Rainbowfish (2)

Total Page:16

File Type:pdf, Size:1020Kb

Rainbowfish (2) FISHCARE SHEET No: 23 Rainbowfish (2) Species: Pseudomugil. Family: Atheriniformes. Geographic Origin: Papua New Guinea, Australia. Common Names: Blue-eyed Rainbowfish. Compatibility: Generally active fish that are best kept in a shoal of at least six fish. Not aggressive towards one another or to tankmates. Being small fish, they should not be kept with large boisterous fish. Best kept in a sole species aquarium. Minimum Aquarium Size: These smaller species can be kept in a 450mm x 250mm x 250mm (18" x 10" x 10") Aquarium. The aquarium must have a have a lid and a cover glass. o o Temperature: Ideal temperature is around 24 C (75 F) but can cope with higher temperatures. Habitat: Best kept in a well-planted aquarium, with a gravel substrate. Water: Tolerant of hard water. Will generally only breed in hard water. Water change of approximately 25% each week is most beneficial. Health : Generally do not seem to be over susceptible to White Spot or Fungus. As with all new fish, quarantine for at least one week in a separate tank. Any fish that appear sick, immediately isolate in a separate tank. Do not dispose of dead fish by flushing them down the toilet. Incinerate or wrap in paper and put in dustbin. Diet: Will accept dried, frozen and all types of live food (e.g. small Daphnia ). Favourite food has to be newly hatched Brine Shrimp. Do not overfeed. Many problems are caused by overfeeding (pollution of water by decaying food). Plants: All species of tropical plants are acceptable. Not known as plant eaters. A clump of Java Moss should be provided. The fish will use this for spawning and hiding. Breeding Notes: Egg-scatterer. Use fine-leaved plants or spawning mops. Availability: Not widely available. Only select fish that are alert and swimming with fins erect. Inspect carefully for signs of white spot or other diseases. Reject lethargic, damaged or hollow- bellied specimens. Show Class: FBAS Class M or Mc. © FBAS 2002. PWC/RDE .
Recommended publications
  • A New Species of Rainbowfish (Glossolepis: Melanotaeniidae) from Irian Jaya, Indonesia
    FoS(210)Vol15No3.xps4 31/3/04 1:44 PM Page 766 A New Species of Rainbowfish (Glossolepis: Melanotaeniidae) from Irian Jaya, Indonesia Gerald R. Allen* Abstract A new species of rainbowfish, Glossolepis dorityi, is described from Irian Jaya. It is distinguised from its nearest members in the genus, G. leggetti Allen, in certain body proportions and G. multisquamatus (Weber & de Beaufort), in modal counts of soft dorsal-fin rays, pectoral-fin rays, and predorsal scales. A list of the known species of the genus Glossolepis Weber, and their general distribution is presented. Introduction This article describes a new species of rainbowfish (Melanotaeniidae) belonging to the genus Glossolepis. It was collected by Dan Dority and David Price during a weekend outing to a small lake, about 68 km due west of Jayapura, Irian Jaya’s capital city. Dan and David have been working in the Jayapura-Sentani area for several years, but only recently became aware of this location, which is part of a cluster of at least 15 floodplain lakes. I had flown over the lakes and photographed several of them during my first visit to Irian Jaya in 1982. But at that time access was poor and I did not consider trying to visit them. Now they can be reached in less than two hours by car from Lake Sentani. Dan and David collected the first specimens in April 2000. About four months later I had an opportunity to visit the Sentani area for a Conservation International training course and joined them for a day trip to the same lake, which is within one km of a well-travelled road.
    [Show full text]
  • ANGFA Life Membership
    ANGFA National Life Membership awarded to Barry Crockford “Barry has been an active contributor within and supporter of ANGFA for over 30 years .... ......ANGFA’s experiences with the PNG rainbowfish would have been substantially less if not for Barry’s contribution to ANGFA and the hobby.” Rodney Wubben Barry Crockford has been an active member of ANGFA ever since its inception in the early 1970s. Barry worked in the aircraft industry in Papua New Guinea from the 1960s Travelled to PNG from mid 1970s to 1980s to collect and bring back to Australia many new species of rainbowfish to share with ANGFA and its members. Glossolepis maculosus – The Spotted Rainbow Barry discovered this fish in 1979 (Omsis River, PNG ) The vast majority of PNG rainbowfish present in Australia from 1970s - 1980s were brought into the country by Barry The list of fish include: • Melanotaenia goldiei • Glossolepis wannamensis • M. lacustrus • G. maculosus • M. papuae • Chilatherina axelrodi • M. parkinsoni • C.campsi • M. sexlineata • C. fasciata --Lake Wanam • M. affinis Pagwi • Tateuredina • Pseudomugil furcatus ocellicauda (Peacock Gudgeon) • P. conniae Barry’s contributions to ANGFA and native fish however did not stop there Barry established the ‘Rainbowfish Species group’ (RSG) in the early 1990s with a few other ANGFA members, to conserve many of the rainbowfish (and particularly from PNG) which had substantially declined in numbers within the hobby at that time. One of Barry’s major contributions within the RSG over the 1990s was performing a major breeding program for the C. axelrodi. Starting from only one small male identified in Melbourne and two mature females (of only a few females) This was the total stock identified in Australia and from this micro- population Barry bred at least six generations over a 10 year period to bring them back to a strong healthy population.
    [Show full text]
  • Adec Preview Generated PDF File
    Rec. West. Aust. Mu.'!. 19808: (:3) DESCRIPTIONS OF FIVE NEW RAINBOWFISHES (MELANOTAENIIDAE) FROM NEW GUINEA GERALD R. ALLEN* & NORBERT J. CROSS* ABSTRACT A collection of freshwater melanotaeniid fishes taken on an expedition to Dutch New Guinea (now Irian Jaya) by the Rijksmuseum van Natuurlijke Histoire (Leiden, Netherlands) during 1954-55 was studied. It contained four new species which are described herein: Melanotaenia ajarrwruensis (Ajamaru Lakes, Vogelkop Peninsula), M. boesemani (Ajamaru Lakes), M. japenensis (Japen Island), and Glossolepis pseudo­ incisus (Tami River, Djajapura district). An additional new species, Melanotaenia oktediensis is described on the basis of three specimens collected by the Smithsonian Institution (uSA) and Papua New Guinea Fisheries Department from the head­ waters of the Fly River System, southern Papua New Guinea. The five new species are described in detail, illustrated, and compared with allied species. INTRODUCTION Rainbowfishes of the family Melanotaeniidae inhabit freshwater streams, swamps, and lakes of northern and eastern Australia and New Guinea. The family contains nine genera and approximately 40 species (Alien, in press). All of these are small fishes, usually under 15 cm standard length, dwelling pri­ marily in fresh water. Because oftheir diminutive size they are commercially unimportant, although they are eaten, usually dried, in some villages of New Guinea. Several species, primarily from Australia, are esteemed as aquarium fishes because of their attractive colours and ease of breeding in captivity. The senior author is currently engaged in the study of melanotaeniids, with plans for an overall revision in the near future. In connection with this work specimens were examined at European museums during 1975 and 1977.
    [Show full text]
  • Final Report Ornate Rainbowfish, Rhadinocentrus Ornatus, Project
    Final Report Ornate Rainbowfish, Rhadinocentrus ornatus, project. (Save the Sunfish, Grant ID: 19393) by Simon Baltais Wildlife Preservation Society of QLD Bayside Branch (QLD) inc. (Version: Saturday, 25 June 2011) 1 1. Introduction 1.1 Background The Rhadinocentrus ornatus (Ornate Sunfish, soft spined sunfish, or Ornate Rainbowfish) is a freshwater rainbowfish from the Family Melanotaeniidae. This Melanotaeniidae family of fish is only found in Australia and New Guinea. It’s a small, mainly insectivorous species, the largest individuals reaching a maximum length of approximately 80mm (Warburton and Chapman, 2007). The Rhadinocentrus ornatus (R. ornatus) is said to be a small, obligate freshwater fish species restricted to the coastal wallum habitat of eastern Australia (Hancox et al, 2010), where waters are slow flowing and acidic, and submerged and emergent vegetation is plentiful (Warburton and Chapman, 2007). However, Wildlife Queensland has found this species utilising other habitat types, such as gallery rainforest along Tingalpa Creek West Mt Cotton, a finding supported by BCC (2010). Good populations of R.ornatus were particularly found in clear slow – medium flowing streams supporting no aquatic or emergent vegetation located within gallery rainforest. The species was particularly common in 12.3.1 Gallery rainforest (notophyll vine forest) on alluvial plains (Endangered) within a landscape comprised of 12.11.5 Open forest complex with Corymbia citriodora, Eucalyptus siderophloia, E. major on metamorphics ± interbedded volcanics
    [Show full text]
  • Hatching Success of Rainbowfish Eggs Following Exposure to Air
    WellBeing International WBI Studies Repository 2014 Hatching Success of Rainbowfish ggsE Following Exposure to Air Lois J. Oulton Macquarie University Penelope Carbia Macquarie University Culum Brown Macquarie University Follow this and additional works at: https://www.wellbeingintlstudiesrepository.org/acwp_aff Part of the Animal Studies Commons, Behavior and Ethology Commons, and the Comparative Psychology Commons Recommended Citation Oulton, L., Carbia, P., & Brown, C. (2014). Hatching success of rainbowfish eggs following exposure to air. Australian Journal of Zoology, 61(5), 395-398. This material is brought to you for free and open access by WellBeing International. It has been accepted for inclusion by an authorized administrator of the WBI Studies Repository. For more information, please contact [email protected]. Hatching success of rainbowfish eggs following exposure to air Lois Oulton, Penelope Carbia, and Culum Brown Macquarie University KEYWORDS egg desiccation, Lake Eacham, Melanotaenia, translocation ABSTRACT Translocation of fishes within and between drainage basins is widely recognised as a threatening process to Australian native fishes. While many translocations are deliberate, for example for fisheries enhancement, it is possible that translocation can occur naturally. In the Wet Tropic region of Australia, the widespread eastern rainbowfish, Melanotaenia splendida, has begun to colonise the Atherton tablelands. This is of particular concern because the area is home to several endangered endemic species such as the Lake Eacham rainbowfish, M. eachamensis, and its allies. It is likely that some of the translocations have occurred through the use of this species as bait, but the recent invasion of Lake Eacham may have occurred naturally via the movement of eggs between nearby streams running into Lake Tinaroo.
    [Show full text]
  • Multi-Locus Fossil-Calibrated Phylogeny of Atheriniformes (Teleostei, Ovalentaria)
    Molecular Phylogenetics and Evolution 86 (2015) 8–23 Contents lists available at ScienceDirect Molecular Phylogenetics and Evolution journal homepage: www.elsevier.com/locate/ympev Multi-locus fossil-calibrated phylogeny of Atheriniformes (Teleostei, Ovalentaria) Daniela Campanella a, Lily C. Hughes a, Peter J. Unmack b, Devin D. Bloom c, Kyle R. Piller d, ⇑ Guillermo Ortí a, a Department of Biological Sciences, The George Washington University, Washington, DC, USA b Institute for Applied Ecology, University of Canberra, Australia c Department of Biology, Willamette University, Salem, OR, USA d Department of Biological Sciences, Southeastern Louisiana University, Hammond, LA, USA article info abstract Article history: Phylogenetic relationships among families within the order Atheriniformes have been difficult to resolve Received 29 December 2014 on the basis of morphological evidence. Molecular studies so far have been fragmentary and based on a Revised 21 February 2015 small number taxa and loci. In this study, we provide a new phylogenetic hypothesis based on sequence Accepted 2 March 2015 data collected for eight molecular markers for a representative sample of 103 atheriniform species, cover- Available online 10 March 2015 ing 2/3 of the genera in this order. The phylogeny is calibrated with six carefully chosen fossil taxa to pro- vide an explicit timeframe for the diversification of this group. Our results support the subdivision of Keywords: Atheriniformes into two suborders (Atherinopsoidei and Atherinoidei), the nesting of Notocheirinae Silverside fishes within Atherinopsidae, and the monophyly of tribe Menidiini, among others. We propose taxonomic Marine to freshwater transitions Marine dispersal changes for Atherinopsoidei, but a few weakly supported nodes in our phylogeny suggests that further Molecular markers study is necessary to support a revised taxonomy of Atherinoidei.
    [Show full text]
  • Rainbowfishes (Melanotaenia: Melanotaeniidae) of the Aru Islands, Indonesia with Descriptions of Five New Species and Redescription of M
    aqua, International Journal of Ichthyology Rainbowfishes (Melanotaenia: Melanotaeniidae) of the Aru Islands, Indonesia with descriptions of five new species and redescription of M. patoti Weber and M. senckenbergianus Weber Gerald R. Allen1, Renny K. Hadiaty2, Peter J. Unmack3 and Mark V. Erdmann4,5 1) Western Australian Museum, Locked Bag 49, Welshpool DC, Perth, Western Australia 6986. E-mail: [email protected] 2) Museum Zoologicum Bogoriense (MZB), Division of Zoology, Research Centre for Biology, Indonesian Institute of Sciences (LIPI), Jalan Raya Bogor Km 46, Cibinong 16911, Indonesia. 3) Institute for Applied Ecology and Collaborative Research Network for Murray-Darling Basin Futures, University of Canberra, ACT 2601, Australia. 4) Conservation International Marine Program, Jl. Dr. Muwardi No. 17, Renon, Denpasar 80235, Bali, Indonesia. 5) California Academy of Sciences, Golden Gate Park, San Francisco, CA 94118, USA. Received: 02 November 2014 – Accepted: 08 March 2015 Abstract (14.1-75.6 mm SL) specimens respectively, collected at The Aru Archipelago is a relict of the former land bridge Kola, Kobroor, and Wokam islands. They comprise a connecting Australia and New Guinea and its freshwater close-knit group allied to the “Goldiei” group (along with Melanotaenia strongly reflect this past connection. Sea lev- M. senckenbergianus), but are differentiated on the basis of el changes over the past 2-3 million years have apparently live colour patterns and various genetic, morphometric, provided sufficient isolation for the radiation of a mini- and meristic features. species flock consisting of at least seven species. Melanotae- nia patoti and M. senckenbergianus were described from the Zusammenfassung islands by Weber in the early 1900s, but subsequently con- Das Aru-Archipel ist ein Überbleibsel der früheren Land- sidered as junior synonyms of the New Guinea mainland brücke zwischen Australien und Neuguinea, die Süßwasser- species M.
    [Show full text]
  • Fish Diversity and Water Quality of Ayamaru Lake, West Papua
    Fish Diversity and Water Quality of Ayamaru Lake, West Papua Taufiq Hidayah1,2*, Marson1, Muhammad Ali1, Ni Komang Suryati1,2, Dina Muthmainnah1,2 1Research Institute for Inland Fisheries and Extension – Ministry of Marine Affairs and Fisheries 2Inland Fishery Resources Development and Management Department (IFRDMD) - SEAFDEC *Corresponding Author: [email protected] Article history Received Received in revised form Accepted Available online 16 February 2021 20 March 2021 29 March 2021 31 March 2021 Abstract: Ayamaru lake is one of the lakes in West Papua categorized as karst lake. It is endowed with fish diversity in various ornamental fish and consumption fish with high economic value. Recently, a number of floating net cages is set up, and before causing serious damage, management for keeping the sustainability of fish resources, especially the endemic species, needs to be proposed. This paper would contribute information on fish diversity and the water quality of Ayamaru Lake. The study was conducted in March, July, and November 2019 at Ayamaru Lake, Maybrat Regency, West Papua Province. The data were collected by conducting direct survey, interviewing the fishers, and the related institution, as well as searching the previous studies. Fish and water samples were taken from five stations. The results showed that 15 freshwater fishes were identified. The capture fisheries were practiced using the environment-friendly fishing gears. The water quality was still quite useful to support fish life. To reduce the threat to the presence of endemic fish in the lake, it needs to regulate the release of introduced species by the community, and control the escaped fish from the culture area.
    [Show full text]
  • Reproduction, Growth, Survival and Vertebra Abnormalities Inheritance of Hybrid Balloon and Normal Red Rainbowfish (Glossolepis
    Reproduction, growth, survival and vertebra abnormalities inheritance of hybrid balloon and normal red rainbowfish (Glossolepis incisus) Tutik Kadarini, Muhamad Yamin, Siti Z. Musthofa Research Institute for Ornamental Fish, Jl. Perikanan no. 13, Pancoran Mas, Depok, 16436, West Java, Indonesia. Corresponding author: T. Kadarini, [email protected] Abstract. The research of the vertebra abnormality inheritance in balloon red rainbowfish has never been conducted. The objectives of the study are to determine inheritance pattern, reproduction, growth and survival rate of hybrid balloon red rainbowfish and normal rainbowfish. The research was conducted in Laboratory of Research Institute for Ornamental Fish Culture, Depok, West Java, Indonesia. The scope of this research included hybridization between balloon and normal red rainbowfish broodstock, spawning, egg incubation, larval rearing for 40 days and seed rearing for 5 months. The hybrids were carried out by three different crossing between e.g., (1) balloon red rainbowfish ♀ x balloon red rainbowfish ♂, (2) normal red rainbowfish ♀ x balloon red rainbowfish ♂, (3) balloon red rainbowfish ♀ x normal red rainbowfish ♂. Each treatment was done in three replications. The average total length of balloon red rainbowfish was 5.214±0.255 cm, while normal red rainbowfish was 7.520±0.773 cm. A pair of matured adult fish were spawned naturally in a glass container (40 cm X 20 cm X 50 cm) filled with water (to 25 cm height). The fish were fed by bloodworm and commercial pellets (35% protein). The eggs were removed and incubated in a plastic container filled with 5-10 liter of water. The eggs hatched between 5-7 days after fertilization at water temperature of 25-31oC.
    [Show full text]
  • Melanotaenia Fluviatilis) Using RNA-Seq and De Novo Transcriptome Assembly
    RESEARCH ARTICLE Identification of Putative Nuclear Receptors and Steroidogenic Enzymes in Murray-Darling Rainbowfish (Melanotaenia fluviatilis) Using RNA-Seq and De Novo Transcriptome Assembly Peter A. Bain1*, Alexie Papanicolaou2¤, Anupama Kumar1 1 Commonwealth Scientific and Industrial Research Organisation (CSIRO), Division of Land and Water, Urrbrae, South Australia, Australia, 2 Commonwealth Scientific and Industrial Research Organisation (CSIRO), Division of Land and Water, Black Mountain, Australian Capital Territory, Australia ¤ Current address: Hawkesbury Institute for the Environment, Western Sydney University, Richmond, New South Wales, Australia * [email protected] OPEN ACCESS Citation: Bain PA, Papanicolaou A, Kumar A (2015) Abstract Identification of Putative Nuclear Receptors and Murray-Darling rainbowfish (Melanotaenia fluviatilis [Castelnau, 1878]; Atheriniformes: Mel- Steroidogenic Enzymes in Murray-Darling Rainbowfish (Melanotaenia fluviatilis) Using RNA-Seq anotaeniidae) is a small-bodied teleost currently under development in Australasia as a test and De Novo Transcriptome Assembly. PLoS ONE species for aquatic toxicological studies. To date, efforts towards the development of molec- 10(11): e0142636. doi:10.1371/journal.pone.0142636 ular biomarkers of contaminant exposure have been hindered by the lack of available Editor: John A Craft, Glasgow Caledonian University, sequence data. To address this, we sequenced messenger RNA from brain, liver and UNITED KINGDOM gonads of mature male and female fish and generated a high-quality draft transcriptome Received: August 17, 2015 using a de novo assembly approach. 149,742 clusters of putative transcripts were obtained, Accepted: October 23, 2015 encompassing 43,841 non-redundant protein-coding regions. Deduced amino acid sequences were annotated by functional inference based on similarity with sequences from Published: November 23, 2015 manually curated protein sequence databases.
    [Show full text]
  • Length-Weight Relationship and Condition Factor of the Celebes
    Length-weight relationship and condition factor of the Celebes rainbowfish Marosatherina ladigesi, endemic to the Maros karst region, South Sulawesi, Indonesia 1Sharifuddin B. A. Omar, 2Kariyanti, 1Dewi Yanuarita, 1Mohammad T. Umar, 2Yeni S. A. Lawi 1 Aquatic Resources Management Study Program, Hasanuddin University, Makassar, South Sulawesi, Indonesia; 2 Balik Diwa College of Marine Technology, Makassar, South Sulawesi, Indonesia. Corresponding author: S. B. A. Omar, [email protected] Abstract. Locally called beseng-beseng, Marosatherina ladigesi (Ahl 1936) is a rainbowfish endemic to the Maros karst region in South Sulawesi, Indonesia. The colorful > ladigesi male has become popular within ornamental fish hobbyists worldwide. However there is a lack of published information on the basic biological parameters of this species. This research aimed to determine the length-weight relationship and condition factors of two wild M. ladigesi populations. Sampling was carried out in two studies. In the first study, samples were collected 12 times at fortnightly intervals from October 2013 to March 2014. The fish were caught using a rectangular net (3 x 1m), 0.5 cm mesh size, from Bantimurung River (N = 338) and Pattunuang River (N = 331), both in Maros District. The samples were examined in the Fisheries Biology Laboratory, Hasanuddin University. The fish collected from Bantimurung river comprised 69 males and 269 females, while those from Pattunuang River comprised 88 males and 243 females. In the second study, samples were collected 8 times from July to October 2020. The number of samples obtained from the Bantimurung River was 206 individuals, while in the Pattunuang River no fish samples were obtained.
    [Show full text]
  • JOURNAL of the AUSTRALIA NEW GUINEA FISHES ASSOCIATION Incorporated Registration No
    VOLUME TWENTY-NINE NUMBER ONE MARCH 2015 JOURNAL OF THE AUSTRALIA NEW GUINEA FISHES ASSOCIATION incorporated Registration No. ACO27788J The new Laser Red Rainbowfish Melanoteania rubrivittata. G.L. Main features in this issue: MELANOTAENIA RUBRIVITTATA, A NEW SPECIES OF RAINBOWFISH (MELANOTAENIIDAE) FROM NORTHWESTERN PAPUA PROVINCE, INDONESIA Gerald R. Allen, Peter J. Unmack & Renny K. Hadiaty 846 WERE THOSE RED LASER “STRIPES” REALLY WORTH IT? – THE HUNT FOR THE WAPOGA RED LASER RAINBOWFISH Gary Lange, Johannes Graf and Dan Dority 846 845 MELANOTAENIA RUBRIVITTATA, A NEW SPECIES OF RAINBOWFISH (MELANOTAENIIDAE) FROM NORTHWESTERN PAPUA PROVINCE, INDONESIA Gerald R. Allen1, Peter J. Unmack2 & Renny K. Hadiaty3 Abstract A new species of melanotaeniid rainbowfish, Melanotaenia rubrivittata, is described from the Wapoga River system of northwestern Papua Province, Indonesia. The new taxon is described on the basis of 26 specimens, 18.0–48.7 mm SL, collected from two sites near the Tirawiwa River. It is similar to M. praecox in general appearance and morphology, but differs in possessing red body stripes, a more slender body shape in adult males, a slightly longer snout, and fewer lateral scales. Genetic analysis provides additional evidence for the separation of these taxa. Introduction Rainbowfishes of the family Melanotaeniidae are a spectacularly coloured group of freshwater fishes endemic to the warmer portions of Australia and New Guinea. They live in a variety of habitats from clear streams and lakes through large turbid rivers, floodplain habitats, and isolated rocky pools or waterholes in arid regions. Most species form loose aggregations, which swim either in midwater or just below the surface.
    [Show full text]