Alectura lathami: BirdLife International

Author(s):  
Keyword(s):  
2020 ◽  
Author(s):  
Andrew Elliott ◽  
Guy M. Kirwan
Keyword(s):  

2021 ◽  
Author(s):  
David Milledge ◽  
Norman Graham ◽  
Jill Smith

ABSTRACT A population of the Northern Long-nosed Potoroo Potorous tridactylus tridactylus in Tyagarah Nature Reserve on the far north coast of New South Wales was first recorded in 1985. In 1992, a cage-trapping study captured 15 individuals in the central section of the reserve and the population was estimated at 80–90 individuals at that time. A subsequent cage-trapping study in 2004 captured four individuals in the southern section of the reserve, but further cage- and camera-trapping surveys in 2009 and 2012 failed to detect any individuals. Additional camera-trapping surveys between 2012 and 2015 and more intensive surveys between 2015 and 2016 also failed to detect any individuals. The lack of detections from targeted surveys over seven years between 2009 and 2016 suggests that the Tyagarah population of the subspecies has been lost. Reasons for this loss are unclear but may be due to a combination of factors including isolation of the reserve by urban development and highway upgrades, a lack of fire for 40 years, competition for food with the local population of the Australian Brush-turkey Alectura lathami, prolonged drought and possibly, predation by the Red Fox Vulpes vulpes and non-target effects of predator control programs.


2006 ◽  
Vol 54 (2) ◽  
pp. 71 ◽  
Author(s):  
Ann Göth ◽  
Lee Astheimer

Australian brush-turkeys (Alectura lathami) hatch in incubation mounds of organic material and have no parental role models to learn from. When raised in outdoor aviaries, without adults, four of six males built incubation mounds at an early age of 4.5–9 months. The two males without mounds were the only ones without detectable levels of testosterone (T) at 4.5 months, whereas body mass did not explain the presence or absence of mound building. At the age of 11 months, all males had detectable T, including those without mounds. This study also investigated the development of social dominance in males kept in mixed-sex groups for 4.5 months. At this latter age, higher-ranked males tended to have higher T levels (P = 0.076), whereas dominance ranks at 4.5 months were not correlated with body mass or size, either at this age or at hatching. Overall, these results suggest that mound building develops without learning, and there is a relationship between T levels and dominance status as well as the absence or presence of mound building. These findings contribute to discussions on the role of learning in behavioural development and the role of T and body mass in avian life history.


2005 ◽  
Vol 9 (1) ◽  
pp. 47-54 ◽  
Author(s):  
Katherine L. Barry ◽  
Ann Göth

PLoS ONE ◽  
2017 ◽  
Vol 12 (9) ◽  
pp. e0185014
Author(s):  
Madison T. Ortega ◽  
Dustin J. Foote ◽  
Nicholas Nees ◽  
Jason C. Erdmann ◽  
Charles D. Bangs ◽  
...  

2016 ◽  
Vol 64 (1) ◽  
pp. 33
Author(s):  
Taneal M. Cope ◽  
Terry Bertozzi ◽  
Raoul A. Mulder ◽  
Stephen C. Donnellan

Using 454 pyrosequencing and genomic enrichment techniques we developed 12 polymorphic markers for the endangered megapode, the malleefowl (Leipoa ocellata). Pyrosequencing on a 454 instrument resulted in 65 536 reads, with 3469 containing microsatellite repeats. Of these, 232 contained unique flanking sequences and had more than 8 repeat motifs. We chose 13 loci based on reliability of amplification and, from these, 12 unlinked loci were selected for genotyping. In a single population (n = 19), the 12 markers were moderately polymorphic (number of alleles per locus range = 3–7) and showed moderate to high levels of heterozygosity (0.285–0.882). Nine microsatellite primer pairs developed from the brush turkey (Alectura lathami), the closest living relative of the malleefowl in the family, Megapodiidae, failed to reliably amplify malleefowl DNA.


2002 ◽  
Vol 29 (5) ◽  
pp. 503 ◽  
Author(s):  
Ann Göth ◽  
Uwe Vogel

Megapode chicks live independently from the time of hatching and are thus ideal subjects for investigations into how the lack of parental care can affect chick survival. Here, we present such results for chicks of the Australian brush-turkey (Alectura lathami), radio-tracked in two smallremnant rainforest patches (Mary Cairncross Rainforest Park and Aplin Forest) from their second day of life. Mortality was 88–100% during the first three weeks after hatching. It did not differ between two breeding seasons at Mary Cairncross Rainforest Park, as evident from comparisons of average survival time (in days) and Kaplan–Meier survival estimates. Survival differed, though, between the two sites in the same breeding season: the average survival time was significantly higher at Aplin Forest (8 days compared with 3�days) and the Kaplan–Meier survival estimates decreased less sharply. Predation by cats and birds of prey exerted the greatest influence on survival, but the proportion of deaths caused by these two predators was approximately the same at both sites. The main factor affecting survival was obviously the availability of thickets, which were more abundant at Aplin Forest. The survival rates of chicks released in thickets was significantly higher than of those released in the rainforest, presumably because they were better protected from predators. For chicks living in thickets the likelihood of being killed was lower than expected, but it was higher for those remaining in rainforest. On the basis of these results, we propose that management plans for endangered megapodes should include the identification and protection of large protective thicket habitats for enhancing overall chick survival, apart from controlling introduced predators such as feral cats.


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