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Biology subjects

Poon, E. S. K.

Publications and source records attributed to Poon, E. S. K..

10 recordsLinked to original sources

Do lovebirds ever forget? Long-term memory retention and adaptive forgetting in rosy-faced lovebirds

Long-term memory has been extensively documented in many animals across a range of ecological contexts. Far less is understood, however, about how long memories persist after active modification or how conflicting memories are adaptively regulated to enable flexible behaviour. Parrots are widely recognized for their high intelligence and cognitive capability, yet the study of memory has focused on only a handful of large parrot species. Here, using a binary choice symbolic system, we conducted three experiments on 28 rosy-faced lovebirds (Agapornis roseicollis) to investigate (1) memory retention of initial associative learning at intervals of two weeks, half a year, and one year; (2) reversal learning, where the rewarded and unrewarded symbols were swapped; and (3) memory retention, following reversal learning at two-week and half-year intervals. We revealed that (a) initial associative learning memory was strikingly persistent, remaining detectable after nearly 600 days; (b) reversal learning performance was comparable to that of large parrot species; and (c) while the post-reversal forgetting curve mirrored the pattern of initial learning, it exhibited a shorter retention duration and a lower retention plateau. These findings suggest that forgetting may serve as an adaptive mechanism that regulates the retrievability of conflicting information, rather than a simple erasure of memory traces. When the environment changes, the retrievability of previously functional but now maladaptive memories is suppressed, but their long-term storage is preserved for potential future use under analogous circumstances. Such dynamic regulations prevent the repetitive overwriting of information in a fluctuating environment, thereby fostering greater behavioural flexibility across dynamic scenarios.

animal behavior and cognition↗

From innovation to integration: Personality, sex, and learning drive recombination of innovative behaviours in lovebirds

Behaviour innovation plays a pivotal role in a species adaptability to dynamic environments. Investigating innovative behaviour and its underlying mechanism is therefore crucial for elucidating the development of cognitive flexibility across animals. Animal personality--which shapes how individuals perceive and engage with their surroundings--could offer insights into individual variation in this process. This study used a three-step foraging puzzle to evaluate the innovation capacity in 28 rosy-faced lovebirds (Agapornis roseicollis), specifically examining their capacity to recombine individually innovated component behaviours into integrated, more sophisticated techniques. We found that nearly half of the individuals spontaneously innovated multiple component behaviours to solve novel puzzles. Crucially, when challenged with a more sophisticated task, they recombined these behaviours into functionally dependent sequences without prior social demonstration. We further identified sex, persistence, and asocial learning capacity as key predictors of innovative problem-solving performance, with females, persistent individuals, and superior asocial learners excelled at problem-solving. Our findings demonstrate that behavioural innovation is not a static event, but a dynamic process--modulated by physical, cognitive, and personality variables--in which behaviours are flexibly transferred and recombined into increasingly complex forms to enable rapid individual adaptation.

animal behavior and cognition↗

Omnivorous diets of sympatric duck species in a subtropical East Asia wetland unveiled by multi-marker DNA metabarcoding

The East Asian-Australasian Flyway (EAAF) is experiencing notable population decreases in its migratory waterbird species. Our understanding of the foraging ecology of these waterbird species, including ducks, is crucial for monitoring and safeguarding their food sources and wetland habitats. Here, we used a DNA metabarcoding approach to analyze the fecal DNA from duck species to elucidate their dietary composition during the wintering period in a subtropical East Asian wetland. By employing multiple markers (18S, COI, and trnL) targeting different taxonomic groups and levels, we offered a comprehensive dietary analysis for omnivores that consume both plants and animals. We revealed the dietary compositions of common migratory duck species and their intraspecific and interspecific variations. While ducks are generally known to be omnivorous, Anas crecca had a more specialized diet and was primarily herbivorous throughout winter. In contrast, the sympatric Mareca penelope and Spatula clypeata exhibited a more omnivorous foraging behavior. Moreover, A. crecca displayed less dietary variation among individuals, while individuals of M. penelope and S. clypeata were highly variable in their diets. Comparing our results with those of studies conducted in different regions, we found that the dietary compositions of these duck species varied to different degrees across geographic locations. This variation underscores the flexibility of these duck species in their diets and their adaptable foraging strategies. Our findings also indicate that grasslands rich in herbaceous plants and aquatic environments abundant in small aquatic invertebrates are vital foraging habitats for duck species during their winter stay.

ecology↗

Food for thought: Rosy-faced lovebirds (Agapornis roseicollis) are capable of associative symbol learning and inference-based quantity discrimination

Cognitive capacity for quantity discrimination is highly adaptive in various ecological contexts and subject to convergent evolution across diverse animal species, yet the underlying mechanism involved is not fully understood. Discrimination accuracy generally increases with the ratio between two quantities; however, this ability is expected to differ across ratio ranges. To test this we presented a novel symbol system to 28 rosy-faced lovebirds (Agapornis roseicollis), associating additive tally marks with symbols representing a one-to-one correspondence with different food quantities. Trained lovebirds could spontaneously infer the relative food quantities represented by other symbols. Lovebirds proved capable of (1) associating symbols (i.e., object-file symbolism); with (2) "more-less" quantity inference, by deducing food quantities based on their knowledge of this symbol-quantity association; and (3) enhancing their performance in relation to disparity ratio (conforming to Webers law) and absolute difference. Furthermore (4), the influence of food ratio and absolute difference varied with different ratio ranges. Within a small ratio range ([≤] 3) discrimination performance improved with increments of ratio or absolute difference, whereas within a higher ratio range (> 3), the effect of these factors diminished. We conclude that rosy-faced lovebirds are capable of advanced numeracy and quantity discrimination, similar to larger parrot species.

animal behavior and cognition↗

Foraging niche partitioning of three Myotis bat species and marine fish consumption by Myotis pilosus in a subtropical East Asian region

Most bats are insectivorous, but some species have evolved the ability to prey on fish. Although piscivory has been confirmed in the Ricketts big-footed myotis (Myotis pilosus), the extent of piscivory of other cohabiting Myotis species is uncertain. This study aims to explore the dietary niches and fish consumption of three Myotis species in a subtropical East Asian region, and specifically the fish diet of M. pilosus. Our findings reveal, for the first time, that M. pilosus consumes marine fishes, in contrast to previous research conducted in inland regions that suggested year-round consumption of cyprinids in freshwater habitats. We also observed seasonal variation in the diets of M. pilosus. It predominately hunted wide-banded hardyhead silverside, sailfin flying fish, and shorthead anchovy during the wet season, while mainly preying upon mullets during the dry months. In more inland areas, M. pilosus was found to primarily feed on invasive freshwater poeciliids. Furthermore, M. pilosus consumed more fish during the dry season, while there was a greater consumption of insects during the wet months. Most notably among our findings is the consumption of fish by two individuals of Horsfields myotis (M. horsfieldii), indicating that the species is potentially piscivorous. We revealed that both M. horsfieldii and M. pilosus consumed water striders, suggesting that foraging of aquatic insects could be driving the evolution of fishing behavior. Our findings have also shed light on the flexibility of foraging behavior in piscivorous bats.

ecology↗

The genetic consequences of historic climate change on the contemporary population structure of a widespread temperate North American songbird

Studies of widely distributed species can offer insight regarding how past demographic events tied to historic glaciation and ongoing population genetic processes interact to shape contemporaneous patterns of biodiversity at a continental scale. In this study, we used whole-genome resequencing to investigate the current population structure and genetic signatures of past demographic events in the widespread migratory American goldfinch (Spinus tristis). In contrast to the low variation in mitochondrial genomes, a genome-wide panel of >4.5 million single nucleotide polymorphisms (SNPs) strongly supported the existence of eastern and western populations separated by western mountain ranges and additional population structuring within the western clade. Demographic modeling indicated that the eastern and western populations diverged approximately one million years ago, and both populations experienced subsequent population bottlenecks during the last glacial period. Species distribution models showed a severe contraction of suitable habitat for the American goldfinch during this period, with predicted discontinuities that are indicative of multiple, isolated glacial refugia that coincide with present-day population structure. This study highlights the power of genome-level sequencing approaches to deepen our understanding of evolutionary processes in nonmodel wild species and to contribute to efforts assessing how historic demographic events and contemporary factors might influence biodiversity.

evolutionary biology↗

Investigating the use of odour and colour foraging cues by rosy-faced lovebirds (Agapornis roseicollis) using deep-learning based behavioural analysis

Olfaction and vision can play important roles in optimizing foraging decisions of birds, enabling them to maximize their net rate of energy intake while searching for, handling, and consuming food. Parrots have been used extensively in avian cognition research, and some species use olfactory cues to find food. Here we pioneered machine learning analysis and pose-estimation with convolutional neural networks (CNNs) to elucidate the relative importance of visual and olfactory cues for informing foraging decisions in the rosy-faced lovebird (Agapornis roseicollis) as a non-typical model species. In a binary choice experiment, we used markerless body pose tracking to analyse bird response behaviours. Rosy-faced lovebirds quickly learnt to discriminate the feeder provisioned with food by forming an association with visual (red/green papers) but not olfactory (banana/almond odour) cues. When visual cues indicated the provisioned and empty feeders, feeder choice was more successful, choice latency shorter, and interest in the empty feeder significantly lower. This demonstrates that visual cues alone are sufficient to inform lovebird foraging decisions without needing to use olfactory cues, suggesting that selection has not driven olfactory-based foraging in lovebird evolution.

animal behavior and cognition↗

Prevalence and genotypes of Chlamydia psittaci in pet birds of Hong Kong

Psittacosis, or parrot fever, is a zoonotic disease caused by Chlamydia species associated with birds. One of the causative agents of the disease is Chlamydia psittaci, which is often carried by psittacine and can be highly pathogenic and virulent to humans. In Hong Kong, a city with high population density, psittacosis is a notifiable disease with over 60% of cases in the last decade resulting in hospitalization. However, the source of transmission of C. psittaci and its prevalence in pet birds in Hong Kong are currently unknown. To evaluate the risks of psittacosis transmission through pet birds, we tested the presence of C. psittaci and determined its genotypes in samples obtained from 516 captive birds from households, pet shops, and a veterinary hospital in Hong Kong. Results revealed that five samples (0.97%), collected from budgerigars and cockatiels, were C. psittaci-positive, while 80% of them were obtained from pet shops. The identified strains belonged to genotype A and were closely related to the strain SP15 that was previously discovered in mainland China. Our study highlights the need for genotyping Chlamydia species in psittacosis patients to understand their source(s) of origin.

zoology↗

Temporal characterization of the viral load of psittacine beak and feather disease virus in rosy-faced lovebirds (Agapornis roseicollis)

Psittacine beak and feather disease virus (PBFDV) is a widespread and highly pathogenic virus in parrots (Psittaciformes), threatening both captive and wild populations over the world. The disease typically presents with feather and beak abnormalities, along with possible immune system suppression. No cure or commercialized vaccine is currently available. Our understanding of the Psittacine beak and feather disease often come from infected individuals with visible symptoms. Limited knowledge exists regarding the pathology and role of asymptomatic individuals in disease transmission. Asymptomatic individuals could shed virus in their crop secretion, feces, or feathers. In this study, we investigated the temporal change in viral load in feather and fecal samples from 17 asymptomatic rosy-faced lovebirds (Agapornis roseicollis). We developed a qPCR assay for PBFDV viral load quantification in the studied lovebirds. Our results showed that most of the individuals had very low viral load, while three individuals with high viral load at the beginning of the experiment were observed to exhibit a decreasing trend in viral load in both fecal and feather samples. Surprisingly, the viral load in an individual can drop from a high level to an undetectable level within three months, which is contrary to the prevailing notion that the disease is highly lethal with few reports of complete recovery. We also showed that viral load in feathers was higher than in feces. Our study provides valuable insights into the infection dynamics of PBFDV in asymptomatic individuals and contribute to the understanding of disease transmission in parrots.

ecology↗

Environmental factors and host sex influence the skin microbiome structure of Hong Kong newt (Paramesotriton hongkongensis) in a coldspot of chytridiomycosis in subtropical East Asia

Chytridiomycosis, an infectious skin disease caused by the chytrid fungi, Batrachochytrium dendrobatidis and B. salamandrivorans, has been threatening global amphibian biodiversity. On the skin of chytrid-resistant amphibians, some antifungal bacteria likely defend them against chytridiomycosis, reducing the mortality of resistant amphibians. The Hong Kong newt (Paramesotriton hongkongensis) inhabits East Asia which is a suspected origin of chytrids. Asymptomatic infection in the newts suggests their long-term coexistence with chytrids. Thus, the skin microbiomes of this resistant species warrant investigation, along with other factors that can affect the microbiome. Among the 149 newts sampled in their natural habitats in Hong Kong, putative antifungal bacteria were found on all newts. There were 314 amplicon sequence variants distributed over 25 genera of putative antifungal bacteria, abundant ones included Acinetobacter, Flavobacterium, and Novosphingobium spp. The skin microbiome compositions were strongly influenced by the inter-site geographical distances. Despite inter-site differences, we identified some core skin microbes across sites, which could be vital to P. hongkongensis. The dominant cores included family Comamonadaceae, family Chitinophagaceae, and class Betaproteobacteria. Moreover, habitat elevation and host sex also exhibited significant effects on skin microbiome compositions. The antifungal bacteria found on these newts offer an important resource for conservation against chytridiomycosis, such as probiotic treatments for susceptible species.

ecology↗