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phylogenesis

网络  种系发生; 种系发生学; 系统发生; 形态发生学; 系统生成

英英释义

noun

双语例句

  • Seed dormancy is an adaptation to environmental changes that plants acquire during long-term phylogenesis.
    种子休眠是植物在长期系统发育进程中获得的一种适应环境变化的特性。
  • RAPD Analysis on Genetic Divergence and Phylogenesis of Gekko gecko from Different Areas
    不同地理区域蛤蚧的RAPD分析
  • The phylogenetic relationship analysis demonstrated that subgenus Glycine was early separated from subgenus Soja during evolution. The results provided phylogenesis information of Glycine willd in molecular level.
    系统进化树分析也表明Glycine亚属与Soja亚属在进化过程中分离较早,这从分子水平上为大豆属的分类研究提供了科学的依据。
  • The meiosis abnormalities phenomenon in Dendranthema and some of their hybrids were observed, and the formation mechanism also the role which played in the process of phylogenesis were analyzed.
    对不同倍数性菊属植物及其部分种间杂种的减数分裂异常现象进行观察统计,并分析其形成机制以及在菊属系统演化中的作用。
  • Comparison of Phylogenesis of SARS-CoV and Its Application of Molecular Diagnosis of PCR Techniques
    SARS病毒的种型变异之比较及其PCR的分子诊断技术应用
  • Phylogenesis Analysis of 10 Chinese Indigenous Pig Populations
    10个地方猪群体的系统聚类分析
  • And the application of RAPD technique in aquatic commercial animals includes chiefly the detection of polymorphism, classification, identification of species and varieties, genetic relationship, phylogenesis, construction of genetic linkage map and molecular assisted breeding.
    主要包括物种基因组DNA多态性的检测、物种及品种的分类与鉴定、亲缘关系及系统发育的分析、遗传图谱的构建和分子标记辅助育种。
  • Technique of chromosome micro-dissection and-clone is a bridge connecting classic genetics and cytogenetics, being playing important roles in many fields of biological research, such as genetics, phylogenesis and evolution.
    染色体微分离及微克隆技术是连接经典遗传学与细胞遗传学的重要桥梁,在动植物的遗传、发育和进化等各方面研究中正发挥着越来越重要的作用。
  • At the same time, it puts forward that unless molecular data and the achievements in traditional taxonomy are combined to construct the optimal phylogenetic trees will they not help the development of bryophyte molecular phylogenesis.
    并提出只有将分子数据和传统分类学取得的研究成果结合起来,构建最合理的系统树,才能更好地推动苔藓分子系统学的发展。
  • Studying the genetic structures and phylogenesis within and among populations through mtDNA molecular marker will resort to protect this species effectively.
    利用线粒体DNA分子标记研究红腹锦鸡种内及种间的群体遗传结构和系统发生关系,将对该物种的有效保护起到重要作用。