Shrew Explained

Shrews (family Soricidae) are small mole-like mammals classified in the order Eulipotyphla. True shrews are not to be confused with treeshrews, otter shrews, elephant shrews, West Indies shrews, or marsupial shrews, which belong to different families or orders.

Although its external appearance is generally that of a long-nosed mouse, a shrew is not a rodent, as mice are. It is, in fact, a much closer relative of hedgehogs and moles; shrews are related to rodents only in that both belong to the Boreoeutheria magnorder. Shrews have sharp, spike-like teeth, whereas rodents have gnawing front incisor teeth.

Shrews are distributed almost worldwide. Among the major tropical and temperate land masses, only New Guinea, Australia, New Zealand, and South America have no native shrews. However, as a result of the Great American Interchange, South America does have a relatively recently naturalised population, present only in the northern Andes.

The shrew family has 385 known species, making it the fourth-most species-diverse mammal family. The only mammal families with more species are the muroid rodent families (Muridae and Cricetidae) and the bat family Vespertilionidae.

Characteristics

All shrews are tiny, most no larger than a mouse. The largest species is the Asian house shrew (Suncus murinus) of tropical Asia, which is about 15sigfig=1NaNsigfig=1 long and weighs around 100frac=2NaNfrac=2[1] The Etruscan shrew (Suncus etruscus), at about 3.5frac=8NaNfrac=8 and 1.80NaN0, is the smallest known living terrestrial mammal.In general, shrews are terrestrial creatures that forage for seeds, insects, nuts, worms, and a variety of other foods in leaf litter and dense vegetation e.g. grass, but some specialise in climbing trees, living underground, living under snow, or even hunting in water. They have small eyes and generally poor vision, but have excellent senses of hearing and smell.[2] They are very active animals, with voracious appetites. Shrews have unusually high metabolic rates, above that expected in comparable small mammals.[3] For this reason, they need to eat almost constantly like moles. Shrews in captivity can eat to 2 times their own body weight in food daily.[4]

They do not hibernate, but some species are capable of entering torpor. In winter, many species undergo morphological changes that drastically reduce their body weight. Shrews can lose between 30% and 50% of their body weight, shrinking the size of bones, skull, and internal organs.[5]

Whereas rodents have gnawing incisors that grow throughout life, the teeth of shrews wear down throughout life, a problem made more extreme because they lose their milk teeth before birth, so have only one set of teeth throughout their lifetimes. In some species, exposed areas of the teeth are dark red due to the presence of iron in the tooth enamel. The iron reinforces the surfaces that are exposed to the most stress, which helps prolong the life of the teeth. This adaptation is not found in species with lower metabolism, which don't have to eat as much and therefore don't wear down the enamel to the same degree. The only other mammals’ teeth with pigmented enamel are the incisors of rodents.[6] Apart from the first pair of incisors, which are long and sharp, and the chewing molars at the back of the mouth, the teeth of shrews are small and peg-like, and may be reduced in number. The dental formula of shrews is:

Shrews are fiercely territorial, driving off rivals, and coming together only to mate. Many species dig burrows for catching food and hiding from predators, although this is not universal.[2]

Female shrews can have up to 10 litters a year; in the tropics, they breed all year round; in temperate zones, they cease breeding only in the winter. Shrews have gestation periods of 17–32 days. The female often becomes pregnant within a day or so of giving birth, and lactates during her pregnancy, weaning one litter as the next is born.[2] Shrews live 12 to 30 months.[7]

Shrews are unusual among mammals in a number of respects. Unlike most mammals, some species of shrews are venomous. Shrew venom is not conducted into the wound by fangs, but by grooves in the teeth. The venom contains various compounds, and the contents of the venom glands of the American short-tailed shrew are sufficient to kill 200 mice by intravenous injection. One chemical extracted from shrew venom may be potentially useful in the treatment of high blood pressure, while another compound may be useful in the treatment of some neuromuscular diseases and migraines.[8] The saliva of the northern short-tailed shrew (Blarina brevicauda) contains soricidin, a peptide which has been studied for use in treating ovarian cancer.[9] Also, along with the bats and toothed whales, some species of shrews use echolocation.[10] Unlike most other mammals, shrews lack zygomatic bones (also called the jugals), so have incomplete zygomatic arches.[11]

Echolocation

The only terrestrial mammals known to echolocate are two genera (Sorex and Blarina) of shrews, the tenrecs of Madagascar, bats, and the solenodons.[12] These include the Eurasian or common shrew (Sorex araneus) and the American vagrant shrew (Sorex vagrans) and northern short-tailed shrew (Blarina brevicauda). These shrews emit series of ultrasonic squeaks.[13] [14] By nature the shrew sounds, unlike those of bats, are low-amplitude, broadband, multiharmonic, and frequency modulated.[14] They contain no "echolocation clicks" with reverberations and would seem to be used for simple, close-range spatial orientation. In contrast to bats, shrews use echolocation only to investigate their habitats rather than additionally to pinpoint food.[14]

Except for large and thus strongly reflecting objects, such as a big stone or tree trunk, they probably are not able to disentangle echo scenes, but rather derive information on habitat type from the overall call reverberations. This might be comparable to human hearing whether one calls into a beech forest or into a reverberant wine cellar.[14]

Classification

The 385 shrew species are placed in 26 genera,[15] which are grouped into three living subfamilies: Crocidurinae (white-toothed shrews), Myosoricinae (African shrews), and Soricinae (red-toothed shrews). In addition, the family contains the extinct subfamilies Limnoecinae, Crocidosoricinae, Allosoricinae, and Heterosoricinae (although Heterosoricinae is also commonly considered a separate family).

Further reading

External links

Notes and References

  1. Louch CD, Ghosh AK, Pal BC . 1966 . Seasonal Changes in Weight and Reproductive Activity of Suncus murinus in West Bengal, India . Journal of Mammalogy . 47 . 1 . 73–78 . 10.2307/1378070 . 1378070 . 5905563 .
  2. Book: Macdonald DW. Barnard CJ. 1984. The Encyclopedia of Mammals. Facts on File. New York. 758–763. 0-87196-871-1. registration.
  3. William J, Platt WJ. 1974. Metabolic Rates of Short-Tailed Shrews. Physiological Zoology. 47. 2. 75–90. 10.1086/physzool.47.2.30155625. 30155625. 87675441.
  4. Book: Reid F . 2009 . A Field Guide to the Mammals of Central America and Southeast Mexico . 63–64 .
  5. Book: The natural history of shrews . 978-0-8014-2595-0 . Churchfield . Sara . vanc . January 1990. Cornell University Press .
  6. Web site: John . Wible . vanc . Why Do Some Shrews Have Dark Red Teeth? . 6 February 2018 . Carnegie Museum .
  7. Book: Macdonald DW . The Encyclopedia of Mammals . Oxford University Press . 2006 . 0-19-920608-2.
  8. Book: Piper, Ross. Extraordinary Animals: An Encyclopedia of Curious and Unusual Animals. Greenwood Press. 30 August 2007. 978-0313339226.
  9. Web site: BioProspecting NB, Inc's novel ovarian cancer treatment found effective in animal cancer model. . 23 May 2010 . 8 Apr 2009 . 16 July 2011 . https://web.archive.org/web/20110716105212/http://www.soricimed.com/news/bioprospecting-nb-inc%E2%80%99s-novel-ovarian-cancer-treatment-found-effective-animal-cancer-model . dead .
  10. Chai. Simin. Tian. Ran. Rong. Xinghua. Li. Guiting. Chen. Bingyao. Ren. Wenhua. Xu. Shixia. Yang. Guang. 2020-02-25. Evidence of Echolocation in the Common Shrew from Molecular Convergence with Other Echolocating Mammals. Zoological Studies. 59. 59 . e4. 10.6620/ZS.2020.59-04. 1021-5506. 7262541. 32494297. 215414310.
  11. News: About the mammalian skull, and be able to define and/or identify on a specimen all underlined terms..
  12. Web site: What is echolocation and which animals use it? . 2022-03-25 . Discover Wildlife . en.
  13. 1380190 . 751–9 . Tomasi TE . Echolocation by the Short-Tailed Shrew Blarina brevicauda . 60 . 4 . Journal of Mammalogy . 1979 . 10.2307/1380190.
  14. Siemers BM, Schauermann G, Turni H, von Merten S . Why do shrews twitter? Communication or simple echo-based orientation . Biology Letters . 5 . 5 . 593–6 . October 2009 . 19535367 . 2781971 . 10.1098/rsbl.2009.0378 .
  15. Wilson DE, Reeder DM . Class Mammalia Linnaeus, 1758. In: Zhang, Z.-Q. (ed.) Animal biodiversity: An outline of higher-level classification and survey of taxonomic richness . Zootaxa. 3148. 2011. 56–60. 10.11646/zootaxa.3148.1.9 .