叶绿体基因

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  • chloroplast gene
叶绿体基因叶绿体基因
  1. 其中检测到23个叶绿体基因表达相关基因均呈现下降趋势。

    There were 23 chloroplast gene expression show a downward trend .

  2. 几种影响N-甲基-N-亚硝基脲诱导向日葵叶绿体基因突变的生理因素

    Several Physiological Factors Influencing Chloroplast Gene Mutation of Sunflower by Mutagen N-methyl-N-nitrosourea

  3. 核基因中的GC含量明显高于线粒体和叶绿体基因中的。

    GC contents in nuclear genes are higher than that in mitochondrion and chloroplast genes .

  4. 两个叶绿体基因位点的DNA条形码在桉属种间鉴定中的应用这些校验数位计算工作与条形码相似。

    A Two-locus Chloroplast ( cp ) DNA Barcode for Identification of Different Species in Eucalyptus This check digit calculation works similar to bar coding .

  5. 细胞色素b559是由叶绿体基因编码α、β亚基为单位构成的一种血红素蛋白,是光系统II反应中心的重要组分。

    Cytochrome b_559 , a heme protein composed of α _ and β _subunits encoded by chloroplast genomes , is an integral component of the PSII reaction center .

  6. 共检测到8个控制光合作用和其它生理性状的QTL。叶绿体基因与光合作用

    Total 8 QTLs for photosynthesis and related physiological characters were detected . CHLOROPLAST GENES AND PHOTOSYNTHESIS

  7. 线粒体和叶绿体基因GC含量低,主要偏爱使用以A或T碱基结尾的密码子。

    The genes of mitochondria and chloroplast with low GC content are preferred to codons with A and T at the third codon position .

  8. 由于其结构的复杂性,PSⅡ的生物发生和组装需要核基因与叶绿体基因编码的蛋白以一定次序地合成并组装。

    Because of the structural complexity of PSII , biogenesis and assembly of PSII requires the coordinated synthesis and assembly of both chloroplast - and nuclear-encoded proteins .

  9. 叶绿体基因(ChloroplastDNA)远比核基因(nuclearDNA)丰富,因为每个植物细胞可以有数千个叶绿体基因,但是每个核基因只有两个到四个核基因副本。

    Chloroplast DNA is vastly more abundant than nuclear DNA , since each plant cell can have thousands of copies of chloroplast genes but just two to four copies of each nuclear gene .

  10. 高等植物叶绿体基因由两种不同类型的RNA聚合酶转录,它们是核基因编码的RNA聚合酶(NEP)和叶绿体基因编码的RNA聚合酶(PEP)。

    In higher plants chloroplast genes are transcribed by two types of RNA polymerases : nuclear-encoded polymerase ( NEP ) and plastid-encoded polymerase ( PEP ) .

  11. 故推测小麦D2型光敏性细胞质雄性不育,在长光照条件下,雄蕊雌化与不育表型的表达可能与核基因、线粒体基因和叶绿体基因的表达阻遏调控有关。

    So it can be infered from the facts above that on the long-day condition pistillody of stamens in D 2 PCMS line is probably relation to repression of genes expression in nuclei 、 chloroplast and mitochondria .

  12. 叶绿体基因工程:一种植物生物技术的新方法

    Chloroplast Genetic Engineering : A New Approach in Plant Biotechnology

  13. 通过叶绿体基因工程在烟草中合成中长链羟基脂肪酸聚酯

    Synthesis of medium-chain-length-polyhydroxyalkanoates in tobacco via chloroplast genetic engineering

  14. 从水稻叶绿体基因文库中快速克隆叶绿体基因

    Quickly cloning chloroplast genes from rice CP DNA library

  15. 被子植物叶绿体基因及其表达

    Chloroplast Genes and The Expression in Angiosperms

  16. 本研究成果为衣藻叶绿体基因工程的进一步研究奠定了基础。

    The results of this research lay the foundation for further chlamydomonas chloroplast engineering study .

  17. 叶绿体基因工程是高效表达外源蛋白的有效途径之一。

    The chloroplast genetic engineering is one of the effective ways to express foreign proteins .

  18. 该基因组文库中叶绿体基因的污染率低于0.2%;

    Contamination of the genomic library with chloroplast clones was very low ( 0.2 % ) .

  19. 而且,利用叶绿体基因工程来改良作物的产量及重要化合物的含量具有重要意义。

    Futhermore with the progression in chloroplast genetic engineering , we can improve the quantity and quality of crops efficiently .

  20. 这为系统研究叶绿体基因编码蛋白何时何阶段稳定插入类囊体膜并组装成功能复合物提供了研究平台。

    These provide research basis for studying when and how the chloroplast encoded proteins insert and assembly into the thylakoid membrane .

  21. 结合叶绿体基因matK/trnK序列和生境分析不同生态型芦苇的系统发育

    Analysis of phylogeny of different ecotypes of reed ( Phragmites communis Trin . ) based on chloroplast DNA matK / trnK sequence and ecological environment

  22. 针对落叶松种子鉴别方面的不足,本文主要对落叶松的部分叶绿体基因、线粒体基因和核糖体ITS序列进行了研究。

    In this paper , partial chloroplast DNA ( cpDNA ), mitochondrial DNA ( mtDNA ) and nuclear internal transcribed spacer sequence ( ITS ) was studied for the limitation to identify larix species .

  23. 棉花的基因克隆主要集中在纤维品质、抗逆、棉酚相关基因、叶绿体基因、调控元件和发育相关酶蛋白等六个方面。

    Advances have been obtained in the research of cotton gene cloning , which is mainly related to fiber quality , stress resistance , genes related gossypol , chloroplast genes , regulation elements , and enzymes , which are related to growth .

  24. PCR法扩增盐藻叶绿体atpA基因

    Amplification of atpA gene fragment from chloroplast of Dunaliella salina by PCR

  25. 球形棕囊藻(Phaeocystisglobosa)叶绿体psaA基因片段的序列分析

    Sequence Analyses of Chloroplastic psaA Gene Fragment from Phaeocystis globosa

  26. 遗传工程稻叶绿体psbA基因的克隆及结构分析

    Isolation and Characterization of the Chloroplast psbA Gene from Engineering Rice

  27. 叶绿体atpE基因表达产物的生化特性

    The Properties of Expressed Product of Chloroplast atpE Gene

  28. 蚕豆叶绿体atpE基因的克隆、测序和表达

    Cloning , Sequencing and Expression of the atp E Gene of Broad Bean Chloroplast

  29. 小麦叶绿体psbA基因的克隆及表达

    Cloning and expression of wheat chloroplast psbA gene

  30. 通过生物信息学软件预测,这段区间包括6个叶绿体蛋白基因。

    Homologous analysis indicated that this region contained six chloroplast protein genes .