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101.
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103.
Frank B. Salisbury Steven L. Kimball Bryce Bennett Peter Rosen Manfred Weidner 《Origins of life and evolution of the biosphere》1973,4(1):124-138
As a foundation for speculations in exobiology, we are attempting to understand plant responses to extreme environments on
Earth. We have emphasized active plant growth at low temperatures and in response to ultraviolet light. We have studied the
winter environment in the mountains near Logan, Utah and have found several plants that grow under the snow. We have measured
chlorophyll synthesis, carbohydrate levels, and ion balances in these plants and established field experiments with hardy
and nonhardy varieties of wheat. In the laboratory we have studied characteristics of three enzymes in two wheat varieties,
finding a number of interesting differences in response to ultraviolet and low-temperature treatments. We have also examined
cell ultrastructures of three grass species subjected to a range of temperatures. Chloroplasts were most affected at low temperatures,
but other organelles were also influenced. Studies of ion balances substantiate the suggestion from ultrastructure work that
membranes may exhibit the primary responses to low temperatures. Cytokinins are also implicated in the cold response. We are
presently emphasizing the investigation of membranes.
Lunar Science Institute Contribution. 相似文献
104.
105.
Hywel C Williams Jon Salisbury Judith Brett Anthony du Vivier 《BMJ (Clinical research ed.)》1988,296(6629):1097-1098
106.
Thirty-two first renal transplantations with cadaveric allografts were reviewed to see how many of the recipients had received blood transfusions preoperatively. There was a significant difference in transplant survival between patients who had and patients who had not received blood transfusion before transplantation; this difference was entirely due to acute rejection within three months after transplantation in patients who had not received transfusion. Other factors studied had no effect on survival. 相似文献
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108.
C Allard V Desgagné J Patenaude M Lacroix L Guillemette MC Battista M Doyon J Ménard JL Ardilouze P Perron L Bouchard MF Hivert 《Epigenetics》2015,10(4):342-351
Leptin is an adipokine that acts in the central nervous system and regulates energy balance. Animal models and human observational studies have suggested that leptin surge in the perinatal period has a critical role in programming long-term risk of obesity. In utero exposure to maternal hyperglycemia has been associated with increased risk of obesity later in life. Epigenetic mechanisms are suspected to be involved in fetal programming of long term metabolic diseases. We investigated whether DNA methylation levels near LEP locus mediate the relation between maternal glycemia and neonatal leptin levels using the 2-step epigenetic Mendelian randomization approach. We used data and samples from up to 485 mother-child dyads from Gen3G, a large prospective population-based cohort. First, we built a genetic risk score to capture maternal glycemia based on 10 known glycemic genetic variants (GRS10) and showed it was an adequate instrumental variable (β = 0.046 mmol/L of maternal fasting glucose per additional risk allele; SE = 0.007; P = 7.8 × 10−11; N = 467). A higher GRS10 was associated with lower methylation levels at cg12083122 located near LEP (β = −0.072 unit per additional risk allele; SE = 0.04; P = 0.05; N = 166). Direction and effect size of association between the instrumental variable GRS10 and methylation at cg12083122 were consistent with the negative association we observed using measured maternal glycemia. Lower DNA methylation levels at cg12083122 were associated with higher cord blood leptin levels (β = −0.17 log of cord blood leptin per unit; SE = 0.07; P = 0.01; N = 170). Our study supports that maternal glycemia is part of causal pathways influencing offspring leptin epigenetic regulation. 相似文献
109.
Sargent LM Hubbs AF Young SH Kashon ML Dinu CZ Salisbury JL Benkovic SA Lowry DT Murray AR Kisin ER Siegrist KJ Battelli L Mastovich J Sturgeon JL Bunker KL Shvedova AA Reynolds SH 《Mutation research》2012,745(1-2):28-37
Carbon nanotubes were among the earliest products of nanotechnology and have many potential applications in medicine, electronics, and manufacturing. The low density, small size, and biological persistence of carbon nanotubes create challenges for exposure control and monitoring and make respiratory exposures to workers likely. We have previously shown mitotic spindle aberrations in cultured primary and immortalized human airway epithelial cells exposed to 24, 48 and 96 μg/cm(2) single-walled carbon nanotubes (SWCNT). To investigate mitotic spindle aberrations at concentrations anticipated in exposed workers, primary and immortalized human airway epithelial cells were exposed to SWCNT for 24-72 h at doses equivalent to 20 weeks of exposure at the Permissible Exposure Limit for particulates not otherwise regulated. We have now demonstrated fragmented centrosomes, disrupted mitotic spindles and aneuploid chromosome number at those doses. The data further demonstrated multipolar mitotic spindles comprised 95% of the disrupted mitoses. The increased multipolar mitotic spindles were associated with an increased number of cells in the G2 phase of mitosis, indicating a mitotic checkpoint response. Nanotubes were observed in association with mitotic spindle microtubules, the centrosomes and condensed chromatin in cells exposed to 0.024, 0.24, 2.4 and 24 μg/cm(2) SWCNT. Three-dimensional reconstructions showed carbon nanotubes within the centrosome structure. The lower doses did not cause cytotoxicity or reduction in colony formation after 24h; however, after three days, significant cytotoxicity was observed in the SWCNT-exposed cells. Colony formation assays showed an increased proliferation seven days after exposure. Our results show significant disruption of the mitotic spindle by SWCNT at occupationally relevant doses. The increased proliferation that was observed in carbon nanotube-exposed cells indicates a greater potential to pass the genetic damage to daughter cells. Disruption of the centrosome is common in many solid tumors including lung cancer. The resulting aneuploidy is an early event in the progression of many cancers, suggesting that it may play a role in both tumorigenesis and tumor progression. These results suggest caution should be used in the handling and processing of carbon nanotubes. 相似文献
110.
Ramesh JL Kandimalla Willayat Yousuf Wani Binukumar BK Kiran Dip Gill 《Journal of biomedical science》2012,19(1):2