| Literature DB >> 26906263 |
Shmuel Bentov1, Eliahu D Aflalo1, Jenny Tynyakov1, Lilah Glazer2, Amir Sagi1.
Abstract
Crustaceans, like most mineralized invertebrates, adopted calcium carbonate mineralization for bulk skeleton reinforcement.Entities:
Mesh:
Substances:
Year: 2016 PMID: 26906263 PMCID: PMC4764981 DOI: 10.1038/srep22118
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Raman spectra of teeth processes (red) and the underlying mandibular basal segment (jaw; blue) of 16 representative crustacean species from the Class Malacostraca; Astacidea (a–e), Dendrobranchiata (f–h), Caridea (i), Isopoda (j), Stomatopoda (k,l) Brachyura (m–o), Achelata (p). The Raman peak at 960 cm−1 corresponds to calcium phosphate (ν1 vibration of PO4) and the peak at 1080 cm−1 corresponds to calcium carbonate (ν1 vibration of CO3). The list of species studied is presented in Table 1.
Figure 2EDS analysis comparing P/Ca ratios in the teeth processes (black) and the mandibular basal segment (gray) of 9 representative crustacean species (see Table 1) that deposit calcium phosphate on their teeth.
Error bars are s.d. for the typical atomic ratio of various calcium phosphate minerals (see Fig. S2).
Figure 3The mandibles of the crayfish C. quadricarinatus, and P. fallax (Astacidea).
(a) Micrographs of the mandible of P.fallax demonstrate the porcelaneous rounded molar cusp (m) composed of apatite, and the bicuspid caudal molar (cm) and the incisor tooth (i), which are covered with chitin and are reinforced with ACC. (b) The mandible of C. quadricarinatus with anterior whitish molar tooth, and brownish tricuspid caudal molar process and incisor ridge that are covered by chitin (i-incisor, m-molar, bs-basal segment, scale bar = 1 mm). (c,d) the correspondent backscattered images showing the sharp gradient of mineral density between the anterior phosphatic molar and the rest of the mandible. (e) X-ray diffraction of the molar teeth of, P. fallax (a) and C. quadricarinatus (b). The diffractogram demonstrates that the molar tooth in these species is comprised of crystalline apatite. The diffraction peak at 2θ = 19.2 is ascribed to the associated chitin matrix (lattice plane (040), (110)). (f) EPMA-WDS analysis of C. quadricarinatus molar tooth indicates on a composition of fluorapatite. Part of the carbon and oxygen signal is probably due to the organic matrix, yet it is possible that part of the carbon signal is due to carbonate-fluorapatite (francolite).
Figure 4Mandible of the prawn, M. rosenbergii.
(a) Micrographs of the teeth processes illustrate the reverse distribution of chitin coat in the mandible compared to crayfish. In M. rosenbergii, the incisors are highly mineralized while the molar is less mineralized and is coated with chitin. (b) X-ray computer tomography of the mouth parts area demonstrates the gradual changes of mineral density from the teeth processes to the jaw and the rest of the head. The bulk cuticle is relatively lightly calcified with ACC while the mandibles show high mineral density, especially in the incisors (i-incisor, m-molar, bs-basal segment, c-cuticle, scale bar = 2 mm). (c) Powder XRD pattern of the molar (a) and the incisor (b) teeth. The diffractogram indicates that the molar tooth is composed of apatite while the incisor tooth is composed of ACP.
Figure 5Mandible of mantis shrimps S. mantis, and E. massavensis.
(a) Micro-CT volume rendering reconstructions of a surface view of the S. mantis mandible showing two serrated ridges of the molar and a single serrated ridge of the incisor. (i-incisor, m-molar, bs-basal segment, scale bar = 2 mm). A volume-rendered video of the mandible is available as Supplementary Video S1. (b) EDS analysis of the teeth of E. massavensis showing ratios of F/Ca and P/Ca, confirms a chemical composition of fluorapatite (Ca5(PO4)3F). Error bars are s.d. (c) Powder X-ray diffraction of the mandibles, S. mantis (a), E. massavensis (b) fluorapatite reference (c), demonstrates that the teeth are comprised of crystalline apatite (for peak assignment see Fig. 3). (d) EPMA-WDS analyses of S. mantis teeth show a composition of fluorapatite, possibly carbonate-fluorapatite (francolite).
List of species addressed in this study.
| Taxon | Species | Common name |
|---|---|---|
| Australian red claw crayfish | ||
| Common yabby | ||
| Red swamp crayfish | ||
| Slough crayfish | ||
| American lobster | ||
| Giant river prawn | ||
| Japanese tiger shrimp | ||
| Eastern king prawn | ||
| Chinese white shrimp | ||
| Common rough woodlouse | ||
| Eastern rock lobster | ||
| Aquatic land crab | ||
| Atlantic blue crab | ||
| Flower crab | ||
| Mediterranean mantis shrimp | ||
| Indo-Pacific mantis shrimp |