配子

pèi zǐ
  • gamete
配子配子
配子 [pèi zǐ]
  • [gamete] 一种成熟的生殖细胞

配子[pèi zǐ]
  1. 东方百合2n雌配子诱导及三倍体多样性研究

    Study on 2n Female Gamete Induction and Triploid Diversity of Lilium oriental

  2. 马铃薯2n配子遗传机理及其在育种中的利用价值

    Genetic Mechanisms of Potato 2n gamete and Its Utility Value in Breeding

  3. 很多生物体中雄配子与雌配子是不同的。

    In many organisms the male and female gametes are different .

  4. 雌配子体中的极核和卵核遗传上是同一的。

    The polar and egg nuclei of the female gametophyte are genetically identical .

  5. 海带雌配子体对维生素C的反应

    Responses to vitamin C of the female gametophytes of Laminaria japonica

  6. 接种后198h左右虫体开始进入配子生殖阶段。

    Development of gametes began at about 198 h after infection .

  7. (普通小麦/长穗偃麦草)F1小孢子发生和雄配子体发育的细胞学特点

    Cytological characteristic on Microsporogenesis and male gametophyte development of ( t.aestivum/e.elongata ) f 1

  8. 三种抗凝法取血对食蟹猴疟原虫B株配子体活力的影响

    Various Effect of Collecting Blood in Three Different Methods of Anticoagulation on the Activity of Plasmodium Cynomolgi B Strain ′ s Gametes

  9. 水稻籼粳交F1花粉育性检测方法的研究&兼论其雌雄配子的育性问题

    Study on Method of Measuring Pollen Fertility of F_1 Between Indica and Japonic and Gamete Fertility

  10. 天竺葵质体和线粒体双亲遗传的细胞学机理&雄性和雌性配子超微结构和DNA荧光的研究

    The cytological mechanism of biparental cytoplasmic inheritance in Pelargonium hortorum & ultrastructural and DNA fluorescence studies of male and female gametes

  11. 光照、温度和pH值对4种桫椤科植物孢子萌发及早期配子体发育的影响

    Effects of Light , Temperature and pH on Spore Germination and Early Gametophytic Development of Four Species in Cyatheaceae

  12. 第二部分:利用金纳米粒子标记的DNA适配子为探针测定凝血酶的共振光散射分析。

    Part two : Study on the Resonance Light Scattering analysis to determine thrombin by using gold nanoparticle-labeled DNA aptamer as probe .

  13. 为了语义上的纯净和未来的可扩展性,这个SQL函数使用一个匹配子句INHERITISOLATIONLEVELWITHLOCKREQUEST。

    For semantic cleanliness and future extensibility , the SQL function uses a matching clause INHERIT ISOLATION LEVEL WITH LOCK REQUEST .

  14. 随机单链DNA文库SELEX筛选寡核苷酸适配子方法的建立

    A Procedure for SELEX Screening Aptamers From ssDNA Random Library

  15. 在有花植物最广泛的配子体SI系统中,亲和及不亲和的花粉管都生长到花柱中。

    In the most widespread SI system in flowering plants , both compatible and incompatible pollen tubes grow down the style .

  16. IAA对配子体附着没有明显的促进或抑制作用;

    Inhibition IAA had no effect on the attachment .

  17. 利用RAPD标记和单株树大配子体构建马尾松的分子标记连锁图谱

    Construction of molecular linkage map in Masson Pine Using RAPD markers and megagametophytes from a single tree

  18. CaM和类CyclinC蛋白在雌配子体游离核有丝分裂过程中起着重要作用。

    It was found that CaM and Cyclin C-like protein played an important role in the free nuclei mitosis of female gametophyte .

  19. 配子体SI植物虽然都具有其SI的功能而阻止自我受精,但它们采取的信号转导途径是不同的。

    Although gametophytic self-incompatibility functions can ultimately prevent self-fertilization , flowering plants have ( adopted ) different signal transduction pathways to reject self pollen .

  20. 2n配子的发生及在果树育种中的应用

    The Occurrence of 2n Garnetes and Their Uses in Fruit Breeding

  21. 紫荆(CercischinensisBunge)大孢子发生及雌配子体发育的研究

    The studies of Megasporogenesis and megagametogenesis of Cercis chinensis Bunge

  22. 果树2n配子产生及应用研究进展

    Research progress of the occurrence and utilization of 2n gametes in fruit trees

  23. 植物2n配子发生及其遗传标记研究进展

    Advances in Researches on Genetic Markers of 2n Gametes

  24. 大白菜2n配子发生的细胞学机制研究

    Cytological Mechanism of 2n Gamete Occurrence and It 's Application of Chinese Cabbage

  25. 所有匹配子空间检测器都具有CFAR特性。

    All the MSDs possess CFAR property .

  26. 用户级心跳基础平台是一个分层的体系结构,主要分为通讯子系统、心跳子系统、适配子系统、配置子系统和log及测试子系统五大部分。

    We present the multi-tiers architecture , which has three tiers of communication subsystem , heartbeat subsystem and adaptation subsystem , and two assistant subsystems of configuration , log and test .

  27. 羊草(Leymuschinensis(Trin)Kitag.)的小孢子发生和雄配子体形成

    The Microsporogenesis and the Formation of Male Gametophytes in Leymus Chinensis ( Trin . ) Kitag

  28. 二是形成n-n型的配子,产生原始类型。

    Two formed n n type gametes and produced original type .

  29. 观察28d配子体率为85.7%。

    The rate of gametocyte during the 28-day observation period was 85.7 % .

  30. 配子体基因Ga控制着玉米的杂交不亲和性,杂交不亲和性具有遗传隔离和防杂保纯的作用。

    Cross incompatibility in Zea mays is controlled by gametophyte gene ( Ga gene ) . The cross-incompatibility has the function of genetic isolation and keeping seed purity .