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1.a phylogenetically primitive part of the brain.
大脑系统发育的原初的部分。收藏指正
2.F48E8 was phylogenetically related to the two Middleast strains (AUS Victoria and Miyadera) and showed high genetic similarityto four NDV strins isolated from chickens in China currently suffered fromNewcastle disease.
在遗传发生上和AUS Victoria株、Miyadera株距离较近,是第一次ND世界范围内大流行的代表毒株。 F_(48)E_8株和近年来国内流行的野外分离株之间,F蛋白表现出较高的同源性,主要功能区保守,因此F基因可以作为基因工程疫苗的目的基因。收藏指正
3.When analyzed phylogenetically, the investigators found the Malagasy species to constitute a clade with a sister group relationship to a combined East African plus Americas clade (Agnarsson & Kuntner 2005).
进行系统分析时,调查者发现,马达加斯加的种类为东非+美洲支的姊妹群。收藏指正
4.In this representation, an AFV isolate of H9N2 subtype, A/Chicken/Shanghai/F/98 (C/SH/F/98), from mainland China was chosen to determine the entire genomic sequence and characterize phylogenetically.
片段7(M基因)1027nt,编码252aa的基质蛋白(Ml)和97aa的离子通道(MZ):片段8(NS基因)890nt,编码Z17aa的非结构蛋白(NSI)和12laa的出核转运蛋白(NEP/NSZ)。收藏指正
5.Variation in ITS length seems well correlated with morphological and geographic characters in Abies , suggesting that the length variation may be a phylogenetically informative character within the genus.
这与松科属间ITS长度的变异是由于ITS1长度的变异所致相一致。 冷杉属ITS长度的变异式样与形态特征和地理分布具有很好的相关性。收藏指正
6.Results:The 6 S.aureus strains were ST239-MRSA-Ⅲ,its spaA type was GKAOMQ and coa type was HIJKL. According to the fingerprinting of AP-PCR,RAPD and ERIC-PCR,6 MRSA strains exhibited the same patterns,indicating that they were originated from the same clone and were phylogenetically related.
结果:6株金葡菌均为MRSA,均携带Ⅲ型SCCmec,序列型为ST239,spaA型为GKAOMQ,coa型为HI-JKL,AP-PCR,RAPD和ERIC-PCR的指纹图谱均显示其带型一致,来源于同一克隆系,病原上具有高度同源性。收藏指正
7.PCR-DGGE results showed that the AOB in SBR pilot-scale, A/O pilot-scale and UASB-A/O lab-scale processes were phylogenetically related to Nitrosomonas-like species with a melting point in the range 30% to 50%.
PCR-DGGE结果表明SBR中试、A/O和UASB-A/O3种短程脱氮系统中的AOB均以Nitrosomonas-like为主.收藏指正
8.Dissimilatory arsenate-respiring prokaryotes(DARPs) can reduce As(V) to As(III),chemoautotrophic arsenite oxidizers(CAOs) and heterotrophic arsenite oxidizers(HAOs) can oxidize As(III) to As(V). These microbes are phylogenetically diverse and remarkable in their arsenic metabolic diversity.
砷酸盐异化还原菌(D issim ilatoryArsenate-Respiring Prokaryote,DARP)可以将As(V)还原为As(III),化能自养亚砷酸盐氧化菌(Chemoautotrophic Arsenite Oxid izer,CAO)和异养亚砷酸盐氧化菌(Heterotrophic Arsenite Oxid izer,HAO)可以将As(III)氧化为As(V)。收藏指正
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