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Molecular diagnosis and direct quantification of cereal cyst nematode(Heterodera filipjevi) from field soil using TaqMan real-time PCR
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作者 JIAN Jin-zhuo HUANG Wen-kun +4 位作者 KONG Ling-an JIAN Heng Sulaiman ABDULSALAM PENG De-liang PENG Huan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第8期2591-2601,共11页
Heterodera filipjevi continues to be a major threat to wheat production worldwide.Rapid detection and quantification of cyst nematodes are essential for more effective control against this nematode disease.In the pres... Heterodera filipjevi continues to be a major threat to wheat production worldwide.Rapid detection and quantification of cyst nematodes are essential for more effective control against this nematode disease.In the present study,a TaqManminor groove binder(TaqMan-MGB)probe-based fluorescence quantitative real-time PCR(qPCR)was successfully developed and used for quantifying H.filipjevi from DNA extracts of soil.The primers and probe designed from the obtained RAPD-SCAR marker fragments of H.filipjevi showed high specificity to H.filipjevi using DNA from isolatesconfirmed species of 23 Heterodera spp.,1 Globodera spp.and 3 Pratylenchus spp.The qPCR assay is highly sensitive and provides improved H.filipjevi detection sensitivity of as low as 4^(-3) single second-stage juvenile(J2)DNAs,10^(-3) female DNAs,and 0.01μgμL^(-1) genomic DNAs.A standard curve relating to the threshold cycle and log values of nematode numbers was generated and validated from artificially infested soils and was used to quantify H.filipjevi in naturally infested field soils.There was a high correlation between the H.filipjevi numbers estimated from 32 naturally infested field soils by both conventional methods and the numbers quantified using the qPCR assay.qPCR potentially provides a useful platform for the efficient detection and quantification of H.filipjevi directly from field soils and to quantify this species directly from DNA extracts of field soils. 展开更多
关键词 cereal cyst nematode Heterodera filipjevi molecular diagnosis quantification TaqMan real-time pcr
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运用Real-time quantification PCR方法建立副溶血性弧菌在即食虾中的生长预测模型 被引量:5
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作者 彭织云 王敬敬 +2 位作者 唐晓阳 潘迎捷 赵勇 《食品工业科技》 CAS CSCD 北大核心 2013年第8期108-110,共3页
运用Real-time quantification PCR(real-time qPCR)方法建立副溶血性弧菌在即食虾中生长预测模型。首先构建质粒标准品,梯度稀释后建立标准曲线,然后用Real-time qPCR方法检测虾中副溶血性弧菌的数量,最后建立37℃下即食虾中副溶血性... 运用Real-time quantification PCR(real-time qPCR)方法建立副溶血性弧菌在即食虾中生长预测模型。首先构建质粒标准品,梯度稀释后建立标准曲线,然后用Real-time qPCR方法检测虾中副溶血性弧菌的数量,最后建立37℃下即食虾中副溶血性弧菌生长预测模型,并与传统涂布计数方法进行比较。结果表明,Real-time qPCR方法和传统计数方法均可建立Gmopertz模型、Logistic模型和Richards模型,模型拟合的相关系数R2均在0.9以上。基于Real-timeqPCR方法省时省力、特异性好等优点,用Real-time qPCR方法建立微生物预测模型是未来预测微生物学领域的一种发展趋势。 展开更多
关键词 real-time quantification pcr 副溶血性弧菌 生长预测模型
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肺癌组织中Cyr61基因表达及临床意义 被引量:9
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作者 崔玲玲 孙锦峰 +6 位作者 王旗 赵松 赵高峰 秦建军 陈萍萍 李文杰 谢东 《肿瘤》 CAS CSCD 北大核心 2007年第4期286-289,共4页
目的:研究人肺癌组织中Cyr61基因表达的临床意义。方法:采用实时荧光定量-PCR技术和免疫组织化学染色法对60名肺癌患者的肺癌组织和癌旁肺组织的Cyr61 mRNA和蛋白表达水平进行测量。结果:80%(48/60)肺癌患者的癌组织中Cyr61表达水平低... 目的:研究人肺癌组织中Cyr61基因表达的临床意义。方法:采用实时荧光定量-PCR技术和免疫组织化学染色法对60名肺癌患者的肺癌组织和癌旁肺组织的Cyr61 mRNA和蛋白表达水平进行测量。结果:80%(48/60)肺癌患者的癌组织中Cyr61表达水平低于其配对的癌旁肺组织中的水平,与免疫组织化学染色法测定的结果相一致。统计分析显示,两组间差异有统计学意义(2.742±4.165vs4.933±3.349,t=-5.112,P=0.000)。肿瘤恶性程度分级、淋巴结转移、病理学类型、吸烟状况及家族史等临床参数均可影响癌组织中的Cyr61的表达水平(P<0.05)。结论:Cyr61对肺癌的进展起重要作用,因此Cyr61表达的蛋白产物可作为临床诊断的重要指标。 展开更多
关键词 肺肿瘤 实时荧光定量-pcr 免疫组织化学 CYR61 基因
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白砂糖DNA提取方法的比较
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作者 齐玲倩 刘秀 +3 位作者 丁梦璇 李静媛 刘远远 尹建军 《食品与发酵工业》 CAS CSCD 北大核心 2016年第11期244-248,共5页
为了得到高效的白砂糖DNA提取方法,以5种白砂糖为研究对象,从前处理方法、裂解液成分及DNA纯化方法等方面对传统CTAB法进行改良,并比较了CTAB法和改良CTAB法的提取效果,结果表明:改良CTAB法提取的白砂糖DNA浓度都在2.60μg/m L以上,纯度... 为了得到高效的白砂糖DNA提取方法,以5种白砂糖为研究对象,从前处理方法、裂解液成分及DNA纯化方法等方面对传统CTAB法进行改良,并比较了CTAB法和改良CTAB法的提取效果,结果表明:改良CTAB法提取的白砂糖DNA浓度都在2.60μg/m L以上,纯度在1.8左右,且通过实时荧光定量PCR能扩增出18Sr DNA基因的对应荧光信号。因此,改良CTAB法能够高效地提取白砂糖的DNA,可为后续的分子检测奠定基础。 展开更多
关键词 白砂糖 DNA提取 改良CTAB法 实时荧光定量pcr(real-time FLUORESCENCE quantification pcr qpcr)
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Proteomic Analysis of Chrysanthemum Lateral Buds after Removing Apical Dominance Based on Label-Free Technology
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作者 Sicong Zheng Jingjing Song +5 位作者 Cheng Luo Xin Li Qiqi Ma Beibei Jiang Qinglin Liu Yuanzhi Pan 《Phyton-International Journal of Experimental Botany》 SCIE 2022年第3期525-539,共15页
Studying the genetic basis and regulatory mechanism of chrysanthemum lateral bud outgrowth is of great significance for reduction the production cost of cut chrysanthemum.To clarify the molecular basis of lateral bud ... Studying the genetic basis and regulatory mechanism of chrysanthemum lateral bud outgrowth is of great significance for reduction the production cost of cut chrysanthemum.To clarify the molecular basis of lateral bud elongation after removal of apical dominance in chrysanthemum,label-free quantification analysis was used to analyze the proteome changes after apical bud removal.Quantitative real-time PCR(qPCR)was used to analyze the changes in the expression of three plant hormone-related genes.A total of 440 differentially expressed proteins were successfully identified at three time points during the lateral bud elongation.The number of differentially expressed proteins in the three stages(24 h/0 h,48 h/0 h,48 h/24 h)were 219,332,and 97,respectively.The difference in expressed proteins in the three comparison stages mainly involves RNA processing and modification;translation,ribosomal structure and biogenesis;Posttranslational modification,protein turnover,and chaperones.Path analysis showed that there was various physiological activities in the process of lateral bud dormancy breaking and elongation,which involved energy metabolism,biosynthesis,signal transduction and stress response in the growth process of lateral buds.qPCR indicated that the expression of cytokinin synthesis related gene was significantly increased after the removal of apical dominance,while the expression of strigolactones synthesis related gene experiences a dramatic fall to promote the development of the lateral buds.However,there was a drop before a slight increase in the expression of the auxin synthesis related gene,which was mainly due to the removal of apical dominance that led to the loss of indoleacetic acid in the main stem.However,with formation of the new apical source,indoleacetic acid can be released again. 展开更多
关键词 BRANCHES proteins DECAPITATION PROTEOME 4D label-free quantification analysis quantitative real-time pcr
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