营养体

yíng yǎng tǐ
  • vegetative mass;trophosome;trophozoite
营养体营养体
营养体[yíng yǎng tǐ]
  1. 大麦绿色营养体研究与展望

    Study on Barley Green Vegetative Mass and Prospect

  2. 其干物质积累强度的变化为慢快慢式,其分配率变化特点是:生育初期干物质主要分配于营养体;和中国一起成长

    The distribution was mainly in vegetative mass at the first period of growing stage . Growing with China

  3. 从针叶树营养体组织中提取高纯度DNA的方法

    DNA extracting methods from vegetative tissue of conifer

  4. 棉花黄萎病菌营养体亲和群的RAPD图谱特征

    RAPD Patterns Characteristic for VCGs of Cotton Verticillium Wilt Pathogen

  5. 可将219个菌株划分为131个营养体亲和组(VCGs),从而推算出至少有8个VC基因控制菌株的营养体亲和性。

    219 isolates were divided into 131 vegetative compatible groups ( VCG_s ) .

  6. 适宜的N肥能显著促进沙地衬膜水稻营养体的生长,P肥则对水稻后期籽粒灌浆结实有明显效应。

    The proper quantities of nitrogen fertilizer can improve the vegetative growth of rice cultivated in film-bottomed sandy land , while phosphorus fertilizer has obvious effects on seeds setting and filling .

  7. 菌株的营养体细胞细长杆状,在Ht平板上,作滑行运动。

    The vegetative cells are cylindrical rods , and gliding movement on the Ht agar plates .

  8. 我国小麦禾谷镰刀菌(Fusariumgraminearum)营养体亲合性与致病性研究

    The vegetative compatibility and pathogenicity of Fusarium graminearum isolates in wheat in China

  9. 利用Nit突变体和RAPD标记研究玉米弯孢叶斑病菌的营养体亲和性

    Study on Vegetative Compatibility of Maize Curvularia Leaf Spot Fungus with Nit Mutants and RAPD Fingerprint

  10. N、K协调和足量有利于植物营养体的发育和延长功能叶的寿命,有利于光合产物的合成。

    The N , K cooperativeness and amount of foot were advantageous to growth of the plant nourishment body and the life of the extension function leaf , and were advantageous to compose photosynthesis .

  11. 分别利用Nit突变体技术和RAPD标记,对来自河南省不同地区的10个新月弯孢菌株的营养体亲和性进行了研究。

    Vegetative compatibility of 10 isolates of Curvularia lunata from different areas of Henan province was analyzed with nitrate non-utilizing ( Nit ) mutants and RAPD fingerprints techniques .

  12. 此外,首次引入一种亚硝酸反应在这类研究中的应用,还提出了互补指数概念与公式来表示nit突变株营养体之间亲和的能力。

    A color indicating method in nitrite excretion tests was firstly intro - duced in such kind of studies and a new concept with a formula on complementation index ( CI ) was proposed to express the vegetative compatibility in pairing tests be - tween nit mutants .

  13. 低温处理10~72d可以提早鳞芽花芽分化期,但对生长有所抑制,使植株营养体较小,低温处理时间越长,植株长势越弱。

    The scaly bud and flower bud differentiation period came earlier if seed cloves were treated for 10 ~ 72d . But this restrained garlic plant growth and made plant small . The longer treated time was , the weaker plants were .

  14. 试论竹类植物营养体分类

    A preliminary study on bamboo classification according to the vegetative characters

  15. 可作为饲料的水稻绿色营养体的营养素产量分析

    Nutrient Yield of Vegetative Mass of Rice as Green Feed

  16. 只要给予有利的条件,这种营养体便生长,使产品腐败。

    When given favorable conditions this vegetation grew and spoiled the products .

  17. 氮素用量和密度对玉米营养体产量的影响

    Effect of nitrogen application and sowing density on the vegetative yield of corn

  18. 真菌营养体亲和性的研究

    Advances in the Studies of Fungi Vegetative Compatibility Group

  19. 大麦绿色营养体利用价值初探

    On the exploitation of barley green vegetative organ

  20. 新月弯孢菌营养体亲和群研究

    Study on Vegetative Compatibility Groups of Curvularia Lunata

  21. 我国营养体产业发展及种植业结构调整

    Developing vegetative industry and optimizing structure of cropping

  22. 杨树溃疡病病原菌营养体亲和性研究

    Study on Vegetative Compatibility of Poplar-Canker 's Pathogen

  23. 发展营养体农业的理论基础和实践意义

    Theoretical basis and practical significance of vegetative agriculture

  24. 花叶开唇兰营养体的结构

    The structure of Nutritive Body in Anoectochilus roxburghii

  25. 匍匐翦股颖草坪草营养体建坪法的研究

    Research on Vegetative Establishment Methods of Bentgrass

  26. 暖季型草坪草营养体建坪方法的研究

    Vegetative Establishment Methods of Warm Season Turf

  27. 探讨了3株系分化的生理及营养体亲和的遗传基础。

    The basis of genetic of 3 isolations ' physiology and VCG was also discussed .

  28. 不同品种其绿色营养体产量有显著差异,但其营养品质无明显差别。

    There were different in yield of green plant among varieties and without in qualities .

  29. 的确,用棉花塞隔离这种微小营养体是可能的!

    In fact , it was possible to isolate this microscopic vegetation from the cotton plugs !

  30. 就来自江苏省的稻瘟病菌营养体亲和能力与无性重组进行了研究。

    Vegetative compatibility and asexual recombination in M. grisea from Jiangsu province , China were studies .