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Author |
Vrba, Elisabeth S. |
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Title |
Environment and evolution: alternative causes of the temporal distribution of evolutionary events |
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Journal Article |
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Year |
1985 |
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South African Journal of Science |
Abbreviated Journal |
S Afr J Anim Sci |
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81 |
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229-236 |
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evolution, paleontology, turnover pulse |
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Equine Behaviour @ team @ |
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5463 |
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Author |
Duncan, P. |
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Title |
Time-budgets of Camargue horses III. Environmental influences |
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Journal Article |
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Year |
1985 |
Publication |
Behaviour |
Abbreviated Journal |
Behaviour |
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92 |
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188-208 |
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Equine Behaviour @ team @ |
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2283 |
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Author |
Cook, M.; Mineka, S.; Wolkenstein, B.; Laitsch, K. |
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Title |
Observational conditioning of snake fear in unrelated rhesus monkeys |
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Journal Article |
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Year |
1985 |
Publication |
Journal of abnormal psychology |
Abbreviated Journal |
J Abnorm Psychol |
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94 |
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4 |
Pages |
591-610 |
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Keywords |
Animals; *Conditioning, Classical; *Fear; Female; Macaca mulatta; Male; Snakes |
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0021-843X |
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PMID:4078162 |
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refbase @ user @ |
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707 |
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Author |
Lowenstein Jm, |
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Title |
Half- striped quagga was a plains zebra |
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Year |
1985 |
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New Scientist |
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107 |
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27 |
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from Professor Hans Klingels Equine Reference List |
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1351 |
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Author |
Miller, J.A. |
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Title |
Telling a quagga by its stripes. (extinct South African animal) |
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Journal Article |
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Year |
1985 |
Publication |
Science News |
Abbreviated Journal |
Sci. News |
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128 |
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70 |
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If, in a mix-up at a costume shop, a couple were issued the front half of a zebra suit and the back half of a horse, it could be considered a quagga disguise. But if the masqueraders were pressed as to whether they were more horse or more zebra, the latest biochemical research advises them to insist on zebra.
The quagga, a South African animal extinct for more than 100 years, has been a source of confusion among taxonomists. Some contend, on the basis of the quagga skins preserved in museums, that this front-striped animal is a zebra, either a fourth zebra species or a variant of the Plains zebra, whose hindquarter stripes are dim. But others have argued that the quagga's teeth and skeleton indicate that its nearest relative is the true horse.
Biochemists joined the fray last year when muscle tissue was obtained from a salt-preserved quagga pelt in a West German museum. The tissue yielded both proteins and genes that could be analyzed (SN:6/9/84, p. 356).
Now the analysis has yielded some results. According to “remarkably concordant” findings on the proteins and on the genes, the quagga was a subspecies of the Plains zebra, says Jerold M. Lowenstein of the University of California at San Francisco. He looked at the binding between a sample of quagga proteins and mixtures of antibodies that bind to blood-serum proteins of each of the extant Equus species. The quagga sample bound more of the antibodies against Plains zebra serum than against the other species. Lowenstein calculates that the quagga relationship with the Plains zebra is six times closer than its relationship with the two other zebra species.
“We had to use special techniques to show the difference,” Lowenstein told SCIENCE NEWS. “There is 99 percent identity on the protein level. All the [Equus] species diverged within the past 5 million years, which is only yesterday in evolutionary terms.”
The quagga-Plains zebra relationship is further supported by the analysis of quagga mitochondrial genes performed by Russell Higuchi and Allan Wilson at the University of California at Berkeley. They find seven times as great a difference between quagga and Mountain zebra DNA as they do between quagga and Plains zebra DNA.
“Stripes, the molecules tell us, do make a zebra,” Lowenstein concludes in the July 18 NEW SCIENTIST, “and the half-striped quagga was a Plains zebra.” |
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Equine Behaviour @ team @ |
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2375 |
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Author |
Terrace, H.S. |
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Title |
Animal Cognition: Thinking without Language |
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Journal Article |
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Year |
1985 |
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Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences (1934-1990) |
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Volume |
308 |
Issue |
1135 |
Pages |
113-128 |
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Recent attempts to teach apes rudimentary grammatical skills have produced negative results. The basic obstacle appears to be at the level of the individual symbol which, for apes, functions only as a demand. Evidence is lacking that apes can use symbols as names, that is, as a means of simply transmitting information. Even though non-human animals lack linguistic competence, much evidence has recently accumulated that a variety of animals can represent particular features of their environment. What then is the non-verbal nature of animal representations? This question will be discussed with reference to the following findings of studies of serial learning by pigeons. While learning to produce a particular sequence of four elements (colours), pigeons also acquire knowledge about the relation between non-adjacent elements and about the ordinal position of a particular element. Learning to produce a particular sequence also facilitates the discrimination of that sequence from other sequences. |
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refbase @ user @ |
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3522 |
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Author |
Kummer, H.; Goodall, J. |
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Title |
Conditions of Innovative Behaviour in Primates |
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Journal Article |
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Year |
1985 |
Publication |
Philosophical Transactions of the Royal Society of London. B, Biological Sciences |
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308 |
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1135 |
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203-214 |
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Innovative behaviour achieved through exploration, learning and insight heavily depends on certain motivational, social and ecological conditions of short duration. We propose that more attention should be given to what these conditions are and where they are realized in natural groups of non-human primates. Only to the extent that such favourable conditions were frequently realized in a social structure or an extraspecific environment could selective pressures act on innovative abilities. There is hope that research into field conditions of innovative behaviour will help to identify its selectors in evolution. |
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10.1098/rstb.1985.0020 |
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Equine Behaviour @ team @ |
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5751 |
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Author |
Matsuzawa, T. |
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Title |
Use of numbers by a chimpanzee |
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Journal Article |
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Year |
1985 |
Publication |
Nature |
Abbreviated Journal |
Nature |
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Volume |
315 |
Issue |
6014 |
Pages |
57-59 |
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Keywords |
Animals; Behavior, Animal/physiology; Cognition; Female; Mathematics; Pan troglodytes/*physiology |
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Abstract |
Recent studies have examined linguistic abilities in apes. However, although human mathematical abilities seem to be derived from the same foundation as those in language, we have little evidence for mathematical abilities in apes (but for exceptions see refs 7-10). In the present study, a 5-yr-old female chimpanzee (Pan troglodytes), 'Ai', was trained to use Arabic numerals to name the number of items in a display. Ai mastered numerical naming from one to six and was able to name the number, colour and object of 300 types of samples. Although no particular sequence of describing samples was required, the chimpanzee favoured two sequences (colour/object/number and object/colour/number). The present study demonstrates that the chimpanzee was able to describe the three attributes of the sample items and spontaneously organized the 'word order'. |
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0028-0836 |
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PMID:3990808 |
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Equine Behaviour @ team @ |
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2793 |
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Author |
McGonigle, B. |
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Title |
Can apes learn to count? |
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1985 |
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Nature |
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Nature |
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315 |
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6014 |
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16-17 |
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Animals; Behavior, Animal/physiology; Cognition; Pan troglodytes/*physiology |
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0028-0836 |
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PMID:3990806 |
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Equine Behaviour @ team @ |
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2794 |
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Author |
Shettleworth, S.J. |
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Title |
Foraging, memory, and constraints on learning |
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Year |
1985 |
Publication |
Annals of the New York Academy of Sciences |
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Ann N Y Acad Sci |
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443 |
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216-226 |
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Animals; Animals, Wild; *Appetitive Behavior; *Avoidance Learning; Birds; *Conditioning, Classical; Discrimination Learning; Food Preferences; *Memory; *Mental Recall; Motivation; *Predatory Behavior; Rats; *Taste |
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0077-8923 |
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PMID:3860072 |
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refbase @ user @ |
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384 |
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