黑粉

  • 网络Black powder;hater;platinum black powder
黑粉黑粉
  1. 玉米黑粉菌DNA载体的构建和它的原生质球的转化和再生

    The construction of DNA vector and spheroplast transformation and regeneration of Ustilago maydis

  2. 黑粉对PM镍基粉末高温合金组织性能的影响

    Influence of " black powder " on Microstructure and properties of PM Ni-based superalloy

  3. 本文报道玉米黑粉菌mtDNA的限制性内切酶酶切图谱。

    A restriction map was constructed for mtDNA of Ustilago maydis .

  4. 玉米黑粉菌mtDNA的研究Ⅰ.DNA克隆和基因图谱

    Studies of mtDNA of Ustilago maydis ⅰ . Cloning and Gene Mapping

  5. 通过AFM研究抑菌剂萎锈灵和潮霉素对玉米黑粉菌细胞形貌的影响。

    The effects of antibacterial agent hygromycin and Carboxin on morphology of Ustilago maydis were investigated by AFM .

  6. 主要内容如下:1.用AFM研究三唑酮对玉米黑粉菌后形貌的影响。

    The main contents are as follows : 1 . AFM study of the effect of triadimefon on the surface morphology of Ustilago maydis .

  7. 从高粱黑粉菌中提取出水提水溶多糖B1和碱提水溶多糖B2,经分析及测定2种多糖均为纯多糖。

    The water extractive water soluble polysaccharide B 1 and the alkali extractive water soluble polysaccharide B 2 were extracted from ustilaginaceae .

  8. 结果表明,新方法所制得的黑粉具有明显的2212超导相片层状结构和特征晶型,符合Bi超导材料对前驱体粉末的要求。

    Results indicate that the obtained black powder shows apparent plate-like crystal structure mainly containing 2212 phase , and it satisfies the requirement of the Bi-based superconductor precursor powder .

  9. 玉米黑粉菌含有丰富的蛋白质、膳食纤维、矿物质(尤其是K,Fe,Se含量较高)、维生素、真菌多糖以及人体必需氨基酸。

    Corn smut fungus is rich in protein , dietary fibre , minerals ( especially potassium , iron , selenium content higher ), vitamins , fungus polysaccharide and reasonably necessary to the formation of amino acid .

  10. 采用黑粉低填充HDPE、LLDPE基体制备纳米复合材料,研究了复合材料的结构和性质。

    The nanocomposites were prepared by low filling black powder to HDPE ( High-Density Polyethylene ) and LLDPE ( Linear Low-Density of Polyethylene ), the structures and properties of composites were studied .

  11. 玉米黑粉菌多糖提取的最优条件为1∶40的料液比,80℃水浴条件下,浸提3次,每次浸提2h,其水溶性粗多糖提取率为约10%。

    The optimal extraction conditions was : the ratio between powder and water 1 ∶ 40 , the extraction temperature 80 ℃, the number of times three times , the extraction time 2h , the yield was about 10 % .

  12. 腥黑粉菌属3种检疫性真菌rDNA-IGS区的扩增及其序列分析

    Amplification and sequence analysis of the rDNA intergenic spacer ( rDNA-IGS ) from three Tilletia species

  13. 玉米丝黑穗病是由丝轴黑粉菌(Sporisoriumreilianum)引起的严重威胁玉米产量的主要病害之一。

    Maize head smut is a serious threat to maize production of disease caused by the wire axis black powder bacteria ( Sporisorium reilianum ) .

  14. 本文对我国黑粉菌属(Ustilago)51个样本,选取33个形态学和生物学编码性状进行了类平均法的系统聚类分析。

    A hierarchical clustering analysis was tried with 51 species-specimen under the genus Ustilago hitherto collected and identified from China by many authors . The result was based on 33 morphological and biological coding characters as well as with group-average method .

  15. 茭白品种间黑粉菌部分生物学特性

    Some Biological Characteristics of Ustilago esculenta in Different Zizania latifolia Cultivars

  16. 玉蜀黍黑粉菌担孢子萌发及侵染过程的研究

    Studies on Germination And Infection of Basidiospores of Corn Smut Fungi

  17. 我很想知道他们到底问的什么黑粉?

    I really want to know what fans they really asked .

  18. 新疆黑粉菌的初步研究

    Preliminary report of the smut fungi in xinjiang , china

  19. 甘肃省饲用植物的黑粉菌

    Smut fungus of feed plants in Gansu Prov in CE

  20. 玉米黑粉菌的加工利用分析

    Analysis of Processing and Utilizing of Corn Smut Fungus

  21. 河南黑粉菌初步调查

    A Preliminary Survey on Smut Fungi in Henan Province

  22. 黑粉菌属的聚类分析

    Cluster analysis of the species of the genus Ustilago

  23. 茭白黑粉菌摇瓶发酵条件的研究

    Study on shake-flask culture conditions of Ustilago esculenta fermentation

  24. 水稻腥黑粉病菌的单孢检测

    The detection for single teliospore of Tilletia horrida

  25. 甘肃省黑粉菌分类研究

    Taxonomic Studies on Smut in the Gansu Province

  26. 玉米黑粉病菌基因组中的微卫星序列的组成和分布

    Frequency and Distribution of Microsatellites in the Genome of Phytopathogenic Fungus , Ustilago maydis

  27. 水稻糙米色素基因、育性基因的定位及稻粒黑粉菌侵染水稻的组织病理学研究

    Gene Mapping of Pigment Gene and Fertility Gene , and Histopathology of Neovossia Horrida in Rice

  28. 尽管全基因组有极大的相似性,但玉米瘤黑粉菌和马拉色菌分泌不同的蛋白。

    Despite an overall genomic similarity , U.maydis and Malassezia differ in the proteins they secrete .

  29. 分析了“黑粉”形成的原因,提出了控制和防止出现“黑粉”的可行性措施。

    The formation of " black powder " is analyzed and available control methods are proposed .

  30. 高粱黑粉菌多糖的研究

    Research for the ustilaginaceae polysaccharide