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首页> 外文期刊>日本線虫学会誌 >Diagnosis and quantification of the pine wood nematode, Bursaphelenchus xylophilus (Steiner & Buhner), in wood of Pinus thunbergii with real-time PCR
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Diagnosis and quantification of the pine wood nematode, Bursaphelenchus xylophilus (Steiner & Buhner), in wood of Pinus thunbergii with real-time PCR

机译:松木线虫的诊断和定量,Bursaphelenchus Xylophilus(Steiner&Buhner),在Pinus Thunbergii的木材中,具有实时PCR

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A new diagnostic and quantitative real-time PCR assay was developed for the pine wood nematode, Bursaphelenchus xylophilus, which causes a serious epidemic wilt disease of susceptible landscape and forest pine trees. One, 10, 50, 100, 200, and 400 individuals of B. xylophilus in 100 mg of pine tissues were detected and quantified with two sets of primers coding the rDNA-ITS region and beta-tubulin (tbb) gene of B. xylophilus, avoiding the need to extract nematodes with Baermann funnels. The assay was efficient, specific for pine wood nematode and sensitive enough to detect a single individual in pine tissues. To test the applicability of the assay for infested hosts, seedlings of the susceptible host species, Pinus thunbergii, were inoculated with B. xylophilus, and the dispersal and multiplication of B. xylophilus inside the seedlings were monitored by both Baermann funnel extraction and real-time PCR. Quantification by real-time PCR gave similar trends in estimates of the nematode population changes inside the host to those obtained by Baermann funnel extraction, although the size of the population estimated was larger for the new method than for the Baermann funnel extraction. The method developed in this study, which was expected to detect and quantify all life stages of the pine wood nematode should be useful for quarantine and field diagnosis. Nematol. Res. 39 (1), 9-1.6 (2009).
机译:为松木线虫,Bursaphelenchus Xylophilus开发了一种新的诊断和定量实时PCR测定,这导致严重的敏感景观和森林杉树的流行性枯萎病。在100mg杉木组织中,用两组引物编码rDNA-ITA的引物和B.木霉素(TBB)基因的两组引物检测和定量100mg杉木组织中的一种,10,50,100,200和400个体。 ,避免使用Baermann Funnels提取线虫。该测定是有效的,对于松木线虫的特异性,足够敏感以检测松树组织中的单个个体。为了测试测定的适用性对感染的宿主,敏感宿主物种的幼苗,Pinus Thunbergii接种着B.木糖菌,并通过Baermann漏斗提取和实际监测幼苗内的B. Xylophilus的分散和倍增。时间PCR。通过实时PCR定量介绍宿主内部线虫群体变化的类似趋势,通过Baermann漏斗提取获得的那些,尽管估计的群体的尺寸对于新方法较大而不是Baermann漏斗提取。本研究开发的方法,预计将检测和量化松木线虫的所有生命阶段应该是可用于检疫和现场诊断。线虫。 res。 39(1),9-1.6(2009)。

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