Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Primates”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,081 records · Page 60Linked to original sources

Rapid detection of the ERV-K(C4) retroviral insertion reveals further structural polymorphism of the complement C4 genes in old world primates.

The fourth component of complement (C4) is coded for by two tandem-duplicated genes located in the class III region of the MHC of humans as well as a number of primates. A C4 gene size polymorphism giving rise to two gene variants of 16 and 22.3 kb length can be attributed to a complete endogenous retroviral insertion of 6.3 kb termed ERV-K(C4) in intron 9 of the long C4 genes. We developed a simple PCR-based screening assay to detect the presence of this insertion, and tested a number of unrelated animals from old world primate species. The presence of the ERV insertion in the orangutan, rhesus macaque and green monkey as well as its absence in gorillas and chimpanzees could be confirmed. In addition, the insertion was also detected in the baboon and the cynomolgus macaque whereas it was not found in a single gibbon. Among rhesus and cynomolgus macaques one individual was identified in each species only carrying short C4 genes demonstrating further structural heterogeneity in these species. Based on these findings we propose that the primigenial retroviral integration occurred prior to the radiation of old world primate species, and that both the long and the short forms of the C4 gene have existed side by side since then.

Animals↗

Review on the physical growth in primates.

J.M. Tanner concluded in 1962 that the growth velocity curve in body weight shows two peaks in primates but only one peak in the other mammals, and that the first peak in primates corresponds phylogenetically to the peak in the other mammals. Many reports on the physical growth of primates have been accumulated in the past 70 years. Using some of them as a basis, the author illustrated the normative velocity curves (increment curves) of the weight of monkeys, chimpanzees and humans, and reconsidered Tanner's conclusion. However, there are still some as yet obscure aspects to be interpreted in future.

Aging↗

Convergence of complex cognitive abilities in cetaceans and primates.

What examples of convergence in higher-level complex cognitive characteristics exist in the animal kingdom? In this paper I will provide evidence that convergent intelligence has occurred in two distantly related mammalian taxa. One of these is the order Cetacea (dolphins, whales and porpoises) and the other is our own order Primates, and in particular the suborder anthropoid primates (monkeys, apes, and humans). Despite a deep evolutionary divergence, adaptation to physically dissimilar environments, and very different neuroanatomical organization, some primates and cetaceans show striking convergence in social behavior, artificial 'language' comprehension, and self-recognition ability. Taken together, these findings have important implications for understanding the generality and specificity of those processes that underlie cognition in different species and the nature of the evolution of intelligence.

Animal Communication↗

Sexual selection, seminal coagulation and copulatory plug formation in primates.

This study examines the question of whether multipartner matings by female primates, with resulting sperm competition among males, may have favored the evolution of biochemical mechanisms to enhance seminal coagulationand copulatory plug formation. Comparative ratings of seminal coagulation (using a four-point scale where 1 = no coagulation and 4 = copulatory plug formation) were obtained for 40 species representing 26 primate genera. Coagulation ratings were highest (mean = 3.64) in those genera where females commonly mate with multiple partners, and lowest (mean = 2.09) in genera where females are primarily monogamous or belong to polygynous (one male) units(p < 0.0001). This result remained significant (p < 0.001) after the use of comparative analysis of independent contrasts (CAIC) to control for possible phylogenetic biases in the data set. Results indicate that sexual selection has played an important role in the evolution of seminal coagulation, and copulatory plug function, in primates.

Adaptation, Biological↗

Differentiation between fore- and hindlimb bones and locomotor behaviour in primates.

Primate appendicular limb bones were measured on the cross-sectional geometry at the mid-length of the humerus and femur and on the external dimensions of long bones of the same individuals. Cross sections were directly measured by means of computer tomography or direct sectioning. The morphometry of bones and locomotor behaviour is discussed from the viewpoint of the functional differentiation between the fore- and hindlimbs. The primate group which daily adopted a relatively terrestrial locomotor type demonstrates robust forelimb bones compared with the group which adopted a fully arboreal locomotor type. In contrast, the arboreal group showed relatively large and long hindlimb bones. The difference resembled the previously reported comparison between terrestrial and arboreal groups among wholly quadrupedal mammals. Humans were more similar to the arboreal group than to the terrestrial group. Parameters of the cross-sectional geometry showed a slightly positive allometry in total primate species. Slopes of the parameters were explained by the influence of muscle force.

Animals↗

Brains, innovations and evolution in birds and primates.

Several comparative research programs have focused on the cognitive, life history and ecological traits that account for variation in brain size. We review one of these programs, a program that uses the reported frequency of behavioral innovation as an operational measure of cognition. In both birds and primates, innovation rate is positively correlated with the relative size of association areas in the brain, the hyperstriatum ventrale and neostriatum in birds and the isocortex and striatum in primates. Innovation rate is also positively correlated with the taxonomic distribution of tool use, as well as interspecific differences in learning. Some features of cognition have thus evolved in a remarkably similar way in primates and at least six phyletically-independent avian lineages. In birds, innovation rate is associated with the ability of species to deal with seasonal changes in the environment and to establish themselves in new regions, and it also appears to be related to the rate at which lineages diversify. Innovation rate provides a useful tool to quantify inter-taxon differences in cognition and to test classic hypotheses regarding the evolution of the brain.

Animals↗

The evolutionary conservation of the human chitotriosidase gene in rodents and primates.

Chitinases have been identified in a variety of organisms ranging from prokaryotes to eukaryotes, known to specifically degrade chitin, an abundant polymer of N-acetylglucosamine. Recently a human chitinolytic enzyme called CHIT1 was discovered. CHIT1 is expressed by activated macrophages and hydrolyzes artificial chitotrioside substrates, but its specific function in humans is unknown, since it is generally believed that man completely lacks endogenous chitin and endogenous substrates for chitinases. An intriguing question is whether the chitotriosidase activity is just an evolutionary remnant or it has a physiological function in man. To test these hypotheses we utilized a "phylogenomic" approach performing accurate sequence analyses of this gene, coding for CHIT1, in rodents and primates. Inspecting the sequences available in public databases, we determined that this gene is conserved in rodents (mouse and rat) and primates (chimpanzee, gorilla, orangutan, gibbon, baboon, a common marmoset and black macaque). Moreover we found that a 24-base pair duplication that determines an enzymatically inactive human protein is not present in primates, suggesting that this polymorphism was created during human evolution. These results indicate that chitotriosidase is conserved across the evolutionary scale. Such conservation of the CHIT1 gene argues in favour of an important biological role.

Amino Acid Sequence↗

Origins of primate chromosomes - as delineated by Zoo-FISH and alignments of human and mouse draft genome sequences.

This review examines recent advances in comparative eutherian cytogenetics, including Zoo-FISH data from 30 non-primate species. These data provide insights into the nature of karyotype evolution and enable the confident reconstruction of ancestral primate and boreo-eutherian karyotypes with diploid chromosome numbers of 48 and 46 chromosomes, respectively. Nine human autosomes (1, 5, 6, 9, 11, 13, 17, 18, and 20) represent the syntenies of ancestral boreo-eutherian chromosomes and have been conserved for about 95 million years. The average rate of chromosomal exchanges in eutherian evolution is estimated to about 1.9 rearrangements per 10 million years (involving 3.4 chromosome breaks). The integrated analysis of Zoo-FISH data and alignments of human and mouse draft genome sequences allow the identification of breakpoints involved in primate evolution. Thus, the boundaries of ancestral eutherian conserved segments can be delineated precisely. The mapping of rearrangements onto the phylogenetic tree visualizes landmark chromosome rearrangements, which might have been involved in cladogenesis in eutherian evolution.

Animals↗

Human endogenous retroviruses in the primate lineage and their influence on host genomes.

Primates emerged about 60 million years ago. Since that time various primate-targeting retroviruses have integrated in the germ line of primate species, and some drifted to fixation. After germ line fixation, continued activity of proviruses resulted in intragenomic spread of so-called endogenous retroviruses (ERVs). Variant ERVs emerged, amplified in the genome and profoundly altered genome structures and potentially functionality. Importantly, ERVs are genome modifiers of exogenous origin. The human genome contains about 8% of sequences of retroviral origin. The human ERVs (HERVs) comprise many distinct families that amplified to copy numbers of up to several thousand. We review here the evolution of several well-characterized HERV families in the human lineage since initial germ line fixation. It is apparent that endogenous retroviruses profoundly affected the genomes of species in the evolutionary lineage leading to Homo sapiens.

Animals↗

Single-nucleotide polymorphisms in the epsilon-globin gene for differentiating primate infraorders.

Molecular methods are being used to enforce wildlife conservation laws by identifying the species or the geographic origin of an unknown sample. However, the promising use of single-nucleotide polymorphisms (SNPs) in this field is still widely unexplored. In the present work, we have developed a reliable and easy method based on single-base extension technology for the scoring of 3 SNPs in the epsilon-globin gene that successfully identifies the primate infraorder a sample belongs to. Since primates are of high conservation concern and different infraorders are distributed in specific parts of the world, this method will serve for an initial potentially automated screening of the taxonomy and geographic origin of an unknown primate sample arriving at customs.

Animals↗

Scapular position in primates.

Scapular position affects shoulder mobility, which plays an important role in the upper limb adaptations in primates. However, currently available data on scapular position are unsatisfactory because of the failure to simultaneously consider the relative dimensions of all the three skeletal elements of the shoulder girdle, i.e. the clavicle, the scapula and the thorax. In the present study, the clavicular length and the scapular spine length were measured on preserved cadavers, and the dorsoventral thoracic diameter was measured on scaled radiographs of a wide range of primates, permitting a quantitative comparison of scapular position among primates. It was found that arboreal monkeys have a more dorsally situated scapula than terrestrial ones, but the same difference was not found between terrestrial and arboreal prosimians. Hominoids were found to have the most dorsally situated scapula. Contrary to the slow climbing theory of hominoid evolution, which tries to explain most postcranial specializations of hominoids as adaptations for slow climbing, the scapulae of slow-climbing lorines and Alouatta are much less dorsal than those of the hominoids.

Adaptation, Physiological↗

Primate quadrupedalism: how and why does it differ from that of typical quadrupeds?

Primate quadrupedalism has been reported to differ from that of typical mammals in a variety of features, the most discussed of which is footfall patterns. All prior explanations for this disparity have been based on morphological differences between primates and nonprimates. This paper questions the adequacy of the current and generally accepted explanation for these locomotor differences, which is based upon hypothesized differences in the location of the center of gravity. Additionally, it is suggested here that neurological factors rather than morphological ones primarily explain the unique attributes of primate quadrupedalism.

Animals↗

Mammalian sex-chromosome evolution: a conserved homoeologous segment on the X and Y chromosomes in primates.

In a representative sample of primate species, including simians (Catarrhini and Platyrrhini) and prosimians (Lemuriformes and Lorisiformes), high-resolution, early replication banding revealed a homoeologous early replicating segment at the ends of both sex chromosomes. The DXYZ2 element, a repeated sequence specific for the human pseudoautosomal region, is conserved in the genomes of all primate species studies and is specifically localized in the distal early replicating segments of the X and Y chromosomes. Thus, cytogenetic and molecular evidence is presented of a highly conserved sex-chromosomal segment in primates. The pseudoautosomal behavior of this segment is discussed.

Animals↗

Size and positioning of the teeth and infratemporal fossa relative to taxonomic and dietary variation in primates.

The infratemporal fossa grows allomorphically in primates at a faster rate than general cranial and inferred body size. The coefficient of allometry approximates 1.5 across most primate groups, suggesting direct scaling of the muscsulus temporalis cross-sectional area to body mass. This coefficient is larger than 1.5 in Lorisoidea and Ceboidea. Mediolateral relative growth of the infratemporal passage that accommodates m. temporalis rather than antero-posterior growth absorbs a disproportionate amount of this expansion. Likewise, infratemporal fossa breath is positively allometric to tooth size, especially in insectivorous, frugivorous and folivorous primate samples that are homogeneous with respect tok diet. The seemingly growth-related positive relations between tooth size and distal placement of the zygomatic root that is consistent over the cumulative sample is erased by controlling for diet. Increased relative amounts of m. temporalis per unit of dental occlusal area is indicated in larger-bodied forms; increasing crown height may be a mechanism to adjust for this.

Animals↗

The sesamoid bone of musculus abductor pollicis longus (os radiale externum or prepollex) in primates.

The sesamoid bone of the musculus abductor pollicis longus has been investigated in a series of 276 nonhuman primates representative of 37 genera, and in a series of 300 radiographs of human subjects. The presence of this ossicle in primates is a primitive characteristic. It is present in all nonhuman primates, and is generally articulated with both the scaphoid and trapezium. Modifications of the general mammalian pattern exist only in Gorilla gorilla, where the sesamoid bone is observed in about half of the individuals, and in Homo, where this ossicle is normally absent.

Animals↗

The retrotransverse foramen of the human atlas vertebra. A distinctive variant within primates.

The occurrence of a retrotransverse foramen of the atlas has been investigated in a series of 409 nonhuman primates representative of 40 genera, and in a series of 500 human atlases (dried bones). In nonhuman primates, no retrotransverse foramen was found in any of the individuals studied. In humans, the retrotransverse foramen was observed in 71 cases (14.2%). It was present bilaterally in 21 cases (29.6% of the 71 foramina), and unilaterally in 50 cases (70.4%). The foramen was present in 44 cases on the right side, and 48 on the left side. The character was noted as present only if it was complete; partial forms were not recorded. Various aspects of the retrotransverse foramen were observed. The present observations suggest that the retrotransverse foramen is a uniquely derived trait (autapomorphy) within primates which is restricted to some individuals in Homo sapiens. Appearance of this foramen in human evolution can be related to the acquisition of the erect posture and bipedal locomotion, and consecutive modifications of the regional venous circulation.

Animals↗

Where to draw the nonprimate-primate taxonomic boundary.

The known Cretaceous and Paleocene primates, the Paromomyiformes, although lacking a fully developed postorbital bar, are nevertheless, both cladistically and phenetically, closest to the common ancestor of the living primates. Not only their undisputed phylogenetic ties but also their early experiments inthe arboreal milieu necessitate their balanced evolutionary classification within the order Primates.

Adaptation, Biological↗

Locomotor adaptations as reflected on the humerus of paleogene primates.

Examination of Paleogene distal humeri and a survey of homologous articulations in living primates allows some anatomical correlation with elbow mechanics and the occurrence of these during specific locomotor behaviors in living species. Claw climbing is postulated to be the ancestral primate locomotor mode from which the ancestral euprimate (strepsirhines and haplorhines) evolved a grasp leaping locomotor pattern. This pattern, which depends on a powerful grasp either during climbing or when landing after a jump, is still the most pervasive form of primate locomotion. Morphological evidence of Paleogene humeri suggest that vertical clinging and leaping behavior derived from grasp leaping at least six times independently.

Adaptation, Biological↗