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   过氧化物酶基因 在 植物保护 分类中 的翻译结果: 查询用时:1.624秒
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过氧化物酶基因
相关语句
  peroxidase gene
    Relationship of phenylalanine ammonia lyase gene (PAL), cytosolic ascorbate peroxidase gene (apx) and peroxidase K gene (POX K) with resistance to Exserohilum turcicum in maize was analysed by PCR and RT-PCR, in which resistant and susceptible isolines of maize were used as experimental materials.
    以玉米抗、感大斑突脐孢菌近等基因系为材料 ,采用PCR和RT -PCR技术 ,初步研究了苯丙氨酸解氨酶基因 (PAL)、胞液抗坏血酸过氧化物酶基因 (apx)和过氧化物酶K基因 (POXK)等防卫基因与玉米对大斑病菌抗性的关系。
短句来源
    The Transcript Accumulation of Peroxidase Gene in Rice Suspension-Cultured Cells Treated by Zhongshengmycin
    中生菌素对水稻悬浮细胞过氧化物酶基因转录表达的影响
短句来源
    The 9 of them was applied successfully in the experiment, they are toxin,RNA Cytotoxin Ribonuclease gene, RNA Ribonuclease inhibitor organidation gene, Chitinase gene, β-1,3-Giucanase gene, Ribosome-inactivating protein gene, phytoalexing gene, phytoalexing gene, antibacterial peptide gene, peroxidase gene and pathogenesis-related protein gene.
    在试验研究中应用比较成功的主要有9类,分别是:细胞毒素RNA酶基因、RNA酶抑制剂编码基因、几丁质酶基因、β-1,3-葡聚糖酶基因、核糖体失活蛋白基因、植保素合成酶基因、抗真菌蛋白基因、过氧化物酶基因和病程相关蛋白基因。
短句来源
  peroxidase genes
    It is not sure that the constitutive expression of peroxidase genes in the transgenic plant can be effective against pathogens infection.
    导入过氧化物酶基因 ,构成组成型表达的转基因植物 ,不一定能有效地抵抗病原物的侵袭。
短句来源
  peroxidase gene
    Relationship of phenylalanine ammonia lyase gene (PAL), cytosolic ascorbate peroxidase gene (apx) and peroxidase K gene (POX K) with resistance to Exserohilum turcicum in maize was analysed by PCR and RT-PCR, in which resistant and susceptible isolines of maize were used as experimental materials.
    以玉米抗、感大斑突脐孢菌近等基因系为材料 ,采用PCR和RT -PCR技术 ,初步研究了苯丙氨酸解氨酶基因 (PAL)、胞液抗坏血酸过氧化物酶基因 (apx)和过氧化物酶K基因 (POXK)等防卫基因与玉米对大斑病菌抗性的关系。
短句来源
    The Transcript Accumulation of Peroxidase Gene in Rice Suspension-Cultured Cells Treated by Zhongshengmycin
    中生菌素对水稻悬浮细胞过氧化物酶基因转录表达的影响
短句来源
    The 9 of them was applied successfully in the experiment, they are toxin,RNA Cytotoxin Ribonuclease gene, RNA Ribonuclease inhibitor organidation gene, Chitinase gene, β-1,3-Giucanase gene, Ribosome-inactivating protein gene, phytoalexing gene, phytoalexing gene, antibacterial peptide gene, peroxidase gene and pathogenesis-related protein gene.
    在试验研究中应用比较成功的主要有9类,分别是:细胞毒素RNA酶基因、RNA酶抑制剂编码基因、几丁质酶基因、β-1,3-葡聚糖酶基因、核糖体失活蛋白基因、植保素合成酶基因、抗真菌蛋白基因、过氧化物酶基因和病程相关蛋白基因。
短句来源
  “过氧化物酶基因”译为未确定词的双语例句
    This thesis introduces the functional mechanism of plant resistance genes to fungous diseases, and someexamples of the genes, such as, chitinese gene, β-1,3-glucanase gene, antitoxin genes, rip gene peroxides genes and SARrelated resistance genes. It analyzes the value of application of these genes and the great improvements made in theresearch of plant resistance mechanisms with the development of molecular biology.
    对几丁质酶基因与β-1,3-葡聚糖酶基因、抗毒素基因(如3’,4’,5’-三羟芪合成酶基因、玉米hml基因、亚麻I6基因等)、rip基因、过氧化物酶基因及SAR的抗病基因等植物抗真菌病害基因的特点及作用机理作了阐述,指出了它们在农业生产上的应用价值。
短句来源
    The induction in CBB_4, a resistant rice line to X. oryzae, occurred at the 3 h,peaked at 6 h,and lasted forf48h 24 h,after inoculation with X.
    对于CBB4,白叶枯菌处理3h时过氧化物酶基因开始诱导转录表达,6h达到高峰,诱导表达时间持续至24h;
短句来源
    To Shennong 1033,a susceptible rice line to X. oryzae, the induction was observed at 48 h after inoculation with X.
    对于沈农1033,白叶枯菌处理48h时过氧化物酶基因才开始诱导转录表达;
短句来源
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  peroxidase gene
Coding DNA of the tobacco anionic peroxidase gene was cloned in pET40b vector.
      
The problem of 11 arginine codons, rare in procaryotes, in the tobacco peroxidase gene was solved using E.
      
Using this method, several genes including Manganese peroxidase gene (Mnp) of Phanerochaete chrysosporium (P.
      
versicolor) and Cip1 peroxidase gene (cip 1) of Coprinus cinereus (C.
      
A map of chromosome 2 spanning 119cM and flanked by two peroxidase gene loci was constructed.
      
更多          
  peroxidase genes
Expressed sequence tags (EST) analysis of all putative peroxidase genes of A.
      
Intraspecific polymorphism in peroxidase genes located on Arabidopsis thaliana chromosome 5
      
Nucleotide sequences of five peroxidase genes AtPrx52-AtPrx56 located on the upper arm of chromosome 5 were comparatively analyzed for six Arabidopsis thaliana ecotypes and lines (Columbia, Dijon-M, Blanes-M, Enkheim-M, Ler, and K-156).
      
Polymorphism of the Catalase and Glutathione Peroxidase Genes and Macrovascular Complications in Non-Insulin-Dependent Diabetic
      
Results suggest that these species may be closely related in phylogeny, and/or geographic isolation changes the peroxidase genes through mutation and selection.
      
更多          
  peroxidase gene
Coding DNA of the tobacco anionic peroxidase gene was cloned in pET40b vector.
      
The problem of 11 arginine codons, rare in procaryotes, in the tobacco peroxidase gene was solved using E.
      
Using this method, several genes including Manganese peroxidase gene (Mnp) of Phanerochaete chrysosporium (P.
      
versicolor) and Cip1 peroxidase gene (cip 1) of Coprinus cinereus (C.
      
A map of chromosome 2 spanning 119cM and flanked by two peroxidase gene loci was constructed.
      
更多          


The recent progress of research on peroxidase in plant disease resistance is reviewed.It is induced that the peroxidase activity increases and the peroxidase isozymes changes by pathogens infection.These increased peroxidaes activity or specific peroxidase isozymes may be to catalyse formation of bactericide,or to enhance biosynthesis of lignin and suberin,or to participate in forming papillae and accumulation of granular deposits at sites of penetration,therefore they would form general resistance and non-specific...

The recent progress of research on peroxidase in plant disease resistance is reviewed.It is induced that the peroxidase activity increases and the peroxidase isozymes changes by pathogens infection.These increased peroxidaes activity or specific peroxidase isozymes may be to catalyse formation of bactericide,or to enhance biosynthesis of lignin and suberin,or to participate in forming papillae and accumulation of granular deposits at sites of penetration,therefore they would form general resistance and non-specific resistance.Various peroxidases have different specificity,they play a different part in plant disease resistance.It is not sure that the constitutive expression of peroxidase genes in the transgenic plant can be effective against pathogens infection.

综述了过氧化物酶在植物抗病性方面的研究进展 ,认为病原物的侵染诱导导致植物过氧化物酶活性升高和过氧化物酶同工酶种类发生改变。这些高活性的过氧化物酶或特异性的同工酶 ,或由于催化合成了杀菌物质 ,或由于提高了木质素、木栓质的生物合成而形成物理屏障 ,或者由于参与乳突形成和颗粒状沉积物的积累 ,从而构成了植物的一般抗病性和非专化抗病性。各种过氧化物酶的专化性有所不同 ,它们在植物抗病性中的作用也不尽一样。导入过氧化物酶基因 ,构成组成型表达的转基因植物 ,不一定能有效地抵抗病原物的侵袭。

Relationship of phenylalanine ammonia lyase gene (PAL), cytosolic ascorbate peroxidase gene (apx) and peroxidase K gene (POX K) with resistance to Exserohilum turcicum in maize was analysed by PCR and RT-PCR, in which resistant and susceptible isolines of maize were used as experimental materials.It was found that there was no difference in the structure and constitution of defense genes between resistant and susceptible isolines, but the transcriptional expression of these three defense genes in resistant isoline...

Relationship of phenylalanine ammonia lyase gene (PAL), cytosolic ascorbate peroxidase gene (apx) and peroxidase K gene (POX K) with resistance to Exserohilum turcicum in maize was analysed by PCR and RT-PCR, in which resistant and susceptible isolines of maize were used as experimental materials.It was found that there was no difference in the structure and constitution of defense genes between resistant and susceptible isolines, but the transcriptional expression of these three defense genes in resistant isoline was obviously higher than in susceptible isoline after inoculation with E.turcicum.

以玉米抗、感大斑突脐孢菌近等基因系为材料 ,采用PCR和RT -PCR技术 ,初步研究了苯丙氨酸解氨酶基因 (PAL)、胞液抗坏血酸过氧化物酶基因 (apx)和过氧化物酶K基因 (POXK)等防卫基因与玉米对大斑病菌抗性的关系。结果表明 ,在玉米抗病和感病自交系间 ,没有发现防卫基因在结构和组成上的差异。但在受到玉米大斑突脐胞菌侵染诱导后 ,玉米抗病系中防卫基因在转录水平上的表达强度明显高于感病系。

This thesis introduces the functional mechanism of plant resistance genes to fungous diseases, and someexamples of the genes, such as, chitinese gene, β-1,3-glucanase gene, antitoxin genes, rip gene peroxides genes and SARrelated resistance genes. It analyzes the value of application of these genes and the great improvements made in theresearch of plant resistance mechanisms with the development of molecular biology.

对几丁质酶基因与β-1,3-葡聚糖酶基因、抗毒素基因(如3’,4’,5’-三羟芪合成酶基因、玉米hml基因、亚麻I6基因等)、rip基因、过氧化物酶基因及SAR的抗病基因等植物抗真菌病害基因的特点及作用机理作了阐述,指出了它们在农业生产上的应用价值。

 
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