Results 81 to 90 of about 147 (105)
Scallop-bacteria symbiosis from the deep sea reveals strong genomic coupling in the absence of cellular integration. [PDF]
Lin YT +8 more
europepmc +1 more source
More than just a color: Archaeological, analytical, and procedural aspects of Late Bronze Age purple-dye production at Cape Kolonna, Aegina. [PDF]
Berger L +3 more
europepmc +1 more source
Some of the next articles are maybe not open access.
Thermoluminescence dating of calcite shells in the pectinidae family
Quaternary Science Reviews, 1992Abstract Previously we investigated the thermoluminescence (TL) of a calcite shell, Pectinidae Pecten (Notovola) albicans (Schroter) (abbreviated to albicans), and we found that TL dating was possible for fossil calcite shells of albicans from 5 × 10 5 years ago to the present.
Kiyotaka Ninagawa +8 more
openaire +1 more source
The karyotype of Nodipecten nodosus (Bivalvia: Pectinidae)
Hydrobiologia, 2000Earlier karyotypical work on Nodipecten nodosus embryos indicated that this species has a diploid number of 38, with six pairs respectively of metacentric and submetacentric chromosomes and seven pairs of subtelocentric chromosomes, although there were some difficulties in obtaining complete metaphases.
E. Pauls, P. R. A. M. Affonso
openaire +1 more source
The mitochondrial genome of the scallopMimachlamys senatoria(Bivalvia, Pectinidae)
Mitochondrial DNA, 2013The mitochondrial (mt) genome of the scallop Mimachlamys senatoria (17,383 bp), an economically and ecologically important bivalve, was newly sequenced and annotated. Comparative analyses between M. senatoria and its congeneric sister species M. nobilis revealed three new findings: (1) M.
Xiangyun, Wu, Xiaoling, Li, Ziniu, Yu
openaire +2 more sources
Family PECTINIDAE Rafinesque, 1815 REMARK Formerly attributed to Wilkes (1810), but that work is not entirely binominal. For a diagnosis see Dijkstra (2013: 24).
Dijkstra, Henk H. +2 more
openaire +1 more source
Dijkstra, Henk H. +2 more
openaire +1 more source
Some Atlantic Coast Tertiary Pectinidae
American Midland Naturalist, 1934P1. 25, fig. 1. Description: Shell very thin, equilateral, suborbicular. A single strong radial cord extends nearly to the beak anteriorly and another posteriorly; three weaker, equally spaced cords lie between the secondary cords and become obsolete 2 mm. from the margin of the disk.
openaire +1 more source
Level of Acceptability of Scallop (Pectinidae) Kropek
Business Fora: Business and Allied Industries International JournalThis experimental study aimed to determine the acceptability of scallop kropek as to aroma, color, flavor, texture and general acceptability as well as its acceptability in three formulations made up of 1/4 cup scallop paste and ¾ cup tapioca flour (Formulation A); ½ cup scallop paste and ½ cup tapioca flour (Formulation B; and, ¾ cup scallop paste and
Brian Focbit, Franz Joseph Flores
openaire +1 more source
Rubber-Like Properties of the Inner Hinge-Ligament of Pectinidae
Journal of Experimental Biology, 1966ABSTRACT The inner hinge-ligament of Pectinidae (Lamellibranchiata) is an elastic block of amorphous cross-linked protein, plasticized with water. It acts as a compression spring, and is the antagonist of the shell adductor muscle. Its elasticity is shown to be rubber-like, in that the elastic restoring force is mainly due to entropy ...
openaire +2 more sources
Mclearnia Crickmay, 1930 (Bivalvia: Pectinidae)
Journal of Paleontology, 1986In revising the subgenus Mclearnia Crickmay (1930), Kelly, Dhondt and Zakharov (1984) recommended that the spelling of the subgenus and species should be emended to Maclearnia maclearni. The latter authors had followed Recommendation III 21(a) of the International Code of Zoological Nomenclature (Stoll, 1964, p.
S. R. A. Kelly +2 more
openaire +1 more source

