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黑果枸杞子对过度训练大鼠骨骼肌MAPK信号通道蛋白表达及抗氧化应激损伤能力的影响 被引量:25
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作者 崔笑梅 曹建民 +2 位作者 周海涛 王灿 万子一 《中国实验方剂学杂志》 CAS CSCD 北大核心 2017年第3期122-127,共6页
目的:研究黑果枸杞子对过度训练大鼠骨骼肌MAPK信号通道蛋白表达及抗氧化应激损伤能力的影响。方法:以等量负荷有氧运动训练和大强度耐力训练大鼠为模型,50只SPF级Wistar 49 d龄雄性大鼠为对象,随机分为4组,分别为正常组、有氧训练组、... 目的:研究黑果枸杞子对过度训练大鼠骨骼肌MAPK信号通道蛋白表达及抗氧化应激损伤能力的影响。方法:以等量负荷有氧运动训练和大强度耐力训练大鼠为模型,50只SPF级Wistar 49 d龄雄性大鼠为对象,随机分为4组,分别为正常组、有氧训练组、过度训练组、过度训练+黑果枸杞子组,每组12只(剔除不符合实验要求的大鼠)。每天灌胃(ig)给药1次,黑果枸杞子干预组剂量为4.48 mg·kg-1,ig体积为5 m L·kg-1,其他组ig等体积生理盐水。42 d负荷游泳训练后,测试各组大鼠骨骼肌丝裂素活化蛋白激酶(MAPK)信号系统蛋白表达及氧化应激损伤相关指标,分光光度法检测骨骼肌超氧化物歧化酶(SOD)活性及丙二醛(MDA)含量;蛋白质免疫印迹(Western blot)法检测MAPK信号通道蛋白表达;酶联免疫吸附测试法(ELISA)检测3-硝基酪氨酸(3-NT),8-羟基脱氧鸟苷(8-OHd G)含量;乙酰半胱氨酸法检测血清肌酸激酶(CK)活性;苯肼显色法检测乳酸脱氢酶(LDH)活性。结果:力竭游泳时间,有氧训练组较正常组有所延长,黑果枸杞子干预组较过度训练组显著增加(P<0.01)。骨骼肌SOD活性,有氧训练组略高于正常组;过度训练组较正常组和有氧训练组明显下降(P<0.05),黑果枸杞子干预组较过度训练组明显升高(P<0.05)。骨骼肌MDA含量,有氧训练组略低于正常组;过度训练组较正常组和有氧训练组显著升高(P<0.01),黑果枸杞子干预组较过度训练组显著降低(P<0.01)。骨骼肌3-NT,8-OHd G,有氧训练组略高于正常组;过度训练组较正常组和有氧训练组显著升高(P<0.01);黑果枸杞子干预组较过度训练组明显降低(P<0.05)。血清LDH活性,有氧训练组略高于正常组;过度训练组较正常组和有氧训练组均显著升高(P<0.01);黑果枸杞子干预组较过度训练组明显升高(P<0.05)。血清CK活性,有氧训练组略高于正常组;过度训练组较正常组和有氧训练组显著升高(P<0.01);黑果枸杞子干预组较过度训练组显著降低(P<0.01)。p38 MAPK,细胞外信号调节蛋白激酶(ERK)信号通路蛋白表达,有氧训练组高于正常组(P<0.05),低于过度训练组(P<0.05);过度训练组高于安静组(P<0.01);黑果枸杞子干预组高于正常组(P<0.05),低于过度训练组(P<0.05)。结论:补充黑果枸杞子可以有效缓解过度训练导致的机体内环境失衡,抑制MAPK信号通路蛋白的过度表达,激活过度训练大鼠骨骼肌MAPK信号转导系统诱导抗氧化酶基因表达,提高机体尤其是骨骼肌的氧自由基清除能力,调节机体的抗氧化应激损伤能力,预防和延缓氧化应激损伤及运动疲劳的发生与发展。 展开更多
关键词 黑果枸杞子 过度训练 丝裂素活化蛋白激酶信号通路 蛋白表达 抗氧化应激损伤
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Physiological characterization,transcriptomic profiling,and microsatellite marker mining of Lycium ruthenicum 被引量:4
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作者 Jin-huan CHEN Dong-zhi ZHANG +2 位作者 Chong ZHANG Mei-long XU Wei-lun YIN 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2017年第11期1002-1021,共20页
Lycium ruthenicum is a perennial shrub species that has attracted considerable interest in recent years owing to its nutritional value and ability to thrive in a harsh environment. However, only extremely limited tran... Lycium ruthenicum is a perennial shrub species that has attracted considerable interest in recent years owing to its nutritional value and ability to thrive in a harsh environment. However, only extremely limited transcriptomic and genomic data related to this species can be found in public databases, thereby limiting breeding research and molecular function analysis. In this study, we characterized the physiological and biochemical responses to saline- alkaline mixed stress by measuring photochemical efficiency, chlorophyll content, and protective enzyme activity. We performed global transcriptomic profiling analysis using the IIlumina platform. After optimizing the assembly, a total of 68063 unique transcript sequences with an average length of 877 bp were obtained. Among these sequences, 4096 unigenes were upregulated and 4381 unigenes were down-regulated after saline-alkaline mixed treatment. The most abundant transcripts and over-represented items were assigned to gene ontology (GO) terms or Kyoto Encyclopedia of Genes and the Genomes (KEGG) categories for overall unigenes, and differentially expressed unigenes were analyzed in detail. Based on this set of RNA-sequencing data, a total of 9216 perfect potential simple sequence re- peats (SSRs) were identified within 7940 unigenes with a frequency of 1/6.48 kb. A total of 77 primer pairs were synthesized and examined in wet-laboratory experiments, of which 68 loci (88.3%) were successfully amplified with specific products. Eleven pairs of polymorphic primers were verified in 225 individuals from nine populations. The inbreeding coefficient and the polymorphism information content value ranged from 0.011 to 0.179 and from 0.1112 to 0.6750, respectively. The observed and expected heterozygosities ranged from 0.064 to 0.840 and from 0.115 to 0.726, respectively. Nine populations were clustered into three groups based on a genetic diversity study using these novel markers. Our data will be useful for functional genomic investigations of L. ruthenicum and could be used as a basis for further research on the genetic diversity, genetic differentiation, and gene flow of L. ruthenicum and other closely related species. 展开更多
关键词 De novo Genetic diversity Lycium ruthenicum Molecular marker Saline-alkaline mixed stress
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