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151.
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153.
Positive Maternal Attitude to the Family Eating Together Decreases the Risk of Adolescent Overweight
Abdullah A. Mamun Debbie A. Lawlor Michael J. O'Callaghan Gail M. Williams Jake M. Najman 《Obesity (Silver Spring, Md.)》2005,13(8):1422-1430
Objectives: To determine whether maternal attitude towards the family regularly eating together and maternal report of how often the family eat together are associated with adolescent offspring overweight. Research Methods and Procedures: A cross‐sectional mother‐child‐linked analysis was carried out using 14‐year follow‐up data from a population‐based prospective birth cohort of 3795 children (52% males) who were participants in the Mater‐University study of pregnancy, Brisbane, Australia. Maternal reports on family eating pattern reported at age 14 were used. Results: The prevalence of overweight at age 14 was 24.1% (95% confidence interval (CI), 22.3, 26.1) for males and 27.1% (CI, 25.1, 29.2) for females. The majority of mothers (78%) reported that the family ate together at least once a day, but only 43% reported that they felt that family eating together was important. The offspring of women who felt that the family eating together was not important had increased odds of being overweight at age 14 (odds ratio, 1.27; 95% CI, 1.05, 1.53) in age‐ and sex‐adjusted models. Adjustment for potential confounding factors had no substantive effect on the association. There was no association between maternal reports of how often the family actually did eat together and overweight at age 14 in the offspring. Discussion: These findings suggest that maternal attitude towards family eating patterns, but not maternal report of how often the family do eat together, are associated with childhood overweight status. Maternal attitude towards family eating (as opposed to a report of actual frequency at one time‐point) may reflect broader maternal influences (beyond family eating pattern) on their child's diet and eating patterns over a long time course. 相似文献
154.
ABSTRACT. Nosema isolates from five lepidopteran forest defoliators, Nosema fumiferanae from spruce budworm, Choristoneura fumiferana ; a Nosema sp. from jack pine budworm, Choristoneura pinus pinus and western spruce budworm, Choristoneura occidentalis ( Nosema sp. CPP and Nosema sp. CO, respectively); Nosema thomsoni from large aspen tortrix, Choristoneura conflictana ; and Nosema disstriae , from the forest tent caterpillar, Malacosoma disstria were compared based on their small subunit (SSU) ribosomal RNA (rRNA) gene sequences. Four of the species sequenced, N. fumiferanae , Nosema sp. CPP, Nosema sp. CO, and N . disstriae have a high SSU rDNA sequence identity (0.6%–1.5%) and are members of the "true Nosema " clade. They all showed the reverse arrangement of the (large subunit [LSU]–internal transcribed spacer [ITS]–SSU) of the rRNA gene. The fifth species, N. thomsoni has the usual (SSU–ITS–LSU) arrangement and is not a member of this clade showing only an 82% sequence similarity. We speculate, therefore, that a genetic reversal may have occurred in the common ancestor to the "true Nosema " clade. Although, the mechanism for rearrangement of the rRNA gene subunits is not known we provide a possible explanation for the localization. N. fumiferanae , Nosema sp. CPP, and Nosema sp. CO clustered together on the inferred phylogenetic tree. The high sequence similarities, the reverse arrangement in the rRNA gene subunits, and the phylogenetic clustering suggest that these three species are closely related but separate species. 相似文献
155.
Effects of nutrients and fish on periphyton and plant biomass across a European latitudinal gradient
Eloy Bécares Joan Gomá Margarita Fernández-Aláez Camino Fernández-Aláez Susana Romo Maria R. Miracle Anika Ståhl-Delbanco Lars-Anders Hansson Mykael Gyllström Wouter J. Van de Bund Ellen Van Donk Timo Kairesalo Jaana Hietala Debbie Stephen David Balayla Brian Moss 《Aquatic Ecology》2008,42(4):561-574
Replicated, factorial mesocosm experiments were conducted across Europe to study the effects of nutrient enrichment and fish
density on macrophytes and on periphyton chlorophyll a (chl-a) with regard to latitude. Periphyton chl-a densities and plant decline were significantly related to nutrient loading in all countries. Fish effects were significant
in a few sites only, mostly because of their contribution to the nutrient pool. A saturation-response type curve in periphyton
chl-a with nutrients was found, and northern lakes achieved higher densities than southern lakes. Nutrient concentration and phytoplankton
chl-a necessary for a 50% plant reduction followed a latitudinal gradient. Total phosphorus values for 50% plant disappearance
were similar from Sweden (0.27 mg L−1) to northern Spain (0.35 mg L−1), but with a sharp increase in southern Spain (0.9 mg L−1). Planktonic chl-a values for 50% plant reduction increased monotonically from Sweden (30 μg L−1) to València (150 μg L−1). Longer plant growing-season, higher light intensities and temperature, and strong water-level fluctuations characteristic
of southern latitudes can lead to greater persistence of macrophyte biomass at higher turbidities and nutrient concentration
than in northern lakes. Results support the evidence that latitudinal differences in the functioning of shallow lakes should
be considered in lake management and conservation policies. 相似文献
156.
Spatial and temporal compartmentalization of cAMP (and its target proteins) is central to the ability of this second messenger to govern cellular activity over timescales ranging from milliseconds to several hours. Recent years have witnessed a burgeoning of methodologies that enable researchers to directly monitor rapid subcellular cAMP dynamics, which are unobtainable by traditional cAMP assays. In this review, we examine cAMP biosensors that are currently available for measuring cAMP at the single-cell level, compare their various operating principles and discuss their applications. 相似文献
157.
Goraya TA Masada N Ciruela A Willoughby D Clynes MA Cooper DM 《Cellular signalling》2008,20(2):359-374
Multiply regulated adenylyl cyclases (AC) and phosphodiesterases (PDE) can yield complex intracellular cAMP signals. Ca2+-sensitive ACs have received far greater attention than the Ca2+/calmodulin-dependent PDE (PDE1) family in governing intracellular cAMP dynamics in response to changes in the cytosolic Ca2+ concentration ([Ca2+]i). Here, we have stably expressed two isoforms of PDE1, PDE1A2 and PDE1C4, in HEK-293 cells to determine whether they exert different impacts on cellular cAMP. Fractionation and imaging showed that both PDEs occurred mainly in the cytosol. However, PDE1A2 and PDE1C4 differed considerably in their ability to hydrolyze cAMP and in their susceptibility to inhibition by the non-selective PDE inhibitor, IBMX and the PDE1-selective inhibitor, MMX. PDE1A2 had an approximately 30-fold greater Km for cAMP than PDE1C4 and yet was more susceptible to inhibition by IBMX and MMX than was PDE1C4. These differences were mirrored in intact cells when thapsigargin-induced capacitative Ca2+ entry (CCE) activated the PDEs. Mirroring their kinetic properties, PDE1C4 was active at near basal cAMP levels, whereas PDE1A2 required agonist-triggered levels of cAMP, produced in response to stimulation of ACs. The effectiveness of IBMX and MMX to inhibit PDE1A2 and PDE1C4 in functional studies was inversely related to their respective affinities for cAMP. To assess the impact of the two isoforms on cAMP dynamics, real-time cAMP measurements were performed in single cells expressing the two PDE isoforms and a fluorescent Epac-1 cAMP biosensor, in response to CCE. These measurements showed that prostaglandin E1-mediated cAMP production was markedly attenuated in PDE1C4-expressing cells upon induction of CCE and cAMP hydrolysis occurred at a faster rate than in cells expressing PDE1A2 under similar conditions. These results prove that the kinetic properties of PDE isoforms play a major role in determining intracellular cAMP signals in response to physiological elevation of [Ca2+]i and thereby provide a rationale for the utility of diverse PDE1 species. 相似文献
158.
Rodgers Mark Flanigan Debbie Pfaller Stacy Jakubowski Walter Kinkle Brian 《World journal of microbiology & biotechnology》2003,19(7):703-709
We have isolated from a Kentucky stream a bacterial strain capable of killing the cyst form of Giardia lamblia. This bacterium, designated Sun4, is a Gram-negative, aerobic rod which produces a yellow pigment, but not of the flexirubin-type. Although true gliding motility has not been observed in Sun4, this strain does exhibit a spreading colony morphology when grown on R2A agar. Strain Sun4 has been identified by 16S rRNA sequencing and phylogenetic analysis as belonging to the genus Flavobacterium, and is most closely related to Cytophaga sp. strain Type 0092 and associated Flavobacterium columnare strains. Lipid analysis also identified fatty acids characteristic of the Cytophaga–Flavobacterium group of bacteria. In culture, Sun4 is able to degrade casein and cellulose, but not chitin, gelatin, starch, or agar. Degradation of Giardia cysts by Sun4 appears to require direct cellular contact as neither cell-free extracts nor cells separated from the cysts by dialysis membranes showed any activity against cysts. Activity against Giardia cysts is rapid, with Sun4 killing over 90% of cysts within 48 h. Strain Sun4 requires elevated levels of Ca2+ for optimal growth and degradative activity against Giardia cysts. We propose that bacterial strains such as Sun4 could be used as biological control agents against Giardia cysts in drinking water treatment systems. 相似文献
159.
Debbie Mellor 《BMJ (Clinical research ed.)》2003,327(7420):928
160.
Disentangling the impact of AM fungi versus roots on soil structure and water transport 总被引:9,自引:0,他引:9
Paul D. Hallett Debbie S. Feeney A. Glyn Bengough Matthias C. Rillig Charlie M. Scrimgeour Iain M. Young 《Plant and Soil》2009,314(1-2):183-196
The relative importance of roots and AM-fungi on soil physical processes was investigated by controlling the presence of roots and AM fungi in pot experiments using a mycorrhiza-defective tomato mutant and a wild-type tomato (Solanum lycopersicum L.). Root-Zone and Bulk Soil sections were established by splitting pots into two lengthwise halves using a nylon mesh that contained roots whilst allowing the free movement of fungal hyphae. Post-incubation microbial populations and fungal biomass were measured and related to soil stability, pore structure and water repellency. Unplanted controls consistently had the least fungal biomass, fatty acids, water-stable aggregates (WSA) and water repellency. Wild-type-planted treatments had significantly more WSA than mycorrhiza-defective treatments (P?<?0.01). Fluctuations in water content induced by transpiration caused significant changes in soil pore structure, measured using high-resolution X-Ray computer tomography. Porosity and mean pore size increased in soil aggregates from planted treatments, which had larger more heterogeneous pores than those in the unplanted soils. AM fungi accentuated soil stability. However, changes were not linked to repellency and fungal biomass. The presence of plants, regardless of AM fungi, appears to have the greatest impact on increasing soil stability. 相似文献