Nicrophorus interruptus

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Nicrophorus interruptus
Silphidae - Nicrophorus interruptus.JPG
Scientific classification OOjs UI icon edit-ltr.svg
Domain: Eukaryota
Kingdom: Animalia
Phylum: Arthropoda
Class: Insecta
Order: Coleoptera
Family: Silphidae
Genus: Nicrophorus
Species:
N. interruptus
Binomial name
Nicrophorus interruptus
Stephens, 1830
Synonyms
List
  • Necrophorus interruptusStephens, 1830
  • Necrophorus [sic] CorsicusLaporte, 1832
  • Necrophorus [sic] fossorErichson, 1837
  • Necrophorus [sic] funereusGéné, 1839
  • Necrophorus [sic] basalisGistel, 1848
  • Necrophorus [sic] GallicusJacquelin du Val, 1860
  • Necrophorus [sic] suturalisMotschulsky, 1860
  • Necrophorus [sic] interruptus v. trimaculatusGradl, 1882
  • Necrophorus [sic] interruptus v. brunnipesGradl, 1882
  • Necrophorus [sic] interruptus v. centrimaculatusReitter, 1895
  • Necrophorus [sic] interruptus var./ab trinotatusReitter, 1911
  • Necrophorus [sic] interruptus v. nigricansPasquet, 1916
  • Necrophorus [sic] interruptus v. algiricusPasquet, 1916
  • Necrophorus [sic] interruptus v. pasquetiPic, 1917
  • Necrophorus [sic] fossor infuscaticornisPortevin, 1924

Nicrophorus interruptus is a species of burying beetle or sexton beetle belonging to the family Silphidae subfamily Nicrophorinae. [1]

Contents

Distribution

Nicrophorus interruptus is the rarest but widespread among the large red and black carrion beetles. [2] They are present in most of Europe, in the eastern Palearctic realm, in the Near East and in North Africa. [3]

Description

Lateral view Silphidae - Nicrophorus interruptus-1 (8302402173).jpg
Lateral view

The adults grow up to 26 millimetres (1.0 in) long. [4] They are mostly black with two orange-red markings on the elytra and a yellow pubescence on protruding abdominal segments. [4] They are also characterized by the absence of hairs on the thorax and straight tibias on the hind legs. [4]

The front and posterior orange-red markings on the elytra are separated from one another at the suture. They have large club-like antennae equipped with black and reddish tips [4] containing chemoreceptors, capable of detecting a dead animal from a long way away. [4]

Biology

Nicrophorus interruptus, male. Mounted specimen Necrophorus fossor Erichson, 1834 male (3296103574).jpg
Nicrophorus interruptus, male. Mounted specimen

These beetles are scavengers, breeding and living off in rotten carcases. [4] In fact they bury the carcasses of small vertebrates such as birds and mice as a food source for their larvae.

In Nicrophorus interruptus both the male and female parents take care of the brood, quite rare behaviour among insects. The prospective parents begin to dig a hole below the carcass, forming the crypt, where the carcass will remain until the flesh has been completely consumed. Although the larvae are able to feed themselves, both parents also feed them by regurgitated liquid food. [5]

The adult beetles continue to protect the larvae, which take several days to mature.. The final-stage larvae migrate into the soil and pupate, transforming from small white larvae to fully formed adult beetles. [5]

Bibliography

Related Research Articles

<span class="mw-page-title-main">Forensic entomology</span> Application of insect and other arthropod biology to forensics

Forensic entomology is the scientific study of the colonization of a dead body by arthropods. This includes the study of insect types commonly associated with cadavers, their respective life cycles, their ecological presences in a given environment, as well as the changes in insect assemblage with the progression of decomposition. Insect succession patterns are identified based on the time a given species of insect spends in a given developmental stage, and how many generations have been produced since the insects introduction to a given food source. Insect development alongside environmental data such as temperature and vapor density, can be used to estimate the time since death, due to the fact that flying insects are attracted to a body immediately after death. The identification of postmortem interval to aid in death investigations is the primary scope of this scientific field. However, forensic entomology is not limited to homicides, it has also been used in cases of neglect and abuse, in toxicology contexts to detect the presence of drugs, and in dry shelf food contamination incidents. Equally, insect assemblages present on a body, can be used to approximate a given location, as certain insects may be unique to certain areas. Therefore, forensic entomology can be divided into three subfields: urban, stored-product and medico-legal/medico-criminal entomology.

<span class="mw-page-title-main">Silphidae</span> Family of beetles

Silphidae is a family of beetles that are known commonly as large carrion beetles, carrion beetles or burying beetles. There are two subfamilies: Silphinae and Nicrophorinae. Nicrophorines are sometimes known as sexton beetles. The number of species is relatively small at around two hundred. They are more diverse in the temperate region although a few tropical endemics are known. Both subfamilies feed on decaying organic matter such as dead animals. The subfamilies differ in which uses parental care and which types of carcasses they prefer. Silphidae are considered to be of importance to forensic entomologists because when they are found on a decaying body they are used to help estimate a post-mortem interval.

<span class="mw-page-title-main">Burying beetle</span> Genus of beetles

Burying beetles or sexton beetles, genus Nicrophorus, are the best-known members of the family Silphidae. Most of these beetles are black with red markings on the elytra (forewings). Burying beetles are true to their name—they bury the carcasses of small vertebrates such as birds and rodents as a food source for their larvae, this makes them carnivorous. They are unusual among insects in that both the male and female parents take care of the brood.

<span class="mw-page-title-main">Trogidae</span> Family of beetles

Trogidae, sometimes called hide beetles, is a family of beetles with a distinctive warty or bumpy appearance. Found worldwide, the family includes about 300 species contained in four or five genera.

<span class="mw-page-title-main">Dermestidae</span> Family of beetles

Dermestidae are a family of Coleoptera that are commonly referred to as skin beetles. Other common names include larder beetle, hide or leather beetles, carpet beetles, and khapra beetles. There are over 1,800 species described.

<i>Nicrophorus americanus</i> Species of beetle

Nicrophorus americanus, also known as the American burying beetle or giant carrion beetle, is a critically endangered species of beetle endemic to North America. It belongs to the order Coleoptera and the family Silphidae. The carrion beetle in North America is carnivorous, feeds on carrion and requires carrion to breed. It is also a member of one of the few genera of beetle to exhibit parental care. The decline of the American burying beetle has been attributed to habitat loss, alteration, and degradation, and they now occur in less than 10% of their historic range.

<span class="mw-page-title-main">Cleridae</span> Checkered beetles

Cleridae are a family of beetles of the superfamily Cleroidea. They are commonly known as checkered beetles. The family Cleridae has a worldwide distribution, and a variety of habitats and feeding preferences.

<i>Nicrophorus investigator</i> Species of beetle

Nicrophorus investigator is a burying beetle first described by the Swedish naturalist Johan Wilhelm Zetterstedt in 1824.

<i>Nicrophorus vespilloides</i> Species of beetle

Nicrophorus vespilloides is a burying beetle described by Johann Friedrich Wilhelm Herbst in 1783.

<i>Nicrophorus vestigator</i> Species of beetle

Nicrophorus vestigator is a species of beetle belonging to the family Silphidae.

<i>Nicrophorus tomentosus</i> Species of beetle

Nicrophorus tomentosus is a species of burying beetle that was described by Friedrich Weber in 1801. The beetle belongs to the family Silphidae which are carrion beetles. The beetles have sensitive antennae that contain olfactory organs. Thus, the beetle can locate dead animals (carcass), and then as the name suggests, can bury them. However, unlike other burying beetles, N. tomentosus does not completely bury these brood carcasses. They instead dig a shallow hole under the carcass and cover it with leaf litter. Recognition of these beetles can be distinguished by its black color with orange markings on the wing covers (elytra).

<i>Nicrophorus nepalensis</i> Species of beetle

Nicrophorus nepalensisHope,, commonly known as burying beetle, is widespread across tropical and subtropical countries in Asia. It belongs to the order Coleoptera and the family Silphidae, and is part of the nepalensis species-group, which is the second largest species group within the genus Nicrophorus. N. nepalensis differs from some other beetles in that it exhibits biparental care. Its role as a decomposer is crucial in the energy cycle and energy transformation in the ecosystem.

<i>Nicrophorus pustulatus</i> Species of beetle

Nicrophorus pustulatus is a burying beetle described by Johann Karl Wilhelm Illiger in 1808.

<i>Nicrophorus vespillo</i> Species of beetle

Nicrophorus vespillo is a burying beetle described by Carl Linnaeus in his landmark 1758 10th edition of Systema Naturae. It has a paleartic distribution and is commonly found across Europe and Asia, extending from Western Europe to Mongolia.

<i>Nicrophorus satanas</i> Species of beetle

Nicrophorus satanas is a burying beetle described by Edmund Reitter in 1893.

<i>Nicrophorus orbicollis</i> Species of beetle

Nicrophorus orbicollis is a nearctic burying beetle first described by Thomas Say in 1825. It is a member of the genus Nicrophorus or sexton beetles, comprising the most common beetles in the family Silphidae. This species is a decomposer feeding on carcasses of small dead animals. N. orbicollis can be used for scientific research both medically and forensically.

<span class="mw-page-title-main">American carrion beetle</span> Species of beetle

The American carrion beetle is a North American beetle of the family Silphidae. It lays its eggs in, and its larvae consume, raw flesh and fungi. The larvae and adults also consume fly larvae and the larvae of other carrion beetles that compete for the same food sources as its larvae.

<i>Poecilochirus</i> Genus of mites

Poecilochirus is a Holarctic genus of mites in the family Parasitidae. They are relatively large and often found on rotting corpses, where they are transported by beetles. Deuteronymphs are characterized by two orange dorsal shields and in many species a transverse band on the sternal shield. The juvenile development consists of a larval stage, protonymph, and deuteronymph, but no tritonymph. Females are smaller than males. Males guard female deuteronymphs shortly before these mate, and pairs mate venter-to-venter.

<i>Oiceoptoma noveboracense</i> Species of beetle

Oiceoptoma noveboracense is a member of the family Silphidae, or carrion beetles, which feed on decaying organic matter such as dead animals. Its common name is the margined carrion beetle, from the orange-red margins on the pronotum, which are helpful when identifying this species. The larva is typically light brown to red and also has vertical ridges on its thorax like the adult. This diurnal beetle can be found mainly in the spring into the fall, and it has a strong preference towards a deciduous forest habitat. The primary forensic importance of this beetle is its ability to use the succession of insect fauna to provide confirmation of postmortem intervals.

<i>Oxelytrum cayennense</i> Species of beetle

Oxelytrum cayennense is a species of burying beetles or carrion beetles belonging to the family Silphidae.

References

  1. Catalogue of life
  2. Michael Darby The beetles of the Wylye Down National Nature Reserve Wiltshire Archaeological and Natural History Society. v.102(2009) Page 8
  3. Fauna europaea
  4. 1 2 3 4 5 6 A Nature Observer's Scrapbook
  5. 1 2 Erna Pukowski Ecological Investigation of Necrophorus F. Zeitschrift fur Morphologie und Oekologie der Tiere 27(3): 518-586. 1933