Search Results - "Payne, T L"
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1
Fluorosis: A New Model and New Insights
Published in Journal of dental research (01-09-2005)“…Fluoride is an effective agent for the prevention of dental caries. However, the mechanism of how excessive fluoride exposure causes fluorosis remains…”
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2
Identification of Candida albicans ALS2 and ALS4 and localization of als proteins to the fungal cell surface
Published in Journal of bacteriology (01-10-1998)“…Additional genes in the growing ALS family of Candida albicans were isolated by PCR screening of a genomic fosmid library with primers designed from the…”
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3
Alk8 is required for neural crest cell formation and development of pharyngeal arch cartilages
Published in Developmental dynamics (01-12-2003)“…The type I TGFβ family member receptor alk8 acts in bone morphogenetic protein (BMP) signaling pathways to establish dorsoventral patterning in the early…”
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4
Regulation of Tooth Development by the Novel Type I TGFβ Family Member Receptor Alk8
Published in Journal of dental research (01-11-2001)“…We have recently identified, in zebrafish, a novel type I receptor of the TGFβ family, alk8, that participates in Bmp signaling pathways to mediate early…”
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5
Alternative splicing, phylogenetic analysis, and craniofacial expression of zebrafish tbx22
Published in Developmental dynamics (01-06-2009)“…Mutations in human TBX22 cause X‐linked cleft palate with ankyloglossia syndrome (CPX; OMIM 303400). Since the secondary palate was an adaptation to breathing…”
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6
Olfactory receptor cell responses of Ips grandicollis (Eichhoff) (Coleoptera: Scolytidae) to intra- and interspecific behavioral chemicals
Published in Journal of chemical ecology (01-04-1993)“…Electrophysiological recordings from antennal olfactory receptor cells were obtained from Ips grandicollis . Recordings were made from olfactory receptor cells…”
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7
Candida albicans ALS3 and insights into the nature of the ALS gene family
Published in Current genetics (01-06-1998)“…The ALS1 (agglutinin-like sequence) gene of Candida albicans encodes a protein similar to alpha-agglutinin, a cell-surface adhesion glycoprotein of…”
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8
Green leaf volatiles interrupt aggregation pheromone response in bark beetles infesting southern pines
Published in Experientia (01-05-1992)Get full text
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9
Olfactory receptor cell responses ofIps grandicollis (eichhoff) (Coleoptera: Scolytidae) to intra- and interspecific behavioral chemicals
Published in Journal of chemical ecology (01-04-1993)“…Electrophysiological recordings from antennal olfactory receptor cells were obtained fromIps grandicollis. Recordings were made from olfactory receptor cells…”
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10
Electroantennogram responses of the southern pine beetle parasitoid Dinotiscus dendroctoni (Ashmead) (Hymenoptera: Pteromalidae) to potential semiochemicals
Published in Journal of chemical ecology (01-12-1991)“…In two studies using the electroantennogram (EAG) technique, bark beetle- and tree-produced semiochemicals were presented to Dinotiscus dendroctoni (Ashmead),…”
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11
Antennal olfactory responses of black turpentine beetle, Dendroctonus terebrans (Olivier), to bark beetle pheromones and host terpenes
Published in Journal of chemical ecology (01-04-1990)“…Electroantennograms (EAGs) were recorded from male and female black turpentine beetles, Dendroctonus terebrans (Olivier), exposed to bark beetle pheromones and…”
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12
Insect predator-prey coevolution via enantiomeric specificity in a kairomone-pheromone system [Dendroctonus frontalis, Thanasimus dubius, southern pine beetle]
Published in Journal of chemical ecology (01-03-1984)“…Insect predators can be guided to their prey by a kairomonal response to the prey pheromone. We found this phenomenon to be highly specific in the bark beetle…”
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13
Multiple acceptors for pheromonal enantiomers on single olfactory cells in the Douglas-fir beetle, Dendroctonus pseudotsugae Hopk. (Coleoptera: Scolytidae)
Published in Journal of chemical ecology (01-10-1985)“…Olfactory perception of pheromonal enantiomers by male and female Douglas-fir beetles,Dendroctonus pseudotsugae Hopk. (Coleoptera: Scolytidae), was…”
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14
Zebrafish Wnt9a,9b paralog comparisons suggest ancestral roles for Wnt9 in neural, oral–pharyngeal ectoderm and mesendoderm
Published in Gene Expression Patterns (01-09-2010)“…The Wnts are a highly conserved family of secreted glycoproteins involved in cell–cell signaling and pattern formation during early embryonic development…”
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15
Functional characterization and genetic mapping of alk8
Published in Mechanisms of development (01-02-2001)“…The novel type I TGFbeta family member receptor alk8 is expressed both maternally and zygotically. Functional characterization of alk8 was performed using…”
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16
Southern pine beetle: olfactory receptor and behavior discrimination of enantiomers of the attractant pheromone frontalin [Dendroctonus frontalis]
Published in Journal of chemical ecology (01-05-1982)“…In laboratory and field bioassays, the response ofDendroctonus frontalis was significantly greater to the mixture of (1S, 5R)-(-)-frontalin andalpha-pinene…”
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17
Collection of pheromone from atmosphere surrounding boll weevils,Anthonomus grandis
Published in Journal of chemical ecology (01-02-1989)“…An effluvial method was developed to collect the pheromone, grandlure from actively calling male boll weevils,Anthonomus grandis Boheman. The adsorbant,…”
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Single cell responses of the Douglas-fir beetle, Dendroctonus pseudotsugae Hopkins (Coleoptera:Scolytidae), to pheromones and host odors [Olfaction, behavioral physiology]
Published in Journal of chemical ecology (01-04-1984)“…Olfactory perception of pheromones and host odors byDendroctonus pseudotsugae males and females was investigated through single cell recordings. Responses of…”
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19
Pheromone and host odor-stimulated potentials in Dendroctonus
Published in Experientia (15-05-1974)Get more information
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20
Antennal olfactory responsiveness of Douglas-fir beetle, Dendroctonus pseudotsugae Hopkins (Coleoptera: Scolytidae) to pheromones and host odors
Published in Journal of chemical ecology (01-10-1983)“…Electroantennograms were obtained fromD. pseudotsugae in response to the pheromones 3-methylcyclohex-2-en-1-one (3,2-MCHone), 3-methylcyclohex-2-en-1-ol…”
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