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Arteriovenous anastomoses in the skin of seals. I. The Weddell seal Leptonychotes weddelli and the elephant seal Mirounga leonina (Pinnipedia: Phocidae).

The structure, distribution, density and innervation of arteriovenous anastomoses (AVAs) have been compared in the skin of Weddell and elephant seals, as part of a study of the structure and function of arteriovenous anastomoses in mammals. In both genera AVAs were coiled vessels with the segmental structure typical of "epithelioid" anastomoses and possessed a dense peripheral adrenergic innervation. In both Weddell and elephant seals there was no statistically significant difference between the mean density of AVAs in body skin and flipper skin. The majority, approximately 71% of AVAs occurred superficially in the dermis, fewer (23%) occurred in the deeper dermis, and 6% were present in the thick hypodermis (bubber). The density of AVAs in Weddell and elephant seals is approximately eight times greater than that reported in other animals and the superficial position of anastomoses over the whole of the body surface is characteristic of phocid seals. When open, AVAs in Weddell and elephant seals allow maximal heat loss from the skin surface by passing large volumes of blood into the superficial veins. AVAs in seals are important in dissipation of body heat, particularly when the animals are out of the water, and the entire surface area is thermoregulatory rather than specific regions such as the flippers.

Animals

The chromosomes of the southern elephant seal, Mirounga leonina (Phocidae: Mammalia).

Chromosome analyses were carried out on bone marrow cells from three elephant seal pups (Mirounga leonina), a species characterized by a 2n = 34 chromosome number. Arm ratios for the different chromosomes were calculated to facilitate the classification of chromosomes into groups. The karyotype of the southern elephant seal differs from other reported 34-chromosome phocids in the morphology of the Y chromosome and in that of one of the autosomal chromosome pairs.

Animals

[Comparative anatomy of the spinal cord of semi-aquatic, aquatic and terrestrial mammals].

Skeletotopically, cervical thickening of the spinal cord in semiwater mammals (Callorhinus ursinus, Eumetopias jubatus, Phoca larga, Phoca kurilensis, Enhydra lutris) corresponds to 4--5, and in terrestrial mammals (Ursus arctos, Vulpes vulpes)--to 3--6 cervical vertebrae. Lumbar thickening in terrestrial spicies and in Enhydra lutris is situated more caudally from the thoracic portion than in Phocidae. In a typically water animal (Phocaenoides dalli) the cervical thickening is expressed feebly, the lumbar one is absent, the epidural space is developed better than in terrestrial and semiwater animals. In Phocidae, comparing terrestrial species, bringing together of the nerve fasciculi taking their origin from the spinal cord is observed, a powerful development of a "horse tail", elongation of nerve bands, going from the spinal cord to spinal ganglia. The relative length of the spinal cord in semiwater and water animals is less than in terrestrial ones. It is stated that differences in spinal cord construction and topography of the animals in question are closely connected with their environmental conditions, functional loading and locomotor peculiarities.

Age Factors

ERGA-BGE reference genome of the Mediterranean monk seal ( Monachus monachus), an IUCN Vulnerable species.

The Mediterranean monk seal, Monachus monachus, is the only pinniped that lives in the Mediterranean Sea and one of the rarest marine mammals in the world. The species was recently classified as "vulnerable" by the IUCN, considering an improvement in its overall status. However, the species' populations have undergone severe bottlenecks due to systematic persecution by humans over the past centuries. Today, the global population of M. monachus is estimated to be no more than 1,000 individuals. The Mediterranean monk seal is mainly using marine caves as resting and pupping sites. It is an opportunistic apex predator and as a result its role is considered important for maintaining the structure and function of marine ecosystems. Nowadays, the species is threatened mainly by the destruction of its habitat (due to coastal development, mass tourism, and pollution) and by the depletion of its prey due to overfishing. The Mediterranean monk seal is an emblematic species; its ecological importance and its vulnerable status render its protection and effective management necessary. The entirety of the genome sequence of a female specimen was assembled into 16 contiguous chromosomal pseudomolecules, one sex chromosome (X), and one mitochondrial genome. This chromosome-level assembly encompasses 2.4 Gb, composed of 316 contigs and 275 scaffolds, with contig and scaffold N50 values of 90.9 Mb and 157 Mb, respectively.

Biodiversity Genomics Europe