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Young children do not form representations of newly encountered faces as efficiently as do adults. A first step in explaining this difference, like any age-related change, is locating its source. A major source of the improvement is acquisition of knowledge of faces per se, as opposed to age-related changes in general pattern encoding or memorial skills. Two consequences of expertise at individualizing members of classes that share a basic configuration are known: a large inversion effect and a caricature advantage. It is possible that both of these effects reflect increased reliance, with expertise, on configuration distinguishing features. Several phenomena that indicate that inversion interferes with the encoding of configural aspects of faces are reviewed. Finally, developmental data are presented that confirm the suspicion that there are at least two distinct sources of the vulnerability of face encoding to inversion, perhaps reflecting two distinct senses of 'configural encoding' of faces, only one of which is implicated in adult expertise at face encoding.  相似文献   
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We have analyzed interactions between the mammalian TATA factor (TFIID) and derivatives of the yeast activator GAL4. The interaction of the TATA factor on the adenovirus E4 promoter with GAL4 binding sites adjacent to the TATA site was qualitatively altered in response to GAL4 binding. Alterations in the TFIID interactions were observed with two GAL4 derivatives that stimulated hybrid E4 promoter activity in vitro but not with a third derivative that bound to DNA but showed no activation. These results indicate that TFIID is a direct target for a GAL4 activation domain and suggest a simple general model for the activation mechanism.  相似文献   
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Benzo(a)pyrene (BP) was dissolved in dietary fat and fed in a single dose to killifish (Fundulus heteroclitus). Fluorescence microscopic examinations of small intestinal content and frozen sections of whole small intestine revealed that during fat digestion BP was codispersed in liquid crystalline product phases produced during lipolysis (1979. Patton, J. S., and M. C. Carey, Science. 204: 145-148) and then coabsorbed with dietary lipid followed by its reappearance in intracellular fat droplets. During the time that the absorbed fat remained in the enterocytes, BP fluorescence was initially concentrated in the intracellular fat droplets and then spread throughout the cytosol of the enterocytes. Tissue analyses showed that BP was rapidly metabolized in the intestine and transported to the gallbladder. These studies show that separation of a dissolved hydrophobic carcinogen from dietary fat occurs primarily after the fat has been digested, dispersed, absorbed, and reassembled in the enterocyte. The inability of the enterocyte to discriminate between dietary fat and dissolved carcinogenic compounds may be a partial explanation of the observed link between high fat diets and the incidence of some cancers. In vertebrates, the intestine and not the liver, appears to be the major site of metabolism of dietary polycyclic aromatic hydrocarbons (PAHs).  相似文献   
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Progeny of certain baboon sires accumulate lipoproteins in high density lipoprotein-1 (HDL1) when challenged with a high cholesterol, high saturated fat diet. These studies were conducted to determine the apoprotein composition and metabolic fate of HDL1 in the plasma. HDL1 particles containing apoA-I with and without apoE were detected. The majority of particles, however, contained apoA-I without any detectable apoE. To determine the metabolic fate of HDL1 in plasma, HDL1 labeled with iodinated apoA-I from animals with high levels of HDL1 and iodinated apoA-I-labeled autologous HDL were coinjected into both high and low HDL1 animals. The data for the decay of radioactivity in HDL1 and HDL were analyzed by multicompartment modelling. The radioactivity from HDL1 was cleared from the plasma either via direct removal (9.1 +/- 4.7% in low and 21.7 +/- 8.3% in high HDL1 animals) or via its conversion to HDL. A large proportion of radioactivity from HDL1 was rapidly transferred to HDL directly or metabolized via an intermediate compartment. Most of the radioactivity from apoE-poor HDL1, however, was transferred to HDL. Both high and low HDL1 animals catabolized HDL1 and HDL similarly. Low HDL1 animals transferred HDL1 radioactivity to HDL much faster. No detectable radioactivity from HDL was transferred to HDL1. Thus, HDL1 that accumulates in high HDL1 animals is mainly a precursor for HDL. Our hypothesis is that this accumulation of HDL1 is due to the slower cholesteryl ester transfer from HDL to lower density lipoproteins, thus affecting reverse cholesterol transport in high HDL1 baboons.  相似文献   
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Waardenburg syndrome type 1 is caused by mutations inPAX3.Over 50 humanPAX3mutations that lead to hearing, craniofacial, limb, and pigmentation anomalies have been identified. APAX3mutant allele, segregating in a family, can show reduced penetrance and variable expressivity that cannot be explained by the nature of the mutation alone. TheMus musculus Pax3mutationSpd(Splotch-delayed, Pax3[formula]), coisogenic on the C57BL/6J (B6) genetic background, produces in heterozygotes a white belly spot with 100% penetrance and very few other anomalies. By contrast, manySpd/+ BC1progeny [F1Spd/+ (♀Spd/+ B6× ♂ +/+Mus spretus) × ♂ +/+ B6] exhibit highly variable craniofacial and pigmentary anomalies. Of the BC1Spd/+ progeny, 23.9% are estimated to be nonviable, and 32.1% are nonpenetrant for the white belly spot. The penetrance and expressivity of theSpd/+ genotype are controlled in part by the genetic background and the sex of the individual. A minimum of two genes interact withSpdto influence the craniofacial features of these mice. One of these genes may be either X-linked or sex-influenced, while the other is autosomal. TheA-locus (Agouti) or a gene closely linked toAalso plays a role in determining craniofacial features. At least one additional gene, possibly theA-locus or a gene linked toA,interacts withSpdand determines the presence and size of the white belly spot. The viability of BC1mice is influenced by at least three factors:Spd,A-locus alleles or a gene closely linked to theA-locus, and the sex of the mouse. These BC1mice provide an opportunity to identify genes that interact with and modify the expression ofPax3and serve as a model to identify the genes that modify the expression of humanPAX3mutations.  相似文献   
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Beech bark disease (BBD) results in high levels of initial mortality, leaving behind survivor trees that are greatly weakened and deformed. The disease is initiated by feeding activities of the invasive beech scale insect, Cryptococcus fagisuga, which creates entry points for infection by one of the Neonectria species of fungus. Without scale infestation, there is little opportunity for fungal infection. Using scale eggs to artificially infest healthy trees in heavily BBD impacted stands demonstrated that these trees were resistant to the scale insect portion of the disease complex1. Here we present a protocol that we have developed, based on the artificial infestation technique by Houston2, which can be used to screen for scale-resistant trees in the field and in smaller potted seedlings and grafts. The identification of scale-resistant trees is an important component of management of BBD through tree improvement programs and silvicultural manipulation.  相似文献   
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