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基于扩增子测序分析益生菌牙膏中菌群多样性
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作者 吴渊 梁媛媛 +3 位作者 周志南 黄甜甜 夏琪琪 刘鹏鹏 《日用化学工业(中英文)》 CAS 北大核心 2023年第10期1227-1232,共6页
通过常规方法检测益生菌牙膏中的活性菌,并采用高通量测序技术对20种市售益生菌牙膏16S rDNA的V3、V4区进行测序,扩增子测序分析不同牙膏中的菌群结构并进行α多样性分析,最后基于特异性引物,使用PCR方法检测20种牙膏中副干酪乳杆菌成... 通过常规方法检测益生菌牙膏中的活性菌,并采用高通量测序技术对20种市售益生菌牙膏16S rDNA的V3、V4区进行测序,扩增子测序分析不同牙膏中的菌群结构并进行α多样性分析,最后基于特异性引物,使用PCR方法检测20种牙膏中副干酪乳杆菌成分。结果表明:1)20种益生菌牙膏菌落总数均<10 CFU/g,乳酸菌总数均<10 CFU/g;2)通过扩增子测序结果分析,牙膏中还添加了干酪乳杆菌以外的乳酸菌,有18种牙膏中添加了发酵乳杆菌、嗜酸乳酸杆菌和德氏乳杆菌亚种,20种牙膏中添加了植物乳杆菌,19种牙膏中添加了罗伊氏乳杆菌。高通量测序对原核微生物的α多样性分析,表明牙膏中原核微生物丰度和菌落多样性较高;3)牙膏DNA提取物通过PCR及测序,结果表明20种牙膏均按标签标识添加了副干酪乳杆菌。 展开更多
关键词 益生菌牙膏 扩增子测序 副干酪乳杆菌
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生长激素基因的克隆和表达及其对贵州地方黄牛骨骼肌细胞增殖的影响 被引量:2
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作者 陈祥 周志楠 +2 位作者 吴雨 宋汝谋 陈伟 《生物工程学报》 CAS CSCD 北大核心 2021年第4期1249-1259,共11页
本研究旨在探究生长激素(Growth hormone,GH)对贵州地方黄牛骨骼肌细胞增殖的表达调控,探明超表达GH基因对骨骼肌细胞增殖的影响。首先利用反转录PCR扩增黄牛GH基因的蛋白质编码区(Coding sequence,CDS),将其克隆至pUCM-T载体,并连接转... 本研究旨在探究生长激素(Growth hormone,GH)对贵州地方黄牛骨骼肌细胞增殖的表达调控,探明超表达GH基因对骨骼肌细胞增殖的影响。首先利用反转录PCR扩增黄牛GH基因的蛋白质编码区(Coding sequence,CDS),将其克隆至pUCM-T载体,并连接转化构建超表达载体pEGFP-N3-GH。同时使用实时荧光定量PCR检测GH基因在贵州地方黄牛骨骼肌相关组织(腰大肌与背最长肌)中的表达情况,然后培养牛原代骨骼肌细胞并进行鉴定,并将GH基因超表达载体导入细胞以研究GH基因对牛骨骼肌细胞增殖以及骨骼肌生长发育相关因子胰岛素样生长因子-1(Insulinlikegrowthfactor1,IGF-1)与胰岛素样生长因子-2(Insulinlikegrowth factor 2,IGF-2)基因表达的影响。实时荧光定量PCR结果显示,GH基因在贵州地方黄牛腰大肌中的表达量均高于背最长肌,其中在关岭牛和威宁牛腰大肌中的表达量显著高于背最长肌(P<0.05)。细胞转染及增殖结果表明,相比于pEGFP-N3,pEGFP-N3-GH能极显著提高GH与IGF-1、IGF-2基因在骨骼肌细胞中的表达量,且在被检测的4个时期(6 h、12 h、24 h、48 h),超表达GH基因组也能够极显著地提高骨骼肌细胞的增殖速率(P<0.01)。结果提示,GH基因可促进贵州地方黄牛骨骼肌细胞的增殖,对其具有正向的调控作用,这为进一步探究GH基因对贵州地方黄牛生长发育的影响机制奠定基础。 展开更多
关键词 GH基因 贵州地方黄牛 生长性能 骨骼肌细胞
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Cathepsin D knockdown regulates biological behaviors of granulosa cells and affects litter size traits in goats
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作者 zhinan zhou Xiang CHEN +5 位作者 Min ZHU Weiwei WANG Zheng AO Jiafu ZHAO Wen TANG Lei HONG 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2021年第11期893-905,共13页
Cathepsin D(CTSD),the major lysosomal aspartic protease that is widely expressed in different tissues,potentially regulates the biological behaviors of various cells.Follicular granulosa cells are responsive to the in... Cathepsin D(CTSD),the major lysosomal aspartic protease that is widely expressed in different tissues,potentially regulates the biological behaviors of various cells.Follicular granulosa cells are responsive to the increase of ovulation number,hence indirectly influencing litter size.However,the mechanism underlying the effect of CTSD on the behaviors of goat granulosa cells has not been fully elucidated.This study used immunohistochemistry to analyze CTSD localization in goat ovarian tissues.Moreover,western blotting was applied to examine the differential expression of CTSD in the ovarian tissues of monotocous and polytocous goats.Subsequently,the effects of CTSD knockdown on cell proliferation,apoptosis,cell cycle,and the expression of candidate genes of the prolific traits,including bone morphogenetic protein receptor IB(BMPR-IB),follicle-stimulating hormone(FSHR),and inhibinα(INHA),were determined in granulosa cells.Results showed that CTSD was expressed in corpus luteum,follicle,and granulosa cells.Notably,CTSD expression in the monotocous group was significantly higher than that in the polytocous group.In addition,CTSD knockdown could improve granulosa cell proliferation,inhibit cell apoptosis,and significantly elevate the expression of proliferating cell nuclear antigen(PCNA)and B cell lymphoma 2(Bcl-2),but it lowered the expression of Bcl-2-associated X(Bax)and caspase-3.Furthermore,CTSD knockdown significantly reduced the ratios of cells in the G0/G1 and G2/M phases but substantially increased the ratio of cells in the S phase.The expression levels of cyclin D2 and cyclin E were elevated followed by the obvious decline of cyclin A1 expression.However,the expression levels of BMPR-IB,FSHR,and INHA clearly increased as a result of CTSD knockdown.Hence,our findings demonstrate that CTSD is an important factor affecting the litter size trait in goats by regulating the granulosa cell proliferation,apoptosis,cell cycle,and the expression of candidate genes of the prolific trait. 展开更多
关键词 Cathepsin D(CTSD) Litter size trait Granulosa cells Cell apoptosis Cell cycle Cell proliferation
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