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951.
952.
The induction of microphthalmia, encephalocele, and other head defects following hyperthermia during the gastrulation process in the rat 总被引:1,自引:0,他引:1
The aim of this study was to ascertain whether there is a period during early embryonic development of the rat that is particularly sensitive to hyperthermia. Pregnant Sprague-Dawley rats were partially immersed in a water bath at 43.5 degrees C until their core temperatures, monitored by a rectal thermistor probe, were elevated to 43.5 degrees C. The procedure was repeated 6 hours later. The regimen of two heatings was performed over a range of development from early gastrulation (8 days 18 hours) to about the 12 somite stage (10 days 18 hours). The rats were killed on days 17-19 and the fetuses were examined. Each group contained a minimum of five litters. The main teratogenic effect of the hyperthermia was the induction of one or more head defects, notably microphthalmia, encephalocele (either a single, large, parietal encephalocele or multiple small protuberances), and maxillary hypoplasia. Microphthalmia was the most common defect with approximately 90% of surviving fetuses having small eyes when heating occurred between 9 days 6 hours and 10 days 0 hours (9.06 and 10.00). Encephaloceles were induced by heating between 9.00 and 10.00 with a peak sensitivity between 9.12 and 9.18 when 57% of surviving fetuses were affected. Maxillary hypoplasia resulted from heating between 9.06 and 10.06 with up to 20% of surviving fetuses being affected. Control rats were exposed to the same experimental procedure in a water bath at 38 degrees C on 9.12 and 9.18, the gestational time most sensitive to hyperthermia induced malformations. There were no abnormal fetuses in the controls. The critical period identified spans 9 days 6 hours to 10 days 0 hours gestational age. In developmental terms this includes a large proportion of the gastrulation process. 相似文献
953.
Bovine females produce an estrous pheromone(s). Because onlyother cattle are reliable detectors of the pheromone(s), weevaluated various body fluids (cervico-vaginal mucus, serumand vulval skin gland secretion) with a bull behavioral assayin the absence of a female. It specified 15 behaviors involvingattraction to the body fluids, detection of the stimulus, andsubseqeunt sexual preparation responses. These behaviors werestereotypical and occurred in a specific sequence. We discoveredthat serum (1015 ml) taken at estrus was behaviorallypositive, as well as vulval skin glands secretion (<1 mlon a swab, dissolved in 5 ml distilled water). We postulatethat vulval skin glands may be a specialized site for the productionor concentration of the pheromone or that the blood transportsthe pheromone(s) either from vulval skin glands or another source. 相似文献
954.
Fan Zhang Jessica L. Weckhorst Adrien Assié Ciara Hosea Christopher A. Ayoub Anastasia S. Khodakova Mario Loeza Cabrera Daniela Vidal Vilchis Marie-Anne Félix Buck S. Samuel 《Current biology : CB》2021,31(12):2603-2618.e9
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956.
Germain Nicolas Herwegh Stéphanie Hatzfeld Anne-Sophie Bocket Laurence Prévost Brigitte Danzé Pierre-Marie Marchetti Philippe 《Cell and tissue banking》2021,22(3):511-518
Cell and Tissue Banking - Background The COVID-19 pandemic has altered organ and tissue donations as well as transplantation practices. SARS-CoV-2 serological tests could help in the selection of... 相似文献
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958.
Anhydrobiosis and Freezing-Tolerance: Adaptations That Facilitate the Establishment of Panagrolaimus Nematodes in Polar Habitats 总被引:1,自引:0,他引:1
Lorraine M. McGill Adam J. Shannon Davide Pisani Marie-Anne Félix Hans Raml?v Ilona Dix David A. Wharton Ann M. Burnell 《PloS one》2015,10(3)
Anhydrobiotic animals can survive the loss of both free and bound water from their cells. While in this state they are also resistant to freezing. This physiology adapts anhydrobiotes to harsh environments and it aids their dispersal. Panagrolaimus davidi, a bacterial feeding anhydrobiotic nematode isolated from Ross Island Antarctica, can survive intracellular ice formation when fully hydrated. A capacity to survive freezing while fully hydrated has also been observed in some other Antarctic nematodes. We experimentally determined the anhydrobiotic and freezing-tolerance phenotypes of 24 Panagrolaimus strains from tropical, temperate, continental and polar habitats and we analysed their phylogenetic relationships. We found that several other Panagrolaimus isolates can also survive freezing when fully hydrated and that tissue extracts from these freezing-tolerant nematodes can inhibit the growth of ice crystals. We show that P. davidi belongs to a clade of anhydrobiotic and freezing-tolerant panagrolaimids containing strains from temperate and continental regions and that P. superbus, an early colonizer at Surtsey island, Iceland after its volcanic formation, is closely related to a species from Pennsylvania, USA. Ancestral state reconstructions show that anhydrobiosis evolved deep in the phylogeny of Panagrolaimus. The early-diverging Panagrolaimus lineages are strongly anhydrobiotic but weakly freezing-tolerant, suggesting that freezing tolerance is most likely a derived trait. The common ancestors of the davidi and the superbus clades were anhydrobiotic and also possessed robust freezing tolerance, along with a capacity to inhibit the growth and recrystallization of ice crystals. Unlike other endemic Antarctic nematodes, the life history traits of P. davidi do not show evidence of an evolved response to polar conditions. Thus we suggest that the colonization of Antarctica by P. davidi and of Surtsey by P. superbus may be examples of recent “ecological fitting” of freezing-tolerant anhydrobiotic propagules to the respective abiotic conditions in Ross Island and Surtsey. 相似文献
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960.