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71.
Mitochondrial Inheritance Is Delayed in Saccharomyces cerevisiae Cells Lacking the Serine/Threonine Phosphatase PTC1 总被引:2,自引:0,他引:2
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Amy D. Roeder Greg J. Hermann Brian R. Keegan Stephanie A. Thatcher Janet M. Shaw 《Molecular biology of the cell》1998,9(4):917-930
In wild-type yeast mitochondrial inheritance occurs early in the cell cycle concomitant with bud emergence. Cells lacking the PTC1 gene initially produce buds without a mitochondrial compartment; however, these buds later receive part of the mitochondrial network from the mother cell. Thus, the loss of PTC1 causes a delay, but not a complete block, in mitochondrial transport. PTC1 encodes a serine/threonine phosphatase in the high-osmolarity glycerol response (HOG) pathway. The mitochondrial inheritance delay in the ptc1 mutant is not attributable to changes in intracellular glycerol concentrations or defects in the organization of the actin cytoskeleton. Moreover, epistasis experiments with ptc1Δ and mutations in HOG pathway kinases reveal that PTC1 is not acting through the HOG pathway to control the timing of mitochondrial inheritance. Instead, PTC1 may be acting either directly or through a different signaling pathway to affect the mitochondrial transport machinery in the cell. These studies indicate that the timing of mitochondrial transport in wild-type cells is genetically controlled and provide new evidence that mitochondrial inheritance does not depend on a physical link between the mitochondrial network and the incipient bud site. 相似文献
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The natural habitats of microbes are typically spatially structured with limited resources, so opportunities for unconstrained, balanced growth are rare. In these habitats, selection should favor microbes that are able to use resources most efficiently, that is, microbes that produce the most progeny per unit of resource consumed. On the basis of this assertion, we propose that selection for efficiency is a primary driver of the composition of microbial communities. In this article, we review how the quality and quantity of resources influence the efficiency of heterotrophic growth. A conceptual model proposing innate differences in growth efficiency between oligotrophic and copiotrophic microbes is also provided. We conclude that elucidation of the mechanisms underlying efficient growth will enhance our understanding of the selective pressures shaping microbes and will improve our capacity to manage microbial communities effectively. 相似文献
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NIKOS T. PAPADOPOULOS JAMES R. CAREY PABLO LIEDO HANS‐GEORG MÜLLER DAMLA SENTÜRK 《Physiological Entomology》2009,34(3):238-245
Abstract. Aggressive behaviour occurring in intrasexual competition is an important trait for animal fitness. Although female intrasexual aggression is reported in several insect species, little is known about female competition and aggressive interactions in polygynous male lekking species. The interactions of female Mediterranean fruit flies, Ceratitis capitata (a male lekking species), with other females and mating pairs under laboratory conditions are investigated. Mature, unmated (virgin) females are aggressive against each other and against mating pairs, whereas immature females are not. Female aggression against other females decreases dramatically after mating; however, mated females maintain aggression against mating pairs. In addition, higher intrasexual aggression rates are observed for mature, virgin females than for virgin males of the same age. The results show that female aggressiveness is virginity related, suggesting female competition for mates. These findings have important implications for understanding the physiological aspects of a complex social behaviour such as aggression and should stimulate further research on female agonistic behaviour in male lekking mating systems. 相似文献
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Samples consisting of a mix of unrelated cases and controls, small pedigrees, and much larger pedigrees present a unique challenge
for association studies. Few methods are available for efficient analysis of such a broad spectrum of data structures. In
this paper we introduce a new matching statistic that is well suited to complex data structures and compare it with frequency-based
methods available in the literature. To investigate and compare the power of these methods we simulate datasets based on complex
pedigrees. We examine the influence of various levels of linkage disequilibrium (LD) of the disease allele with a marker allele
(or equivalently a haplotype). For low frequency marker alleles/haplotypes, frequency-based statistics are more powerful in
detecting association. In contrast, for high frequency marker alleles, the matching statistic has greater power. The highest
power for frequency-based statistics occurs when the disease allele frequency closely matches the frequency of the linked
marker allele. In contrast maximum power of the matching statistic always occurs for intermediate marker allele frequency
regardless of the disease allele frequency. Moreover, the matching and frequency-based statistics exhibit little correlation.
We conclude that these two approaches can be viewed as complementary in finding possible association between a disease and
a marker for many different situations. 相似文献
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Neuman Josh Roeder Nicole Richardson Brittany Quattrin Teresa Hamilton John Thanos Panayotis K. 《Neurochemical research》2022,47(10):3003-3011
Neurochemical Research - Dopamine is an important neuromodulator in the brain that binds to dopamine D1-like receptors (D1, D5) as well as dopamine D2-like receptors (D2, D3, D4). The D2 receptor... 相似文献
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