Ahimsa Campos-Arceiz
University of Nottingham Malaysia Campus
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Publication
Featured researches published by Ahimsa Campos-Arceiz.
Ecology | 2008
Ahimsa Campos-Arceiz; Asier R. Larrinaga; Udayani R. Weerasinghe; Seiki Takatsuki; Jennifer Pastorini; Peter Leimgruber; Prithiviraj Fernando; Luis Santamaría
Digestive physiology and movement patterns of animal dispersers determine deposition patterns for endozoochorously dispersed seeds. We combined data from feeding trials, germination tests, and GPS telemetry of Asian elephants (Elephas maximus) to (1) describe the spatial scale at which Asian elephants disperse seeds; (2) assess whether seasonal differences in diet composition and ranging behavior translate into differences in seed shadows; and (3) evaluate whether scale and seasonal patterns vary between two ecologically distinct areas: Sri Lankas dry monsoon forests and Myanmars (Burma) mixed-deciduous forests. The combination of seed retention times (mean 39.5 h, maximum 114 h) and elephant displacement rates (average 1988 m in 116 hours) resulted in 50% of seeds dispersed over 1.2 km (mean 1222-2105 m, maximum 5772 m). Shifts in diet composition did not affect gut retention time and germination of ingested seeds. Elephant displacements were slightly longer, with stronger seasonal variation in Myanmar. As a consequence, seed dispersal curves varied seasonally with longer distances during the dry season in Myanmar but not in Sri Lanka. Seasonal and geographic variation in seed dispersal curves was the result of variation in elephant movement patterns, rather than the effect of diet changes on the fate of ingested seeds.
Integrative Zoology | 2013
Georgina O'Farrill; Mauro Galetti; Ahimsa Campos-Arceiz
Tapirs are one of the last extant megafauna species that survived the Pleistocene extinctions. Given their size and digestive system characteristics, tapirs might be the last potential seed disperser of plant species that were previously dispersed by other large mammal species that are now extinct. We compiled evidence from 39 published scientific studies showing that tapirs have a key role as seed dispersers and seed predators. Tapirs play an important role either through seed predation or by facilitating the recruitment of seeds over long distances, therefore influencing the diversity of plant species in the ecosystem. Neotropical tapirs might have a unique role as long-distance seed dispersers of large seeds (<20 mm) because they are capable of depositing viable large seeds in favorable places for germination that even large-bodied primates cannot disperse. Given the high diversity of seed species found in tapir diet, more information is needed on the identification of seed traits that allow the survival of seeds in the tapirs gut. Moreover, further studies are necessary on the role of tapirs as seed dispersers and predators; in particular considering spatial patterns of dispersed seeds, seed viability, effect of dung, and seed density in tapir latrines, and the effect of deposition sites on germination and seedling survival. Because all tapir species are highly threatened, it is paramount to identify gaps in our knowledge on the ecological role of tapirs and, in particular, on critical and endangered plant-tapir interactions to avoid possible trophic cascading effects on ecosystem function.
BioScience | 2016
William J. Ripple; Guillaume Chapron; José Vicente López-Bao; Sarah M. Durant; David W. Macdonald; Peter A. Lindsey; Elizabeth L. Bennett; Robert L. Beschta; Ahimsa Campos-Arceiz; Richard T. Corlett; Chris T. Darimont; Amy J. Dickman; Rodolfo Dirzo; Holly T. Dublin; James A. Estes; Kristoffer T. Everatt; Mauro Galetti; Varun R. Goswami; Matt W. Hayward; Simon Hedges; Michael Hoffmann; Luke T. B. Hunter; Graham I. H. Kerley; Mike Letnic; Taal Levi; Fiona Maisels; John Morrison; Michael Paul Nelson; Thomas M. Newsome; Luke E. Painter
From the late Pleistocene to the Holocene, and now the so called Anthropocene, humans have been driving an ongoing series of species declines and extinctions (Dirzo et al. 2014). Large-bodied mammals are typically at a higher risk of extinction than smaller ones (Cardillo et al. 2005). However, in some circumstances terrestrial megafauna populations have been able to recover some of their lost numbers due to strong conservation and political commitment, and human cultural changes (Chapron et al. 2014). Indeed many would be in considerably worse predicaments in the absence of conservation action (Hoffmann et al. 2015). Nevertheless, most mammalian megafauna face dramatic range contractions and population declines. In fact, 59% of the world’s largest carnivores (≥ 15 kg, n = 27) and 60% of the world’s largest herbivores (≥ 100 kg, n = 74) are classified as threatened with extinction on the International Union for the Conservation of Nature (IUCN) Red List (supplemental table S1 and S2). This situation is particularly dire in sub-Saharan Africa and Southeast Asia, home to the greatest diversity of extant megafauna (figure 1). Species at risk of extinction include some of the world’s most iconic animals—such as gorillas, rhinos, and big cats (figure 2 top row)—and, unfortunately, they are vanishing just as science is discovering their essential ecological roles (Estes et al. 2011). Here, our objectives are to raise awareness of how these megafauna are imperiled (species in supplemental table S1 and S2) and to stimulate broad interest in developing specific recommendations and concerted action to conserve them.
PLOS Biology | 2016
Lydia Beaudrot; Jorge A. Ahumada; Timothy G. O'Brien; Patricia Alvarez-Loayza; Kelly Boekee; Ahimsa Campos-Arceiz; David Eichberg; Santiago Fernando Romero Espinosa; Eric H. Fegraus; Christine Fletcher; Krisna Gajapersad; Chris Hallam; Johanna Hurtado; Patrick A. Jansen; Amit Kumar; Marcela Guimarães Moreira Lima; Colin Mahony; Emanuel H. Martin; Alex McWilliam; Badru Mugerwa; Mireille Ndoundou-Hockemba; Jean Claude Razafimahaimodison; Hugo Romero-Saltos; Francesco Rovero; Julia Salvador; Fernanda Santos; Douglas Sheil; Wilson R. Spironello; Michael R. Willig; Nurul Winarni
Extinction rates in the Anthropocene are three orders of magnitude higher than background and disproportionately occur in the tropics, home of half the world’s species. Despite global efforts to combat tropical species extinctions, lack of high-quality, objective information on tropical biodiversity has hampered quantitative evaluation of conservation strategies. In particular, the scarcity of population-level monitoring in tropical forests has stymied assessment of biodiversity outcomes, such as the status and trends of animal populations in protected areas. Here, we evaluate occupancy trends for 511 populations of terrestrial mammals and birds, representing 244 species from 15 tropical forest protected areas on three continents. For the first time to our knowledge, we use annual surveys from tropical forests worldwide that employ a standardized camera trapping protocol, and we compute data analytics that correct for imperfect detection. We found that occupancy declined in 22%, increased in 17%, and exhibited no change in 22% of populations during the last 3–8 years, while 39% of populations were detected too infrequently to assess occupancy changes. Despite extensive variability in occupancy trends, these 15 tropical protected areas have not exhibited systematic declines in biodiversity (i.e., occupancy, richness, or evenness) at the community level. Our results differ from reports of widespread biodiversity declines based on aggregated secondary data and expert opinion and suggest less extreme deterioration in tropical forest protected areas. We simultaneously fill an important conservation data gap and demonstrate the value of large-scale monitoring infrastructure and powerful analytics, which can be scaled to incorporate additional sites, ecosystems, and monitoring methods. In an era of catastrophic biodiversity loss, robust indicators produced from standardized monitoring infrastructure are critical to accurately assess population outcomes and identify conservation strategies that can avert biodiversity collapse.
Ecological Research | 2004
Ahimsa Campos-Arceiz; Seiki Takatsuki; Badamjav Lhagvasuren
Botanical and particle size compositions of the feces of sympatric Mongolian gazelles, sheep/goats, and horses collected in southern Mongolia in autumn 2002 were analyzed. The botanical composition of Mongolian gazelles was similar to that of sheep/goats where dicotyledonous plants (64.6% for Mongolian gazelles, 65.6% for sheep/goats), particularly woody fibers were important (39.5% for Mongolian gazelles, 19.5% for sheep/goats). In contrast, horse feces were exclusively composed of graminoids (93.2%). Consequently, food overlap was great between Mongolian gazelles and sheep/goats (Pianka’s index: 0.977) but was small between Mongolian gazelles and horses (0.437) and sheep/goats and horses (0.421). Particle size distributions were also similar between Mongolian gazelles and sheep/goats, whereas they were different between horses and Mongolian gazelles and horses and sheep/goats. These results support our expectation based on the Jarman-Bell principle. Although interspecific competition cannot be inferred from a mere food overlap, our analyses suggest that sheep and goats are potential competitors for Mongolian gazelles. Therefore, the increase in the numbers of domestic sheep/goats might pose a risk for Mongolian gazelle populations.
Ecological Research | 2005
Ahimsa Campos-Arceiz; Seiki Takatsuki
Seasonal changes in the composition of the diet of the sika deer population in the Shiranuka Hills, eastern Hokkaido, in 1998 were determined by fecal analyses. The deer were dependent on Sasa nipponica, a dwarf bamboo, throughout the year, particularly in winter when it accounted for as much as 77.7% of the diet. It accounted for 33.1% and 45.6% in spring and summer, respectively, and this decreased to 12.2% in autumn. Besides S. nipponica, all the graminoid categories accounted for large amounts (66–96.7%), while dicotyledonous plants accounted for little (3–8%) except in autumn when they accounted for 31%. The strong dependence of the Shiranuka population on graminoids was different from other Hokkaido deer populations, for example the population from Ashoro/Onbetsu and the extremely high density population on Nakanoshima Island. In spite of these differences, food for all Hokkaido sika deer was poor in winter. Along the north–south geographical cline in the food composition of sika deer along the Japanese archipelago, the Shiranuka population was positioned as a grazer type, in contrast to the southern populations. However, it is important to note that variations are great among local populations in Hokkaido.
Ecological Research | 2008
Ahimsa Campos-Arceiz; Thin Zar Lin; Wan Htun; Seiki Takatsuki; Peter Leimgruber
At an elephant camp in central Myanmar (Burma), we interviewed mahouts and veterinarians to describe the diet of Asian elephants (Elephas maximus) in a mixed-deciduous forest. Elephants showed a broad dietary breadth (103 plant species from 42 families); consumed mostly browse (94% of plant species); and were very selective about plant parts [e.g., many trees were eaten exclusively for their bark (22%) or fruits (14%)]. The fruits from 29 plant species were recorded to be eaten by elephants. Several of these were found as fruit remains, seeds, or seedlings in elephant dung, suggesting a role of Asian elephants in seed dispersal. Work elephants and their mahouts prove to be a rich source of information to understand wild elephant ecology.
Landscape Research | 2016
Rory Padfield; Simon Drew; Khadijah Syayuti; Susan E. Page; Stephanie Evers; Ahimsa Campos-Arceiz; Nagulendran Kangayatkarasu; Alex Sayok; Sune Balle Hansen; Greetje Schouten; Martha Maulidia; Effie Papargyropoulou; Mun Hou Tham
Abstract The recent Southeast Asian haze crisis has generated intense public scrutiny over the rate, methods and types of landscape change in the tropics. Debate has centred on the environmental impacts of large-scale agricultural expansion, particularly the associated loss of high carbon stock forest and forests of high conservation value. Focusing on palm oil—a versatile food crop and source of bioenergy—this paper analyses national, international and corporate policy initiatives in order to clarify the current and future direction of oil palm expansion in Malaysia and Indonesia. The policies of ‘zero burn’, ‘no deforestation’ and ‘no planting on peatlands’ are given particular emphasis in the paper. The landscape implications of corporate commitments are analysed to determine the amount of land, land types and geographies that could be affected in the future. The paper concludes by identifying key questions related to the further study of sustainable land use policy and practice.
Environmental Conservation | 2015
Rory Padfield; Susan Waldron; Simon Drew; Effie Papargyropoulou; Shashi Kumaran; Susan E. Page; David Gilvear; Alona Armstrong; Stephanie Evers; Paul Simon Williams; Zuriati Zakaria; Singyun Chin; Sune Balle Hansen; Ahimsa Campos-Arceiz; Mohd Talib Latif; Alex Sayok; Munhou Tham
There is a need for coordinated research for the sustainable management of tropical peatland. Malaysia has 6% of global tropical peat by area and peatlands there are subject to land use change at an unprecedented rate. This paper describes a stakeholder engagement exercise that identified 95 priority research questions for peatland in Malaysia, organized into nine themes. Analysis revealed the need for fundamental scientific research, with strong representation across the themes of environmental change, ecosystem services, and conversion, disturbance and degradation. Considerable uncertainty remains about Malaysias baseline conditions for peatland, including questions over total remaining area of peatland, water table depths, soil characteristics, hydrological function, biogeochemical processes and ecology. More applied and multidisciplinary studies involving researchers from the social sciences are required. The future sustainability of Malaysian peatland relies on coordinating research agendas via a ‘knowledge hub’ of researchers, strengthening the role of peatlands in land-use planning and development processes, stricter policy enforcement, and bridging the divide between national and provincial governance. Integration of the economic value of peatlands into existing planning regimes is also a stakeholder priority. Finally, current research needs to be better communicated for the benefit of the research community, for improved societal understanding and to inform policy processes.
PeerJ | 2017
Sheema Abdul Aziz; Gopalasamy Reuben Clements; Lee Yin Peng; Ahimsa Campos-Arceiz; Kim R. McConkey; Pierre-Michel Forget; Han Ming Gan
There is an urgent need to identify and understand the ecosystem services of pollination and seed dispersal provided by threatened mammals such as flying foxes. The first step towards this is to obtain comprehensive data on their diet. However, the volant and nocturnal nature of bats presents a particularly challenging situation, and conventional microhistological approaches to studying their diet can be laborious and time-consuming, and provide incomplete information. We used Illumina Next-Generation Sequencing (NGS) as a novel, non-invasive method for analysing the diet of the island flying fox (Pteropus hypomelanus) on Tioman Island, Peninsular Malaysia. Through DNA metabarcoding of plants in flying fox droppings, using primers targeting the rbcL gene, we identified at least 29 Operationally Taxonomic Units (OTUs) comprising the diet of this giant pteropodid. OTU sequences matched at least four genera and 14 plant families from online reference databases based on a conservative Least Common Ancestor approach, and eight species from our site-specific plant reference collection. NGS was just as successful as conventional microhistological analysis in detecting plant taxa from droppings, but also uncovered six additional plant taxa. The island flying fox’s diet appeared to be dominated by figs (Ficus sp.), which was the most abundant plant taxon detected in the droppings every single month. Our study has shown that NGS can add value to the conventional microhistological approach in identifying food plant species from flying fox droppings. At this point in time, more accurate genus- and species-level identification of OTUs not only requires support from databases with more representative sequences of relevant plant DNA, but probably necessitates in situ collection of plant specimens to create a reference collection. Although this method cannot be used to quantify true abundance or proportion of plant species, nor plant parts consumed, it ultimately provides a very important first step towards identifying plant taxa and spatio-temporal patterns in flying fox diets.