities.
MDPI, a rapidly growing mega-publisher, has significantly impacted scientific publishing with a large number of open-access journals covering all areas of knowledge. Fast publication times, numerous special issues, hundreds of guest editors, and incentives for reviewers contribute to its success. However, concerns have arisen about the quality of its peer-review process and the overall quality of its publications; these practices have led some countries to question the validity of MDPI publications for academic evaluations. MDPI's influence has surged in Chile, with publications rising from 1 to 13% between 2017 and 2023. While offering a solution to the "publish or perish" pressure, this growth has sparked a debate over the quality and sustainability of such publications. Public funding plays a significant role, with approximately 36% of MDPI papers in Chile financed by public funds through national research programs. This situation has raised concerns about the optimal use of these resources. Chilean science, renowned in South America, faces the challenge of maintaining high standards in the open-access era. The focus should be on quality over quantity to ensure impactful and innovative research contributions.
Abstract Background Synchronopatric plant species, coexisting and flowering simultaneously, often engage in intense competition for pollen deposition on shared pollinators. This study focuses on the intricate dynamics of chiropterophilous flowers within the neotropical bat-pollination plant guild, specifically investigating the mechanical fit of reproductive structures to pollinating bats at the community level. Methods Utilizing a diverse guild of bat-pollinated plant species from the Caatinga, the largest dry forest in the Neotropics, our research integrates various key components. Initially, we identified specific contact sites for floral reproductive structures on the bat's body, exploring diverse pollen placement strategies. Subsequent efforts involved characterizing floral traits within the guild and examining their associations with different pollen placement strategies. Precision in the contact of floral reproductive structures was estimated, and findings were integrated by associating pollen placement strategies and precision with the investment in pollen production. Results We found that certain bat body parts, particularly the face and neck, were more frequently contacted by reproductive structures. The three identified categories of pollen placement strategies were evenly distributed among plant species, each linked to specific floral traits. Notably, the absence of oriented herkogamy prevailed in 70% of the species. Morphometric analyses unveiled significant variations in operative distances among species, emphasizing exceptional variability in certain outliers. While precision in pollen transfer was influenced by key factors, surprisingly, investment in pollen production did not differ among plants with distinct pollen placement strategies. Furthermore, it showed no correlation with fundamental accuracy. Conclusions The subsequent exploration delves into the intricate associations between distinct floral characteristics and various pollen placement strategies, shaping the complex pollen landscape on bat bodies. This research provides valuable insights into the community-level dynamics of chiropterophilous flowers in the Caatinga Dry Forest, emphasizing the role of different pollen deposition strategies in facilitating the coexistence of multiple plant species within the chiropterophilous guild.
Abstract Background The Easter Island spiny lobster Panulirus pascuensis (Reed, 1954) or ‘Ura’ in the Rapa Nui language, is a little known species native to the south eastern Pacific Ocean, distributed along the coasts of Easter Island, Pitcairn Island, and the Salas y Gómez Ridge. In Easter Island, P. pascuensis is the target of a small and profitable and probably overexploited fishery. In this study, we profited from a series of bioinformatic analyses to mine biological insight from low-pass short-read next generation sequencing datasets; we have estimated genome size and ploidy in P. pascuensis using a k-mer strategy, discovered, annotated, and quantified mobile elements in the nuclear genome, assembled the 45S rRNA nuclear DNA cassette and mitochondrial chromosome, and explored the phylogenetic position of P. pascuensis within the genus Panulirus using the signal retrieved from translated mitochondrial protein coding genes. Results K-mer analyses predicted P. pascuensis to be diploid with a haploid genome size ranging between 2.75 Gbp (with k-mer = 51) and 3.39 Gbp (with k-mer = 18). In P. pascuensis, repetitive elements comprise at least a half and a maximum of three fourths of the nuclear genome. Almost a third (64.94%) of the repetitive elements present in the studied nuclear genome were not assigned to any known family of transposable elements. Taking into consideration only annotated repetitive elements, the most abundant were classified as Long Interspersed Nuclear Elements (22.81%). Less common repetitive elements included Long Terminal Repeats (2.88%), Satellite DNA (2.66%), and DNA transposons (2.45%), among a few others. The 45S rRNA DNA cassette of P. pascuensis was partially assembled into two contigs. One contig, 2,226 bp long, encoded a partially assembled 5′ ETS the entire ssrDNA (1,861 bp), and a partial ITS1. A second contig, 6,714 bp long, encoded a partially assembled ITS1, the entire 5.8S rDNA (158 bp), the entire ITS2, the entire lsrDNA (4,938 bp), and a partial 3′ ETS (549 bp). The mitochondrial genome of P. pascuensis was 15,613 bp long and contained 13 protein-coding genes (PCGs), 22 transfer RNA (tRNA) genes, and two ribosomal RNA genes (12S ribosomal RNA [rrnS] and 16S ribosomal RNA [rrnL]). A phylomitogenomic analysis based on PCGs retrieved Panulirus pascuensis as sister to a fully supported clade comprising P. cygnus and P. longipes. Conclusion We expect that the information generated in this study will guide the assembly of a chromosome-level nuclear genome for P. pascuensis in the near future. The newly assembled 45S rRNA nuclear DNA cassette and mitochondrial chromosome can support bioprospecting and biomonitoring of P. pascuensis using environmental DNA. The same elements can help to survey the public market place and detect mislabelling of this and other spiny lobsters. Overall, the genomic resources generated in this study will aid in supporting fisheries management and conservation strategies in this iconic spiny lobster that is likely experiencing overexploitation.
AbstractKnowing what the highest-level mammalian carnivores and intermediate levels eat throughout the geography and how human activities may affect their community dynamics is relevant information to focusing and deciding on conservation efforts within a territory. In this review, we characterize geographically the accumulated knowledge about the trophic niche of terrestrial mammalian carnivore species and evaluate the spatial relationship between the species richness distribution and the geographical distribution of their trophic knowledge in Chile. We found 88 peer-reviewed papers that include trophic studies per se, theses, and short notes carried out in Chile, where at least one trophic element was reported for terrestrial mammalian carnivore species. We found a positive relationship between the species richness distribution pattern and the spatial distribution of accumulated trophic knowledge, i.e., most of the papers have been conducted in Central-southern Chile (Central Chile and Temperate Forest ecoregions) responding to the highest co-occurrence of carnivore species within the limits of the biodiversity hotspot, the most threatened area in the country. Despite this general relationship, we recognize gaps in knowledge regarding regions of the country that require more research effort, such as O’Higgins, Maule, and Ñuble regions, as well as focus efforts on certain species with no or almost no knowledge of their trophic ecology, such as Leopardus colocola, Lyncodon patagonicus and Conepatus chinga. Except for the northern Chilean ecosystems, there is a generalized report of high consumption of exotic mammals in the diet of carnivores in the center and south of the country. However, of the 98 localities recognized in the 88 papers, 20.4% correspond to an anthropized environment, while most (79.6%) correspond to a “non-anthropized” environment or protected area. We hope this review allows researchers and decision-makers to consider the knowledge and lack thereof of carnivore trophic interactions as an opportunity to conserve entire natural communities throughout the Chilean territory.
The potential ecosystem collapse of forests in Mediterranean-type ecosystems (MTEs) by unprecedented droughts is worrisome due to the impacts on its exceptional biodiversity and human well-being. However, research integrating the impacts of global change drivers, forest resilience and the challenges facing human-nature relationships is still scarce. Using the central Chile megadrought and recently massive forest browning event as a model scenario, we identified, through a scientific literature review and an interdisciplinary scientific workshop, the research priorities and questions to address for MTEs in a context of global change. Our results highlighted knowledge gaps that need to be covered, particularly in social and environmental sciences, with an emphasis on soil science. Research priorities must focus on (1) the understanding of interactive effects of global and local anthropogenic drivers on MTEs and (2) the evaluation of the potential impacts of MTEs collapse on human well-being and ecosystem functioning. We highlight the need for a collaborative approach involving scientists, landowners, managers/administrators, and policymakers to apply adaptive forest management against the current socio-environmental challenges under a global change context.
We assess the putative identity of canids accompanying the Patagonian and Fuegian aborigines through an iconographic timeline encompassing 1699–1894, when a number of narratives provided written descriptions and illustrations of those aborigines and their canids. We determine what type of “dogs” were those canids, disentangling their type or breed group, to reveal their characteristics, composition, and development during that period. We searched for illustrations published by navigators and explorers where the presence of canids was reported in the historical territory of the Patagonian aborigines (Aónikenk, Kawésqar, Manek'enk, Sélk'nam, and Yahgan). We constructed a matrix to record the descriptions of all canids represented in those illustrations. Their characterization included body size, coat, tail, ears, skull, and attitude, among others. We then classified whether they were morphologically closer to domestic dogs or to foxlike canids. We used the morphological appearance of dogs to classify them into breed types, whenever possible. We identified and classified 61 canids from 26 illustrations in accounts published between 1699 and 1894. From a historical perspective, those accounts suggest that soon after the first contacts with Europeans, the Patagonian and Fuegian aborigines began to exchange and breed dogs of non-native origin, initiating an extended process of mixing between aboriginal foxlike canids and European dogs. From a cynological perspective, the foxlike canids associated with the aborigines were widely present only before 1833, exhibing an homogeneous appearance with a solid coat, pointed snout, small erect ears of high insertion, and fallen and bushy tail. After 1833, the canids depicted show a more varied appearance and mixed coat, with blunter snout, drooping ears at lower insertion, and erect fine tail with sparse hair. Most of these were hunting dogs morphologically similar to modern breeds such as pointers/setters, hounds, terriers, and retrievers.
Abstract The composition of the vascular flora in Punta Arenas city, found in the city’s public spaces, was studied. The species were identified and recorded in a database, which was supplemented with information on taxonomic classification, growth habit, Raunkiaer’s life form, origin status (native or exotic), and original continent-level distribution. These data were compared with studies conducted in five other cities in central Chile, together with an analysis of compositional similarity with these cities, by using the additive complement of Simpson’s index (1– βsim). In Punta Arenas, 119 species were identified, showing a higher proportion of Gymnosperms compared to central Chilean cities. The most represented families were Asteraceae (16 species), Fabaceae (14), Rosaceae (14), Poaceae (12), and Pinaceae (10), which together accounted for 55% of the floristic richness. The compositional similarity between Punta Arenas and the other central Chilean cities ranged from 0.187 to 0.315, showing lower similarity than expected by chance (Montecarlo randomization test; P < 0.05). The primary origin distribution of Punta Arenas’ vascular flora was European, unlike central Chilean cities where it was Asian. Finally, the proportion of exotic species (91.6%) and the number of exotic species per native species (16 exotics/native) were the highest documented for cities in Chile and higher than in other 114 cities worldwide. These results indicate that Punta Arenas’ urban flora differs from the flora in central Chilean cities, not only in taxonomic composition but also in growth habit, biogeographical origin, and high level of exoticism. These differences are likely due to the city’s territorial isolation and extreme southern location (53°S), leading to a unique urban flora configuration.
In this study, we conducted a survey of newly discovered populations of tuco-tuco (subterranean rodents of the genus Ctenomys) in the Entre Ríos province, in an area characterized by its unexplored nature and its climatic and biogeographic complexity within Argentina, which includes two National Parks. We characterize the nucleotide sequences of the cytochrome-b gene, revealing the presence of seven novel haplotypes within Ctenomys rionegrensis, a species known to inhabit both sides of the Uruguay River. Through Bayesian analyses, we estimated the divergence times of the oldest lineages of C. rionegrensis, as well as those of the haplotypes located east of the Uruguay River, dating back approximately 630,000 years before present (ybp) and 526,000 ybp, respectively. These estimates correspond with significant paleogeographic events in the region. Our findings may raise questions regarding the taxonomic classification of the species and suggest potential modifications to its current endangered status as designated by the International Union for Conservation of Nature (IUCN). Consequently, this research provides valuable insights that may inform future revisions of the species' conservation status and guide the development of informed management strategies/policies.
Background The chilla or grey fox ( Lycalopex griseus ) is a native species from continental Chile and neighboring areas of Argentina. It was introduced to Isla Grande de Tierra del Fuego in 1951 and began to increase its abundance, to the chagrin of local sheep ranchers. Since 1998, its hunting has been authorized. Here we update information on the density, abundance, and activity of this fox in the Chilean sector of Tierra del Fuego Island, to evaluate its population trend since the last census conducted by the Servicio Agrícola y Ganadero (SAG) in 2007. Methods and results We carried out two fox censuses on a 941-km transect on public roads, divided into eight routes, from October to November (spring) of 2021 and 2022, following the same design used by SAG for the fox assessments carried out from 1999 to 2007. We report a reduction of > 50% in the density and abundance of chilla foxes with respect to the 2007 estimate, which could be attributed to the interference by free-ranging dogs ( Canis lupus familiaris ), through restricting the use of space by the fox, while transmitting diseases and parasites, and to human hunting pressure and vehicle collisions. Discussion The chilla fox decline highlights the need for an in-depth study to determine the ecological and socioeconomic impact of this exotic species on the ecosystems of Tierra del Fuego Island and the desirability of its management, if needed.
Background The Fuegian fox ( Lycalopex culpaeus ) is a rare inhabitant of the Tierra del Fuego Archipelago on account of: (a) It is the southernmost Canid in the world. (b) It is the second largest, heaviest, and tallest native Canid in South America. (c) It is currently scarce in northern Tierra del Fuego. (d) It may have been tamed by the Selk’nam natives. Methods and results Based on chronicles and scientific reports we document the timeline since discovery of the distinctive and island-confined Fuegian fox. We pay attention to its patchwork distribution within the Fuegian archipelago, with populations spread on the large Tierra del Fuego Island (Fuegia) and on two smaller ones, Hoste and Gable. This fox seems to have disappeared recently from the latter and historic records from Navarino Island are dubious. We provide new distributional records and unpublished photographs. Among the socio-ecological aspects studied, we highlight the relationships of this fox with two local indigenous people: The Yahgan and the Selk´nam. Discussion The introduction of sheep Ovis aries in 1885 and the ensuing persecution of its putative predators apparently caused the fox decline from the northern half of Fuegia. The introduction of the continental Chilla fox Lycalopex griseus in 1951 further impacted the Fuegian fox, apparently by competition for food but perhaps also by diseases. It is currently concentrated in the southern half of Tierra del Fuego Island. The possibility that the Selk’nam introduced this fox from the mainland and that they tamed it, is also discussed.