- Budgerigar colour genetics
The science of Budgerigar colour
genetics deals with theheredity of colour variation in the feathers of the species known as "Melopsittacus undulatus ", commonly known as the 'Budgerigar Parakeet' or 'Budgie' for short.Background
The Wildtype (natural-coloured or wild occurring) Budgerigar Parakeet's colour is called Lightgreen. The feathers of most Parrot species, including Budgerigars, contain both a black type of "
melanin " named "eumelanin " along with a basic yellowpigment namedpsittacofulvin (psittacin for short). Some other Parrot species produces a third pigment named advanced-psittacin which enables colours & tones ranging from oranges, peaches, pinks to reds. When these feathers are exposed to a white light source, such assunlight , only the blue part of thespectrum is reflected by the eumelanin granules. This reflected blue light passes through the yellow pigment layer, resulting in the green colouration known as "Lightgreen" in only the Budgerigar Parakeet &/or Green in any other naturally green coloured Parrot species.The many colour variations of Budgerigars, such as Albino, Blue, Cinnamon, Clearwinged, the various Fallows, Grey, Greygreen, Greywinged, Lutino, Mauve, Olive, Opaline, Spangled, Suffused, Violet... are the result of
mutations that have occurred within specificgenes . There are actually at least thirty-two known primary mutations established among Budgerigar Parakeets. These can combine to form hundreds of secondary mutations & colour varieties which may or may not be stable.As is true with all animal species, colour mutations occur in captivity as do in the wild. This has been demonstrated when captive-bred Budgerigars have developed mutations that had only been previously recorded amongst wild populations.
Classification of mutations
Basic groups
Each of the thirty-two primary mutations belong to one of the four basic groups of mutations classified in parrot species genetics;
*
Albinism : whereeumelanin is either partially or completely reduced in all body tissues & structures.*
Dilution : whereeumelanin is partially reduced in only feathering.*
Leucism : whereeumelanin is completely reduced from total or localized feathering.*
Melanism : whereeumelanin is increased in the feathering.Dominance relationship
These mutations are inherited through one of the following
dominance relationship s.
*autosomal -Co-Dominant (A-Co-D),
*autosomal-Complete-Dominant (A-C-D),
*autosomal-Incomplete-Dominant (A-I-D),
*autosomal-recessive (A-R),
*autosomal-Poly-Genic (A-P-G)
*Sex-Linked-recessive (S-L-R)Table of primary mutations
History
In the first few decades of the 1900s, especially in-between World War I and II, the keeping and breeding of the Budgerigar had become very popular all around the world. Consequently, various mutations occurred and were soon established during this period.
Time line
*1870-75 The very first registered sudden captive-bred colour mutations were Suffused Green (aka Dilute Yellow), Greywinged Green and either one of the two types of Lutino (NSLino &/or SLino) mutations. All three occurred in aviaries in Great Britain or Europe. Of these three mutations, only the Suffused Green (aka Dilute Yellow) has survived. The latter was easily reproduced in great numbers and is nowadays very well established. The first Lutino mutation quickly vanished but it was re-established in Europe some time between 1931 and 1933.
*1878-85 The Skyblue mutation suddenly occurred in continental Europe, most probably in
Uccle , Belgium. Surprisingly, this variety was not imported in England until 1910.*1915 Single-Factored Dark-Green (aka Dark-Green) in France (where they were then commonly called 'Laurel' which is the french word for Bay (leaf &/or tree))
*1916 Double-Factored Dark-Green (aka Olive) in France.
*1918-28 Respectively, Greywinged Green and Greywinged Blue appeared in England and continental Europe.
*1920
**Crest-Factor in Australia.
**Suffused Blue (aka Dilute White) in England and France.
**Single-Factored Dark_Blue (aka Cobalt) in France.*1921 Double-Factored Dark_Blue (aka Mauve) in France.
*1930
**Single-Factored Violet-Green (aka Violet Factor) in Australia (and were then 1st commonly called 'Satin Green')
**The first Clearwinged Green (Yellowinged) appeared, developed by H. Pier in Sydney.*1931
**Cinnamon in England, Australia & Germany.
**An unknown type of Fallow in California, U.S.A. This soon vanished.
**The Germanfallow in Germany, recently been genetically classified and identified as the Bronzefallow (aka Brownfallow).
**A plum-eyed mutation, similar looking to Fallow mutations, occurred in England. This vanished or at least became very rare. This mutation was most probably the Brownwings, one of the rarest colour mutations of the species.
**The first Albino specimens were produced in both England and continental Europe.*1932
**Three Fallow mutations occurred in England which became known as the Englishfallow. In Australia these have been genetically classified and identified as the Dunfallow or Greybrownfallow (aka Australianfallow). The Beigefallow or Palebrownfallow has been classified in South-Africa, but no reference seems to be available on this particular mutation.
**The recessive Anti-dimorphic Pied (aka Danish Pied aka Harlequin) in Denmark.
**The Australian (aka Banded) Pied in Australia.*1933
**Green Clearwinged (aka Yellow Wing) and Dominant Grey-Factor appear in Australia.
**Both the NSL & the SL Lutino gene occurred in England and continental Europe.
**Three Opaline mutations occurred. An Opaline Green hen was captured in the wild and sold to S. Terril in Adelaide. It was later-on reproduced and is most probably the ancestor of all Opaline specimens in Australia. Two sudden captive-bred Opaline mutations occurred in England and Holland.*1934 Recessive grey factor in England.
*1935 The various Yellowfaced_Blue and Goldenfaced_Blue occurred in several locations.
*1939-46 Clearflighted_Dutchpied in Belgium.
*1948
**Texas Clearbodied (aka SL-Clearbody) in the U.S.A.
**Dominant Clearbodied (aka Easley's Clearbodied) in the U.S.A.
**The first Cinnamon-Ino (aka Lacewings) cross-over mutation was produced in Australia.
**The first Dark-Eyed-Clear (DEC) variety was produced in Belgium by combining the ADM Pied (aka Danish/Recessive pied) with either one of the two Dutchpied varieties (Continental or Clearflighted).*1970-74 Single-Factored and Double-Factored Spangled specimens were produced in Australia.
*1975 Saddleback specimens were produced in Australia.
Notes
It is probable that the Greywings mutation survived as the ancestor of all actual Greywings. However, it is possible that the mutation laid
dormant inasymptomatic mutant specimens until it was re-established between 1918 and 1925. Blue Greywing specimens were produced later on in 1928.It is very likely that all Suffused mutation specimens and their varieties are descendants from the first captive mutant specimens. This means that Suffused is the oldest sudden captive-bred colour mutation of the Budgerigar species.
References
*cite book
last = Martin
first = Terry
title = A Guide To Colour Mutations and Genetics in Parrots
publisher = ABK Publications
date = 2002
pages =
doi =
id = ISBN 0957702469
*cite book
last = Hayward
first = Jim
title = The Manual of Colour Breeding
publisher = The Aviculturist Publications
date = 1992
pages =
doi =
id = ISBN 0951909800External links
* [http://www.gencalc.com/gen/eng_genc.php?sp=0Budg Martin Rasek's Budgerigar Genetic calculator]
* [http://www.euronet.nl/users/hnl/ Inte ONSMAN's MUTAVI Research and Advice Group]
* [http://www.birdhobbyist.com/parrotcolour/ Clive Hesford's The Genetics of Colour in the Budgerigar and other Parrots website]* [http://www.bestofbreeds.net/wbo/colourstds.htm World Budgerigar Organization's Colour Standards]
* [http://www.geocities.com/Heartland/2761/genetics/gendex.html Down Under Aviary's Genetics page]
* [http://www.budgerigars.co.uk/genetics/index.html Budgerigar Galore's Genetics Articles]
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