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A Dutour P Giraud C Kowalski L Ouafik P Salers V Strbak C Oliver 《Biochemical and biophysical research communications》1987,146(1):354-360
The rapid changes in TRH levels in the rat pancreas during the neonatal period make this organ an interesting model for the study of the regulation of TRH biosynthesis. Pancreatic RNAs were isolated by the guanidinium thiocyanate method and layered onto CsCl cushion. Northern blot preparations were hybridized with 32P labeled TRH cDNA probe. Pancreatic TRH mRNA was first detected in 19-day old fetuses and reached the highest level on day 0, then decreased, being barely detectable 14 days after birth. The neonatal injection of streptozotocin induced a dramatic drop of TRH mRNA levels 24 hours later. This result suggests that the peculiar evolution of TRH level in pancreas is partly due to the evolution of the expression of the TRH gene. 相似文献
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A reverse KREBS cycle in photosynthesis: consensus at last 总被引:5,自引:0,他引:5
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The karyotypes of 100 males and 100 females, each assembled by the trypsin banding method, are examined in a study designed to investigate sex differences among autosomes. It is shown that female autosomes are consistently longer than those of the males, with respect to both the short and long arm measurements. In addition, discriminant analysis is used to distinguish between the male and female karyotypes. We find that, using autosomal measurements alone, this can be done with a high probability of success. 相似文献
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We studied the joint evolution of predator body size and prey-size preference based on dynamic energy budget theory. The predators’
demography and their functional response are based on general eco-physiological principles involving the size of both predator
and prey. While our model can account for qualitatively different predator types by adjusting parameter values, we mainly
focused on ‘true’ predators that kill their prey. The resulting model explains various empirical observations, such as the
triangular distribution of predator–prey size combinations, the island rule, and the difference in predator–prey size ratios
between filter feeders and raptorial feeders. The model also reveals key factors for the evolution of predator–prey size ratios.
Capture mechanisms turned out to have a large effect on this ratio, while prey-size availability and competition for resources
only help explain variation in predator size, not variation in predator–prey size ratio. Predation among predators is identified
as an important factor for deviations from the optimal predator–prey size ratio. 相似文献
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