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Cortical orofacial motor representation in Old World monkeys, great apes, and humans. II. Stereologic analysis of chemoarchitecture.

This study presents a comparative stereologic investigation of neurofilament protein- and calcium-binding protein-immunoreactive neurons within the region of orofacial representation of primary motor cortex (Brodmann's area 4) in several catarrhine primate species (Macaca fascicularis, Papio anubis, Pongo pygmaeus, Gorilla gorilla, Pan troglodytes, and Homo sapiens). Results showed that the density of interneurons involved in vertical interlaminar processing (i.e., calbindin- and calretinin-immunoreactive neurons) as well pyramidal neurons that supply heavily-myelinated projections (i.e., neurofilament protein-immunoreactive neurons) are correlated with overall neuronal density, whereas interneurons making transcolumnar connections (i.e., parvalbumin-immunoreactive neurons) do not exhibit such a relationship. These results suggest that differential scaling rules apply to different neuronal subtypes depending on their functional role in cortical circuitry. For example, cortical columns across catarrhine species appear to involve a similar conserved network of intracolumnar inhibitory interconnections, as represented by the distribution of calbindin- and calretinin-immunoreactive neurons. The subpopulation of horizontally-oriented wide-arbor interneurons, on the other hand, increases in density relative to other interneuron subpopulations in large brains. Due to these scaling trends, the region of orofacial representation of primary motor cortex in great apes and humans is characterized by a greater proportion of neurons enriched in neurofilament protein and parvalbumin compared to the Old World monkeys examined. These modifications might contribute to the voluntary dexterous control of orofacial muscles in great ape and human communication.

Animal Communication↗

Nucleotide sequence comparison of a chromosome rearrangement on human chromosome 12 and the corresponding ape chromosomes.

Chromosome rearrangement has been considered to be important in the evolutionary process. Here, we demonstrate the evolutionary relationship of the rearranged human chromosome 12 and the corresponding chromosome XII in apes (chimpanzee, bonobo, gorilla, orangutan, and gibbon) by examining PCR products derived from the breakpoints of inversions and by conducting shotgun sequencing of a gorilla fosmid clone containing the breakpoint and a "duplicated segment" (duplicon). We confirmed that a pair of 23-kb duplicons flank the breakpoints of inversions on the long and short arms of chimpanzee chromosome XII. Although only the 23-kb duplicon on the long arm of chimpanzee chromosome XII and its telomeric flanking sequence are found to be conserved among the hominoids (human, great apes, and gibbons), the duplicon on the short arm of chimpanzee chromosome XII is suggested to be the result of a duplication from that on the long arm. Furthermore, the shotgun sequencing of a gorilla fosmid indicated that the breakpoint on the long arm of the gorilla is located at a different position 1.9 kb from that of chimpanzee. The region is flanked by a sequence homologous to that of human chromosome 6q22. Our findings and sequence analysis suggest a close relationship between segmental duplication and chromosome rearrangement (or breakpoint of inversion) in Hominoidea. The role of the chromosome rearrangement in speciation is also discussed based on our new results.

Animals↗

A universal microsatellite multiplex kit for genetic analysis of great apes.

DNA profiling with microsatellite markers is a commonly used genetic method of studying the great apes. An efficient method of generating the genetic data is amplification of multiple microsatellites in a single PCR reaction. Here we describe a PCR multiplex in which 9 genetic markers can be amplified simultaneously, thereby saving time, expenses and DNA. This marker system can discriminate between all the great ape species except bonobos and chimpanzees. Furthermore, the cumulative probability of identity values were low for all 4 species tested.

Animals↗

An evolutionary conserved early replicating segment on the sex chromosomes of man and the great apes.

Replication studies on prometaphase chromosomes of man, the chimpanzee, the pygmy chimpanzee, the gorilla, and the orangutan reveal great interspecific homologies between the autosomes. The early replicating X chromosomes clearly show a high degree of conservation of both the pattern and the time course of replication. An early replicating segment on the short arm of the X chromosomes of man (Xp22.3) which escapes inactivation can be found on the X chromosomes of the great apes as well. Furthermore, the most early replicating segment on the Y chromosomes of all species tested appears to be homologous to this segment on the X chromosomes. Therefore, these early replicating segments in the great apes may correspond to the pseudoautosomal segment proposed to exist in man. From further cytogenetic characterization of the Y chromosomes it is evident that structural alterations have resulted in an extreme divergence in both the euchromatic and heterochromatic parts. It is assumed, therefore, that, in contrast to the X chromosomes, the Y chromosomes have undergone a rapid evolution within the higher primates.

Animals↗

Chromosomal painting shows that "marked chromosomes" in lesser apes and Old World monkeys are not homologous and evolved by convergence.

Cytogeneticists have long held that the single pair of metacentric, NOR-bearing "marked chromosomes" in lesser apes (Hylobatidae) and Old World monkeys (Cercopithecidae) are homologous. Hylobatids have sometimes been excluded from Hominoidea (great apes and humans) and phylogenetically allied with the lower primates, primarily on the basis of this shared "trait." However, in situ hybridization of human chromosome-specific DNA probes to chromosomes of Hylobates lar, H. syndactylus, H. concolor, Cercopithecus aethiops, Macaca fuscata, Colobus guereza, and Presbytis cristata showed that the so-called "marked chromosomes" in Hylobatidae and Cercopithecidae evolved by convergence. Therefore, "marked chromosomes" cannot be used to exclude gibbons from Hominoidea or to link Hylobatidae with monkeys. Chromosomal painting is a powerful tool to resolve problems of chromosomal homology and helps eliminate phylogenetic errors due to confusing convergence with homology. Chromosomal painting improves the confidence in using cytogenetic data for evolutionary studies, especially in phylogeny and taxonomy.

Animals↗

Blood groups of Barbary apes (Macaca sylvanus).

32 Barbary macaques were all found to be secretors of the A and H blood group substances and to have an M-like agglutinogen on their red cells. Hemagglutination tests for other human-type red cell specificities were negative. In contrast, several so-called simian-type specificities were detected on the erythrocytes of Barbary apes by means of the cross-reacting rhesus and baboon antisera. Among these, only the specificities of the graded Drh blood group system were found to be polymorphic in this species of macaques. Blood groups of Barbary apes are compared with those of several other species of macaques and some taxonomic aspects of blood grouping tests are discussed.

Animals↗

Activity patterns in a captive group of Celebes black apes (Macaca nigra).

Both time of day and weather significantly influenced the behavioral activity profile of a captive group of Celebes black apes. There were significant differences when their activity profile was compared to those of stumptail macaques, pigtail macaques, sooty mangabeys and geladas observed under similar conditions. There were, nonetheless several remarkable consistencies, especially among taxonomically related forms. Significant sex differences were also noted for grooming, social interaction rates, self-directed activity, agonistic and sexual behavior. Scores were consistent with data on a second group of black apes and previously reported unusual behavioral categories were confirmed.

Activity Cycles↗

Ontogeny of the knee joint in humans, great apes and fossil hominids: pelvi-femoral relationships during postnatal growth in humans.

Results of a study of the femoral bicondylar angle in adult and juvenile humans and great apes are presented. These results raise the question of whether or not the measurement reference of this angle is valid. This is because humans and great apes have a very different growth process of the distal epiphyseal suture of the femur during the period between birth and adulthood. The approximately 3 million years old juvenile femoral diaphyses attributed to Australopithecus afarensis (AL 333-110 and AL 333-111) were also studied. These specimens show an insertion of the diaphysis into the epiphysis of the simplified type typical of modern humans. This region is more convoluted in nonhuman anthropoids. Pelvifemoral interrelations are investigated through both longitudinal and cross-sectional radiographic studies of 23 human children. Growth changes in bicondylar and collo-diaphyseal angles, total femoral and femoral neck lengths, and interacetabular distance are correlated with age and to each other. These results are used to demonstrate the distinctive features of the Australopithecus afarensis fossil, AL 288-1.

Adult↗

Molar size sequence in the great apes: gorilla, orangutan, and chimpanzee.

In ape dentitions the common molar size sequence is assumed to be MC greater than M2 greater than M1. This sequence is held in contrast to the assumed human sequence, M1 greater than M2 greater than M3. Using mesiodistal, buccolingual, and cross-sectional area dimensions, this study indicates that the molar size progression in all three great ape species varies extensively from the assumed sequence.

Animals↗

Wetlands or aquatic ape? Availability of food resources.

A human evolutionary scenario including an ape inhabiting marine wetlands is rational in a number of contexts. The concept is viable ecologically due to the availability of abundant animal foods in a variety of habitats ranging from mangrove forests to coral reefs. The food resources include mollusks, crustacea and fish abundant in wet zones and pools between high and low tide levels. There is seasonal abundance of swarming marsh insects, turtles, eggs and chicks of colonial birds, and occasional beached and dying marine mammals. Some of these foods would provide an enriched source of polyunsaturated essential fatty acids needed for brain development, and thus allow a spiral of increasing brain development, tool utilisation for better food gathering, and vocal communication for group action. The concept is viable also in terms of availability of the ape-human stock in the African Rift Valley, isolated from montane forests during the late Pliocene, and as an adaptive explanation for many of the species-specific human characters not found in other ground living primates.

Animals↗

Housing and care of monkeys and apes in laboratories: adaptations allowing essential species-specific behaviour.

During the last two decades an increasing amount of attention has been paid to the housing and care of monkeys and apes in laboratories, as has been done with the housing and care of other categories of captive animals. The purpose of this review is to develop recommendations for adaptations of housing and care from our knowledge of the daily behavioural activity of monkeys and apes in natural conditions and in enriched laboratory conditions. This review deals mainly with adaptations of daily housing and care with respect to behaviour, and it is restricted to commonly-used species: Callitrichidae (Callitrix jacchus, Saguinus oedipus); Cebidae (Aotus trivirgatus, Saimiri sciureus, Cebus apella); Cercopithecidae (Macaca fascicularis, M. mulatta, M. nemestrina, M. arctoides, Chlorocebus aethiops, Papio hamadryas, P. cynocephalus); Pongidae (Pan troglodytes).

Animal Husbandry↗

Clinical effects and plasma concentrations of fentanyl after transmucosal administration in three species of great ape.

Fentanyl is approved for transmucosal use in the United States as a preanesthetic agent in human pediatric patients and in adults for breakthrough cancer pain. Using this formulation in three species of great ape, including eight orangutans (Pongo pygmaeus), nine chimpanzees (Pan troglodytes), and two gorillas (Gorilla gorilla), fentanyl was offered transmucosally at an intended dose of 10-15 microg/kg based on estimated body weight. The animals were trained to accept and suck slowly on a piece of placebo candy, given as a treat, after an overnight fast. On the day of the study, the animals were given the lollipop formulation of fentanyl. The resulting plasma concentrations of fentanyl supported transmucosal absorption, similar to that reported in humans. This study provides an alternative sedative regimen and yielded half-life data of transmucosal fentanyl in great apes. Although transmucosal fentanyl was a useful adjunct for sedating orangutans and gorillas, its acceptance by chimpanzees before chemical immobilization was suboptimal and unpredictable.

Adjuvants, Anesthesia↗

Kinship and affiliative behavior patterns in a captive group of Celebes black apes (Macaca nigra).

The influence of matrilineal kinship on four socially affiliative behavior patterns--grooming, contact, proximity, and play--was studied in a little-known primate species, the Celebes black ape (Macaca nigra). Twenty group-living black apes, comprising four genealogical groups, were observed for more than 100 hr; data were collected by the instantaneous scan technique. Animals spent more time than was expected by chance grooming, in contact with, and in proximity to their matrilineal relatives, but they did not play with relatives more than was expected. The proximal mechanisms responsible for these results are unknown, and increased familiarity among matrilineal relatives may have influenced the interaction patterns in the group. The results obtained in this study are similar to those of many others that demonstrate differential behavior toward kin, and they are consistent with the theory that animals may increase their inclusive fitness by interacting preferentially with relatives.

Animals↗

Blood groups of apes and monkeys: current status and practical applications.

Two categories of blood groups, human-type and simian-type, occur in apes and monkeys and can be routinely tested by methods established for grouping human blood. Abundant data have been obtained on blood groups of chimpanzees, baboons and macaques. Studies of populations of animals, both feral and kept in captivity, resulted in the definition of a number of erythrocyte antigens, some of which fall into separate blood group systems. Two complex chimpanzee blood group systems, V-A-B-D and R-C-E-F systems, proved to be counterparts of the human M-N-S and Rh-Hr blood group systems, respectively. Two graded blood group systems were defined in Old World monkeys: the Drh system of macaques and the Bp system of baboons, both linked by at least one specificity shared by either of the blood group systems. With established modes of inheritance, blood groups of apes and monkeys become useful chromosomal markers in genetic studies of primates as well as important tools for taxonomists. Serology of some of the blood groups suggests their practical importance in breeding of primates as well as in clinical and experimental problems calling for transfusion of blood or transplantation of organs and tissues.

Animals↗

The nerve supply to coracobrachialis in apes.

The origin of the nerve supply to coracobrachialis from the brachial plexus in apes was investigated in 4 arms from 4 chimpanzees, both arms of a gorilla and 4 arms from 4 gibbons. The general architecture of the brachial plexus was the same as in the human. In the apes examined, the nerves supplying this muscle could be classified into 2 groups: (1) distal branches arising from the musculocutaneous nerve, and (2) proximal branches arising in the region of the lateral cord. On the basis of their origin and course, the proximal branches were classified into 3 types, namely a deep ramus arising from the middle trunk and passing dorsal to the upper trunk, a medial ramus arising from the upper trunk in the lateral cord, and a superficial ramus arising from the ventral surface of the middle trunk or the root of the pectoral nerve. This classification also applies to branches to coracobrachialis in man. The 3 types of proximal branch often communicated with each other to supply coracobrachialis, whereas the proximal and distal branches were separated from each other spatially. This indicates that coracobrachialis possesses characteristics both of the pectoral girdle muscles and the flexor muscles of the upper arm.

Animals↗

Immunoglobulin Gm allotypes in apes: comparison with man.

Serum samples from 245 apes (184 Pan troglodytes, five Pan paniscus, 28 Gorilla gorilla, 23 Pongo pygmaeus abelei, and five Pongo pygmaeus pygmaeus) were tested for G1m (1,2,3,17), G2m (23), and G3m (5,6,10,11,13,14,15,16,21,24,28) immunoglobulin allotypes by the classical method of inhibition of hemagglutination. Some phenotypes are species specific while a few are shared by man and African apes.

Animals↗

[Acquisition of human bipedal gait from the viewpoint of the aquatic ape theory].

We are convinced that human bipedalism is better accounted for by the Aquatic Ape Theory than by the hypotheses, now commonly accepted, that the vertical gait is part of an adaptation for life in the savannahs. The advantages of the upright gait are easily understood by the versatility of this locomotion in a semi-aquatic mode of life. Early hominid bipedalism cannot be described as an ideal adaptation for one isolated form of locomotion, since human bipedalism covers a wide range of locomoter behaviours such as diving, swimming, wading, climbing trees and rocks, and moving on land. This locomotor versatility, however, should not be confused with theories that consider humans and their ancestors as "primitive" or "unspecialized" creatures. The pronounced swimming and diving abilities of humans--and the features that make these abilities possible--represents the most striking element of our species locomotor spectrum in comparison with highly specialized "savannah primates". On the one hand baboons and geladas are clearly better-adapted to savannah conditions than humans are, if the acquisitions of modern technology are not taken into consideration. To these adaptations belongs quadrupedalism, which is the most common and successful form of locomotion among terrestrial tetrapods. On the other hand, humans are in most respects much better swimmers and divers than nonhuman primates even without technological help. The only satisfying explanation for these different adaptations of humans and nonhuman primates is provided by the Aquatic Ape Theory. It is the only model of humans evolution that accounts for the numerous examples of convergent features between people and other vertebrates and the only model that explains these convergences in connection with a well-defined ecological niche.

Animals↗

Transduction of human hematopoietic progenitor cells with retroviral vectors based on the gibbon ape leukemia virus.

Gene transfer into human hematopoietic stem cells continues to be complicated by issues of transfer efficiency. We have examined the capacity of newly described retroviral vectors based on the gibbon ape leukemia virus (GaLV) to introduce genes into human hematopoietic progenitor cells. Total nucleated human bone marrow cells were transduced using GaLV vectors packaged with either amphotropic or GaLV envelopes. Transduction efficiency was assayed by the generation of G418-resistant colony forming units. We found that GaLV vectors could transduce both BFU-E and CFU-C hematopoietic progenitors, and that their efficiency was at least equivalent to an amphotropically packaged Moloney mouse leukemia virus (MoMLV)-based vector. Moreover, vectors derived from the GaLV-SEATO strain and bearing amphotropic envelope were best for gene transfer into BFU-E, whereas vectors derived from the GaLV-SF strain and bearing GaLV envelope transduced CFU-C at higher efficiency. Thus, GaLV-based retroviral vectors are promising new tools for gene transfer into human hematopoietic cells.

Animals↗