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411.
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Effects of MEK inhibitor U0126 on meiotic progression in mouse oocytes: microtuble organization, asymmetric division and metaphase Ⅱ arrest 总被引:1,自引:0,他引:1
CHAO TONG HENG YU FAN DA YUAN CHEN XIANG FEN SONG HEIDE SCHATTEN QING YUAN SUNI State Key Laboratory of Reproductive Biology Institute of Zoology Chinese Academy of Sciences Beijing China. Department of Veterinary Pathobiology University of Missouri-Columbia MO USA 《Cell research》2003,13(5):375-384
In this study we used U0126, a potent and specific inhibitor of MEK, to study the roles of MEK/ERK/p90~(rsk) signaling pathway in the meiotic cell cycle of mouse oocytes. The phosphorylation of MAP kinase and p90~(rsk) in the oocytes treated with 1.5 μM U0126 was the same as that in oocytes cultured in drug-free medium. With 1.5 μM U0126 treatment, the spindles appeared normal as they formed in oocytes, but failed to maintain its structure. Instead, the spindle lost one pole or elongated extraordinarily. After further culture, some oocytes extruded gigantic polar bodies (>30 μm) that later divided into two small ones. Some oocytes underwent symmetric division and produced two equal-size daughter cells in which normal spindles formed. In oocytes with different division patterns, MAP kinase was normally phosphorylated. When the concentration of U0126 was increased to 15 mM, the phosphorylation of both MAPK and p90~(rsk) were inhibited, while symmetric division was decreased. When incubating in medium c 相似文献
413.
NUNES MARIA ANTONIETA; CONTREIRAS JOS?; SILVA DULCE FERREIRA DA 《Journal of experimental botany》1983,34(9):1101-1107
When [l-14C]-malonate was supplied to discs cut from matureleaves of Coffea arabica, 14CO2 was released (approximately12% of the total CO2 respired) and organic acids of the Krebscycle, uronic acids, sugars and amino acids became radioactive.There was no incorporation of MC into either lipids or phenoliccompounds. The formation of glucose from malonate has not beenobserved in other studies with plant tissues. The synthesisof labelled glucose together with an active pentose phosphatepathway that is stimulated by malonate explains the accumulationof radioactive phosphogluconate in the leaf discs. Tentativeproposals are made for pathways to account for the results obtained. Key words: Coffee leaves, Malonate metabolism, Pentose phosphate pathway 相似文献
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目的:基于钙黄绿素的荧光分光光度法建立一种测定谷胱甘肽的新方法。方法:在pH=8.0介质中,铜(Ⅱ)与钙黄绿素配位引起荧光猝灭,由于谷胱甘肽与铜(Ⅱ)的亲和力很强,可从钙黄绿素-铜离子的络合物中夺取铜离子而使钙黄绿素游离出来使荧光强度得以恢复,荧光恢复的程度与加入谷胱甘肽的浓度在一定浓度范围内成线性。结果:据此建立了一种测定谷胱甘肽的新方法,该方法的线性范围为2.0×10-6~1.4×10-5mol.L-1,F=8.1964C+196.43,检测限为1.0×10-6mol/L。结论:用此法测定谷胱甘肽简便快速,灵敏度高。 相似文献
416.
Hop chlorotic disease was first described in England in 1930, but it has since been seldom seen and its etiology has remained unknown. In 1983 a patch of plants with the disease occurred in a large area of hops (Humulus lupulus) cv. Bramling Cross planted at Yalding, Kent in 1967. All plants in a rectangular area enclosing the disease outbreak were infected with hop mosaic, hop latent and prunus necrotic ringspot viruses; the diseased plants were additionally infected with arabis mosaic virus (AMV). The disease was also associated with seed-transmitted AMV, and was induced in hop seedlings inoculated with partially purified preparations of AMV originating from chlorotic disease-affected hops prepared from Chenopodium quinoa. The disease appears to be caused by AMV, but AMV isolates from hops with chlorotic disease were serologically indistinguishable from AMV isolates from hops with symptoms of bare-bine and/or nettlehead and showed similar pathogenicity in diagnostic hosts. The basis of the difference between isolates in their pathogenicity in hop remains unknown. 相似文献
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祁连山青海云杉林地土壤水分特征研究 总被引:19,自引:0,他引:19
通过对祁连山青海云杉林地土壤水分含量及主要影响因子的测定,结果表明,青海云杉林地土壤具有容重低、入渗率高、土壤水分含量垂向分布受降水影响明显等特征,灌木-青海云杉林、苔藓-青海云杉林和草地(对照)平均容重分别为0.522、0.641、0.874g·cm^-3.土壤初渗率分别为6.0、21.0、2.5mm·min^-1,稳渗率分别为3.98、11.2、0.5mm·min^-1.苔藓-青海云杉林地土壤可划分为4层:水分活跃层(0~30cm)、水分调节层(30~60cm)、水分传输层(60~80cm)和蓄水层(80ClTI以下),各层土壤贮水量分别为3.30、3.17、2.80和2.83mm·cm^-1.灌木-青海云杉林可分为3层:水分稳定层(0~30cm)、水分活跃层(30~60cm)和水分传输层(60cm以下),各层土壤贮水量分别为3.98、3.65、3.48mm·cm^-1.两种林地土壤水分含量的季节变化受降水影响较大,相比而言,苔藓.青海云杉林地入渗率更高,有较明显的蓄水层,水分传输能力更强,而灌木-青海云杉林地贮水能力更强. 相似文献
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