Euastacus armatus
(von Martens, 1866) · speciesAt a glance
Sources7 archives
Databases and archives Euastacus armatus's data was compiled from.
WikipediaWikimedia Foundation2 languages↗
BioWikiNetmultilingual Wikipediamultilingual↗
GBIFGlobal Biodiversity Information Facility1 369 records↗
ENAEuropean Nucleotide Archive · EMBL-EBI1 eDNA detections↗
BOLD SystemsCentre for Biodiversity Genomics19 specimens↗
Open Tree of LifeOpenTreephylogeny backbone↗
WikidataWikimedia Foundationstructured facts↗Every layer below draws on the sources above — open one to explore it, or use ← → to move between tabs.
The Murray crayfish, Euastacus armatus, is a species of freshwater crayfish endemic to Australia that belongs to the family Parastacidae. The Murray crayfish has the largest geographic range of any of the Euastacus crayfish in Australia, being found in the Murray and Murrumbidgee Rivers as well as many of their tributaries. Murray crayfish are also known as "Murray River crayfish", "Murray crays", "freshwater crays", "spiny freshwater crays", "spinies" and in the Wagga Wagga region of southern New South Wales they are simply known as "lobsters". Today adults commonly grow to 20 - in length. In the past however they have been reliably recorded at significantly larger lengths and up to 2 kg in weight; the Murray crayfish is considered the second largest freshwater crayfish species in the world after the Tasmanian giant freshwater crayfish. Murray crayfish have large white claws and a dark olive/grey/black carapace, all of which are covered in short robust spikes. In small individuals, the claws are green and yellow. The crayfish begin to breed when they are 15 - long, which takes between 6 and 9 years. When the crayfish has reached sexual maturity the females lay 500 to 1,000 eggs in late autumn; the eggs are carried on the female's pleopods until they hatch in summer. Murray crayfish feed predominantly on decaying aquatic plant matter but will also eat dead animals. The range of the Murray crayfish extends to over 700 m above sea level in large and small upland streams and several upland impoundments, and to relatively low altitudes in the Murray and Murrumbidgee Rivers; historically its distribution extended throughout the southern Murray–Darling basin, but fishing pressure and environmental change has resulted in the species no longer being found in the Murray River downstream of Mildura. Like all Euastacus species, Murray crayfish prefer cool, fast-flowing water, deep pools, boulder-rich streambeds, and areas with extensive riparian vegetation. The species is threatened by overfishing and as a result there are many restrictions in place for recreational fishers, all of which vary from state to state. In New South Wales and Victoria these include a minimum size, bag and possession limits, and a ban on taking females with eggs. Further there is a limited season in which the species can be taken (start of May to the end of August). Murray crayfish are also threatened by habitat loss, with a 91% decline in the abundance of this species recorded in one stream (Goobarragandra River) over a six-year period when there was a halving in the availability of their preferred boulder habitats due to sedimentation. Murray crayfish are listed as Data Deficient on the IUCN Red List, as vulnerable in the Australian Capital Territory, and as endangered in South Australia.
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A DNA barcode is a short, standardised stretch of genes that works like a fingerprint — enough to tell one species from another. Below is the molecular trace Euastacus armatus has left across the world's sequence archives.
At a glance
★ the standard DNA barcode for this group — the short region actually read to tell this species apart. The rest are extra genes sequenced along the way.
Besides the big genome in the nucleus, cells carry a small, circular loop of DNA inside the cell's energy factories — the mitochondria. It is inherited almost only from the mother and is a leftover from ancient bacteria that moved into the cell. The mitochondrial markers above (ND*, COX, CYTB…) are read from exactly this loop. Outer ring = one strand, inner ring = the other.
How far back this lineage goes — and how we know. Everything here is measured in Ma, short for “mega-annum”: millions of years ago. The chart reads left to right like a calendar of the Earth, from the deep past on the left to today at the right edgetop to bottom like a core drilled through the Earth, from the deep past at the top down to today at the bottom.
At a glance
When this lineage existed
How to read this: the coloured strip along the bottomdown the left is the geological calendar — the standard epochs (Pliocene, Pleistocene…) every museum uses, shown so you can see which chapter of Earth's history this lineage lived in. This lineage is a young one, so the strip is zoomed in to epochs — the finer subdivisions inside a period. The orange marker is the DNA clock: DNA accumulates mutations at a roughly steady rate, so comparing this species' DNA with its relatives estimates when the lineage split off — independently of any fossil.
Record type1 369 records
Range
Wildobservation + sensor
Human sightings and records, or camera-trap / sensor detections — someone (or a device) saw or captured the species in the wild.
Museum / Voucheredphysical evidence
Backed by a physical specimen — a herbarium sheet, sample or voucher held in a collection. “Vouchered” means supported by material evidence, not just an observation.
Wildobservation + sensor
Human sightings and records, or camera-trap / sensor detections — someone (or a device) saw or captured the species in the wild.
Holding institutions3 of 5 geolocated
Institutions and collections holding physical, vouchered specimens of this species — click a row to fly to it on the map.
| Institution | Specimens |
|---|---|
| Museums Victorialocation not on record | 30 |
| Sydney, AU | 23 |
| DOI/NPS, Salem Maritime National Historic Sitelocation not on record | 8 |
| Washington, US | 7 |
| Natick, US | 3 |
Where the DNA of Euastacus armatus was picked up in samples of water, soil or air — nobody saw the organism, only its DNA left behind. A trace is a clue that the species was near, not a confirmed sighting.
Signal
Where its DNA was found
How strong is each trace?
How to read this: each dot is one detection of this species' DNA in an environmental sample. The confidence meter weighs how many independent studies and places back up the signal — one detection in one study is a hint; many across several studies is solid. Records dated before 2008 (when eDNA methods began) are treated as likely mislabeled and left off the map.