Mite ectoparasites of birds in Punjab, India
Abstract Out of 225 birds, distributed over 26 species, examined from Punjab, India, during 1973–75, a total of 269 mites were discovered from 7 bird species. These mites belonged to 7 families and 5 genera. The mites discovered from different hosts were:CHEYLETIDAE—Bakericheyla sp., from house sparrow (Passer domesticus); EPIDERMOPTIDAE—Strelkoviacarus sp., from house sparrow, common myna (Acridotheres tristis), common house crow (Corvus splendens) and bank myna (Acridotheres ginginianus); GABUCINIDAE—Gabucinia sp., from common house crow, common myna and house sparrow; HARPYRHYNCHIDAE—from common house crow; PROCTOPHYLLODIDAE-Proctophyllodes picae (Koch), from tree pie (Denddrocitta vagabunda), house sparrow, common myna and bank myna, and Proctophyllodes orientalis Gaud from house sparrow; RHINONYSSIDAE—from house sparrow and bank myna; TROUESSARTIIDAE—Trouessartia sp., from bank myna.
- Research Article
8
- 10.3184/175815516x14667741490471
- Sep 1, 2016
- Avian Biology Research
Avian influenza (H9N2) virus infection is an emerging respiratory problem and its prevalence varies significantly among different species of birds. The current knowledge about virus shedding parameters in terrestrial birds is limited. With this in mind, the present study was conducted in different domestic and wild terrestrial birds to investigate species-related differences in infectivity and pattern of viral shedding associated with H9N2 AI virus. Groups of terrestrial birds (domestic Guinea Fowl Numida meleagridis, Japanese Quail Coturnix coturnix japonica, House Sparrows Passer domesticus, House Crows Corvus splendens and Bank Myna Acridotheres ginginianus) were inoculated intra-nasally with A/chicken/Pakistan/10RS3039-284-48/2010 (H9N2) AI virus (106 EID50) and then examined for infectivity and virus shedding patterns. With the exception of House Crows, all infected birds showed clinical signs of different severity, showing the most prominent disease signs in Japanese Quail. All infected birds showed positive results for virus shedding, however, the pattern of virus shedding was different among wild terrestrial birds. Japanese Quail showed the highest levels of virus shedding while samples collected from House Crows revealed only very low levels. Interestingly, virus shedding was observed predominantly via the gastrointestinal tract in House Sparrows and Bank Myna and via the buccal cavity route in Guinea Fowl and Japanese Quail. Here we investigated that the novel genotype of H9N2 AI virus circulating in Pakistan causes clinical disease signs in domestic and wild terrestrial birds. The results of this study suggest that virus shedding varies between different related avian species and highlights the potential role of Guinea Fowl, Japanese Quail, House Sparrows and Bank Myna as mixing bowls for the transmission and maintenance of H9N2 AI viruses between premises.
- Research Article
10
- 10.1071/mu06054
- Dec 1, 2007
- Emu - Austral Ornithology
Foraging individuals allocate time to foraging behaviour or anti-predator vigilance, but rarely both at the same time. If we assume that foraging rate (that is, the number of foraging attempts per minute) decreases as a function of time spent vigilant, an individual can directly increase food intake by reducing time spent vigilant. Alternatively, it may increase food intake by increasing foraging effort, that is, making more foraging attempts in the time remaining after time devoted to anti-predator vigilance is excluded. I studied the foraging behaviour of the Common Myna (Acridotheres tristis) to determine foraging behaviour under different conditions of human disturbance (indirect predation risk), time of day and group size. The results showed that Mynas generally increased their food intake by increasing foraging effort, rather than decreasing vigilance behaviour. Although joining a group resulted in significantly lower levels of vigilance behaviour, it did not increase foraging rate or food intake. Despite being well adapted to the human environment, and having few natural predators, Mynas showed high levels of anti-predator vigilance, at least within the resource rich urban environment. These results are discussed in the light of possible management options to control this highly invasive bird.
- Research Article
7
- 10.1159/000144639
- Jan 1, 1976
- Acta anatomica
Adrenal glands of eight Indian species of birds, namely Columba livia, Passer domesticus, Corvus splendens, Acridotheres tristis, Acridotheres ginginianus, Milvus migrans, Francolinus pondicerianus and Bubulcus ibis were examined during the sexually active and inactive phases of their annual reproductive cycles. Excepting A ginginianus and M. migrans, among members of either sex of the remaining six species the weight of the adrenal gland increases during the period of sexual activity. Histologically, the interrenal tissue of these birds could be divided into a peripheral subcapsular zone and a central zone. The cytochemical content of these two zones varies between sexual activity and inactivity. In sexually active birds of both sexes, interrenal cells of the central zone exhibit an increased concentration of alkaline phosphatase, glycogen, acid mucopolysaccharides and gross lipids, while in the subcapsular interrenal cells there is a prominent increase of ascorbic acid content. Cytochemical contents of chromaffin cells remain unchanged except acid phosphatase, which increases during the sexually active phase.
- Research Article
16
- 10.1007/s00128-021-03184-w
- Mar 20, 2021
- Bulletin of Environmental Contamination and Toxicology
The current study was designed to determine the concentrations of toxic metals (Ni, Pb and Cr) in feathers of birds collected from four regions of NE Pakistan. Feather samples of birds (House Crow, Common Myna and House Sparrow) were collected from different areas. Atomic absorption spectrophotometer was used to determine the concentration of metals in feathers. Analysis of the data revealed that concentrations of Pb and Cr were significantly different (p < 0.05) among bird species, whereas no difference (p > 0.05) was detected among bird species (house crow, common myna and house sparrow) for Ni. A significant difference was found for the concentration of Pb and Ni in all the four studied regions. Whereas, non-significant difference was found in all the studied regions for the concentrating of Cr. It was revealed that there is significant rising concentration of metals (Pb, Cr) in feathers of birds in Azad Kashmir.
- Research Article
- 10.9734/jeai/2024/v46i52421
- Apr 10, 2024
- Journal of Experimental Agriculture International
Population Studies on different agricultural and other bird species were carried out at Students farm, College farm, Agri biodiversity park, and Agricultural Research Institute farm areas of Professor Jayashankar Telangana State Agricultural University (PJTSAU) Campus in semiarid region of Telangana state covering an area of about 36 Sq.km. for a period of eleven years (2012 to 2023). Population diversity of 92 species of different birds, and their distribution within the university campus farm areas were recorded. Important among them are 9 species namely: Blue rock pigeon (Columba livia), Spotted dove (Streptopelia chinensis), Rose ringed parakeet (Psittacula krameri),Common myna (Acridotheres tristis), House crow (Corvus splendens), House sparrow (Passer domesticus), Baya weaver bird (Ploceus philippinus), White throated munia (Lonchura malabarica), and Peafowl (Pavo cristatus) which depredate experimental field crops among them only few birds such as: Rose ringed parakeets, House crows, House sparrows, Pigeons, Baya weavers, Peafowls and Munias were serious bird pests to major agricultural and horticultural crops. The University farm areas were found to be the most preferred habitat for many of these birds, it could be due to availability of food, breeding, roosting and resting sites in abundance because of more agricultural croplands and agro forestry trees.
- Research Article
- 10.31357/fesympo.v22i0.3248
- Nov 21, 2017
- Proceedings of International Forestry and Environment Symposium
Urbanisation leads to anthropogenic modifications of natural habitats of bird species. These modifications can cause a change in the community composition of animals, a larger proportion of which would be more adaptable species whereas a smaller proportion would be less adaptable species. The bird species that show a positive response to urbanization and primarily dependent upon human influenced variables for food, habitat, dispersal, etc., are known as full synanthropes or urbanophiles. The objective of present study was to study the adaptability of avifauna towards urbanization through synanthropy. The study was conducted from December 2015 to August 2016, in two sites in Peradeniya, i.e., Hanthana and Gannoruwa, covering three habitat types which represent an urbanization gradient. Two belt transects were laid starting from urban habitat to forest habitat. Statistical analyses were done using MS Office Excel 2010 and PRIMER 7 Software. Bubble plots on abundance and distribution of identified, commonly known urbanophilic species showed a distribution restricted only to forest edge, suburban and urban habitats and their absence in forest core habitat. These urbanophilic bird species included Large-billed Crow (Corvus macrorhynchos), House Crow (Corvus splendens), Common Myna (Acrido theres tristis), Yellow-billed Babbler (Turdoides affinis), Rock Pigeon (Columba livia), House Sparrow (Passer domesticus), Oriental Magpie Robin (Copsychus saularis), Pale-billed Flower pecker (Dicaeum erythrorhynchos), Purple-rumped Sunbird (Leptocoma zeylonica), and Long Billed Sunbird (Cinnyris lotenius). The proportion of urbanophilic individuals were 55.29%, 81.70%, 51.97% and 66.81% in Hanthana-suburban, Hanthana-urban, Gannoruwa-suburban and Gannoruwa-urban habitats respectively. These species were observed feeding on human influenced food variables in garbage dumping areas, bird feeders, ornamental or cultivated plants, etc. Most of the identified urbanophiles in this study were omnivorous, grainivorous, insectivorous or nectarivorous species. Furthermore, species that exclusively feed on seeds such as the Rock Pigeon were present only in urban habitats. Apart from feeding, they were using human-made structures and trees in parks in urban matrix for perching and sometimes for nesting as well. However, urbanization favors habitat generalists and it suppresses habitat specialists; hence omnivores are more abundant in modified habitats. Food provided by humans has a major impact on bird community. These urbanophiles tend to be opportunistic feeders according to food availability and hence they tend to exploit new food sources. As a result, availability of food and habitats in urbanized environments strongly favor few ground-feeding or omnivorous bird species such as House Crow and Common Myna.Keywords: Urbanisation, Syananthropy, Adaptability, Resources, Opportunistic
- Research Article
23
- 10.1080/00288233.1970.10425409
- May 1, 1970
- New Zealand Journal of Agricultural Research
Replies by New Zealand fruitgrowers to a questionnaire suggested that the most troublesome bird species in their crops were blackbird (Turdus merula), song thrush (Turdus ericetorum), myna (Acridotheres tristis), starling (Sturnus Vulgaris), white-eye (Zosterops lateralis), and house sparrow (Passer domesticus); and that the most serious damage was to strawberries, grapes, cherries, pears, and apples. Goldfinches (Carduelis carduelis) and redpolls (Carduelis flammea) ate strawberry seeds, and redpolls, sparrows, chaffinches (Fringilla coelebs), and greenfinches (Chloris chloris) attacked fruit buds. Current control methods and their claimed effectiveness are tabulated.
- Research Article
3
- 10.3390/conservation5020016
- Mar 28, 2025
- Conservation
Introduced species may pose one of the biggest threats to biodiversity conservation. Today, monitoring their status, distribution and abundance constitutes an important part of ecological and conservation studies throughout the world. In the Afrotropical Region (sub-Saharan Africa), avian introductions have attracted the attention of many researchers, but there is a lack of a comprehensive review of this subject on a continental scale. The presented paper constitutes an attempt to overview the status, distribution, threats and control measures of birds introduced to sub-Saharan Africa in the last 200 years. This review lists 146 bird species introduced to sub-Saharan Africa. Only 49 (33.6%) of them have developed viable populations and only 7 (4.8%) became invasive species, namely Passer domesticus, Sturnus vulgaris, Acridotheres tristis, Corvus splendens, Columba livia var. domestica, Psittacula krameri and Pycnonotus jocosus. Data on distribution of most introduced species are provided, together with information on the place and year of their first introductions. For Passer domesticus and Columba livia var. domestica, data on population densities are also provided from several southern African towns. The most speciose groups of introduced species were parrots (Psittaciformes), comprising 33.6% (including Psittacidae: 13.7%; and Psittaculidae: 15.1%); Anatidae: 12.3%; Phasianidae: 11.0%; and Passeriformes: 30.1%. Most avian introductions in sub-Saharan Africa took place in Southern Africa (mainly the Cape Town, Durban and Johannesburg areas) and in Madagascar and the surrounding islands (mostly Mauritius, Reunion and Seychelles). Most introduced species which have developed viable populations originate from the Afrotropical, Oriental and Palearctic regions (altogether 78%), with only 2% from the New World. The proportions among the introduced species which have not established viable populations are quite different: 29% from the New World and only 60% from the Afrotropical, Oriental and Palearctic regions. The main factors affecting successful avian introductions and introduction pathways have been identified. A review of the control measures undertaken in sub-Saharan Africa (mainly in small oceanic islands) is outlined for the following species: Passer domesticus, Acridotheres tristis, Corvus splendens, Pycnonotus jocosus, Foudia madagascariensis, Psittacula krameri and Agapornis roseicollis.
- Research Article
1
- 10.3390/biology14070828
- Jul 8, 2025
- Biology
Despite concerns about invasive Common Mynas (Acridotheres tristis), few studies have experimentally demonstrated their impact on native birds. Using a Before-After-Control-Impact (BACI) design with 142 nest boxes, we assessed how Myna presence affected House Sparrows (Passer domesticus) and Great Tits (Parus major) before (2009-2010) and after (2020-2021) their arrival in 2015. Half the boxes had large entrances accessible to all three species; half had small entrances accessible only to Great Tits. In a 2022 field experiment, we manipulated nest box entrances and used cameras to study Myna predation and nest usurpation. Following the establishment of Myna, House Sparrow breeding declined by 68.1%. Great Tits increased use of small entrance boxes by 59.9% and decreased use of large entrance boxes by 45.4%. Although overall Great Tit breeding increased, fledging success declined in large entrance boxes, but not small entrance ones. In the 2022 experiment, 46% (n = 26) of Great Tit nests were predated; Common Mynas were responsible for 50% of these cases and subsequently bred in the usurped nests. This study experimentally demonstrates that House Sparrow breeding numbers decrease and that Great Tits change their nesting behavior after the appearance of the Common Myna. Additionally, this research found that Common Mynas impact native species by predating and usurping nests. Installing small-entrance boxes can help manage Great Tit populations. Further research should explore nest box designs for House Sparrows and their impacts on other cavity-nesting and non-cavity-nesting bird species.
- Research Article
8
- 10.3390/ani13111807
- May 30, 2023
- Animals : an Open Access Journal from MDPI
Simple SummaryWe aimed to investigate how an invasive cavity-breeding bird, the common (Indian) myna, and a native nest predator, the common brushtail possum, influence urban nest box use by native birds in Queensland and New South Wales, Australia. We quantified nest box use by invasive and native species, assessed nesting success and failure rates, and explored what environmental factors might influence nest box occupancy and nesting success. We found that the native possums were the most common nest box users and that possum occupancy of boxes was associated with higher rates of nesting failures by all bird species. More common myna nesting attempts were observed in areas where mynas have been established longer. We found no evidence of a significant negative impact by the common myna on other birds in our study locations, which may be partly due to the low rates of use of our nest boxes by native birds. Nevertheless, better nest box design and guidelines for setting them up are needed if we aim to provide more nesting opportunities for native birds to replace the decline in big old cavity trees.Many bird species in Australia require tree hollows for breeding. However, assessing the benefits of urban nest boxes to native birds requires frequent monitoring that allows to assess nesting success. To better understand the benefits of nest boxes for native birds, we examined the impact of local habitat characteristics, invasive species (common myna, Acridotheres tristis), and native mammalian predators on urban nest box use and nesting success of native birds. We installed 216 nest boxes across nine locations in southeastern Australia (S.E. Queensland and northern New South Wales) in both long-invaded sites (invaded before 1970) and more recently invaded sites (after 1990). We monitored all boxes weekly over two breeding seasons. We recorded seven bird species and three mammal species using the nest boxes. Weekly box occupancy by all species averaged 8% of all boxes, with the species most frequently recorded in the nest boxes being the common brushtail possum (Trichosurus vulpecula), a native cavity user and nest predator. We recorded 137 nesting attempts in the boxes across all bird species. The most frequent nesting species were the invasive alien common mynas (72 nesting attempts). We recorded an average nesting failure rate of 53.3% for all bird species. We did not record any common mynas evicting other nesting birds, and found that several native species used the same box after the common myna completed its nesting. We recorded native possums in 92% of the boxes, and possum occupancy of boxes per site was negatively correlated with bird nesting success (p = 0.021). These results suggest that when boxes are accessible to invasive species and native predators, they are unlikely to significantly improve nesting opportunities for native birds. To ensure efficient use of limited conservation resources, nest boxes should be designed to target species of high conservation importance and limit other species of both predators and competitors.
- Research Article
7
- 10.1007/s10530-010-9706-y
- Feb 4, 2010
- Biological Invasions
In November 2007 and November 2008, we conducted a bird and mammal survey on Wallis and Futuna. We found two non-native bird species on Wallis: the Common Myna (Acridotheres tristis) and the Chestnut-breasted Munia (Lonchura castaneothorax), and one on Futuna: the Jungle Myna (Acridotheres fuscus). We also recorded Black Rats (Rattus rattus) on Futuna, a recent introduction to this island. The introduction of 3 bird species and Black Rats in the last decade denotes a lack of preventive measures and demonstrates that the issue of invasive species has not received sufficient priority.
- Research Article
1
- 10.3329/jscitr.v6i1.77379
- Dec 18, 2024
- Journal of Science and Technology Research
Antibiotic resistance, commonly known as antimicrobial resistance, is a major global health concern. In Bangladesh, resident wild birds such as the house crow, common myna, and house sparrow can be found near human settlements all year. As a result, these birds could carry fluoroquinolone-resistant Escherichia coli. We collected 134 freshly dropped fecal samples for this study. E. coli was confirmed using morphological characteristics from culture plates as well as PCR. The Antibiogram of the target isolates was determined by a disk diffusion method and the presence of any resistant genes in the isolates was determined by PCR. About 83% of the common wild birds were found positive for E. coli in their fecal samples. In the antibiogram study about 16 to 40% of isolates were found resistant to different fluoroquinolones. Forty-five percent of isolates were found to carry the fluoroquinolone-resistant gene qnrA, whereas the qnrS gene was absent in all the isolates. All of the isolates examined were found to be resistant to ampicillin and ceftazidime. There are no published data on fluoroquinolone-resistant E. coli isolated from common resident wild birds in Bangladesh. Our data imply that house crow, common myna, and house sparrow could be a possible source for the spread of fluoroquinolone-resistant E. coli in the environment. J. of Sci. and Tech. Res. 6(1): 83-88, 2024
- Research Article
41
- 10.1007/s11252-009-0109-8
- Aug 25, 2009
- Urban Ecosystems
Recently, there have been several reports from different parts of the World on the declining populations of the House Sparrow (Passer domesticus). In order to assess the population of this species in the National Capital Territory of Delhi-India, this study was conducted during June– August in 2007. Twenty-eight Fixed-Radius Point Count stations were established in five habitat types viz. High-density Urban Area, Medium-density Urban Area, Low-density Urban Area, Agriculture Area, and Forested Area, within the study area. The results show that the House Sparrow is still a dominant species in the agriculture area. However, its density is very low in the urban areas as compared to the other co-occurring common bird species viz. Rock Pigeon (Columba livia domestica), House Crow (Corvus splendens) and Common Myna (Acridotheres tristis). As, this study was conducted only over one season, the data is not sufficient to provide a clear picture of the population trend of the House Sparrow. Further studies are therefore required to investigate the relationship of the House Sparrow with other co-occurring common species, and to analyse the data on the type and quality of greenspaces and their relation with the House Sparrow in the study area. A long-term monitoring and conservation programme involving local people may be a good approach for maintaining the population of House Sparrow in the study area.
- Research Article
75
- 10.1017/s0266467403006084
- Oct 24, 2003
- Journal of Tropical Ecology
Biological invasions are a major environmental concern due to their negative impacts on biodiversity and economics. We determined the population sizes and habitat-abundance relationships of the three most successful invasive bird species in Singapore: the house crow Corvus splendens, white-vented myna Acridotheres javanicus and common myna A. tristis. Estimated population sizes of the three species between February 2000 and February 2001 were between 106 000-176 000, 122 000-155 000 and 20 000-29 000, respectively. Population size of the house crow grew dramatically (>30-fold) in the last 15-16 y while that of the white-vented and common myna declined. Habitat-abundance relationships suggest that house crows are highly dependent on anthropogenic food. Their abundance was also positively related to proximity to coast. The common myna associated closely with agricultural areas while the white-vented myna probably preferred urban greenery among residential buildings. Our study shows that the three invasive bird species associated with different aspects of human-modified environment.
- Research Article
47
- 10.1071/mu12107
- Jun 1, 2013
- Emu - Austral Ornithology
Successful urban colonisation by birds requires tolerance of many disturbances and avoidance of chronic stress and major disruption to critical activities. Habituation may be involved in acquiring tolerance of human proximity, in which case tolerance should vary with the degree of opportunity to learn that most humans do not present a threat and should therefore vary with human population density. We studied Common Mynas (Acridotheres tristis) in the urban, suburban, peri-urban and surrounding rural zones of Melbourne, Australia, to determine whether flight-initiation distance (FID) and time allocated to anti-predator vigilance increased along this gradient from the urban to the rural zone. This gradient encompassed a 143-fold variation in average human population density during daylight hours. Urban and suburban Mynas had a 2.3-5.7 times shorter FID, were 1.6-2.5 times less likely to retreat by flying and were 1.9-3.1 times more likely to flee >5 m than their peri-urban and rural conspecifics. Fleeing behaviour was not strongly correlated with estimated human population density, but exhibited an apparent ‘step’ in response at the suburban-peri-urban divide. Vigilance effort did not vary significantly between zones. This suggested that habituation did not occur with respect to surveillance for people, although surveillance presumably encompassed other predators too. Similar foraging effort and rates of food acquisition among zones could suggest that food abundance per individual was similar in urban and rural environments for Common Mynas, although this requires direct measurement.