首页> 外文学位 >STRUCTURAL AND GENETIC STUDIES OF NITROGEN FIXATION (NIF) GENES IN SLOW-GROWING RHIZOBIA AND CHARACTERIZATION OF MUTANTS THAT FAIL TO FIX NITROGEN (NUCLEOTIDE SEQUENCE, PROMOTERS, TRANSCRIPTION INITIATION, FUSIONS, CONSERVATION).
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STRUCTURAL AND GENETIC STUDIES OF NITROGEN FIXATION (NIF) GENES IN SLOW-GROWING RHIZOBIA AND CHARACTERIZATION OF MUTANTS THAT FAIL TO FIX NITROGEN (NUCLEOTIDE SEQUENCE, PROMOTERS, TRANSCRIPTION INITIATION, FUSIONS, CONSERVATION).

机译:缓慢生长的根瘤菌中固氮(NIF)基因的结构和遗传研究以及无法固氮的突变体的特征(核苷酸序列,启动子,转录起始,融合,保守)。

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摘要

The nucleotide sequence of the structural gene (nifD) coding for the alpha-subunit of dinitrogenase along with its flanking sequences has been determined in the slow-growing cowpea Rhizobium IRc78. The coding sequence consists of 1500 nucleotides, which corresponds to a predicted amino acid sequence of 500 residues and a molecular weight of 56,025. Cowpea Rhizobium nifD and nifK (encodes the beta-subunit of dinitrogenase) are linked, separated by 69 nucleotides. The structural genes of dinitrogenase (nifDK) are transcribed from a different promoter than the structural gene of dinitrogenase reductase (nifH). Transcription of nifDK initiates 41 nucleotides upstream of the start codon for the nifDK operon. Two transcription initiation sites, localized at 152 and 114 nucleotides upstream of the start codon, were determined for the nifH gene. The promoter and partial N-terminal nucleotide sequence, and transcription initiation of the nifH gene from stem Rhizobium BTAil were also determined. Unexpectedly, the nucleotide sequence displayed 100% homology to the corresponding sequence from cowpea Rhizobium IRc78 and the transcription initiation sites were localized to identical positions. Two nucleotide sequences, a hexamer (GGTTGC) and a pentamer (TGGCA), centered at approximately -15 and -25, respectively, are conserved in the nifD and nifH promoter regions and are not present in the 69-nucleotide nifDK junction. No sequence homology other than a possible ribosome binding site, TTGAA (or T)GGA, located 14 nucleotides upstream of the initiation codon was detected between the transcribed but untranslated leader regions of nifD and nifH.; The isolation and characterization of nitrogenase promoters and structural genes in slow-growing rhizobia has facilitated the translational fusion of nitrogenase promoter and N-terminal sequences to the lacZ gene. Insertion into a recombinational/insertional vector that is mobilizable to Rhizobium enabled the stable chromosomal integration of nif promoter-lacZ fusions in Bradyrhizobium japonicum I110 Fix('-) mutants. When assayed for the inability to activate beta-galactosidase expression no nif regulatory mutants were identified from among the general class of Fix('-) mutants. However, the level of beta-galactosidase activity present in strains containing the nifH promoter-lacZ fusion was two-fold higher than observed in strains containing the nifD promoter-lacZ fusion.
机译:已经在生长缓慢的cow豆根瘤菌IRc78中确定了编码双氮酶α-亚基的结构基因(nifD)的核苷酸序列及其侧翼序列。编码序列由1500个核苷酸组成,对应于500个残基的预测氨基酸序列,分子量为56,025。 pea豆根瘤菌nifD和nifK(编码双氮酶的β亚基)相互连接,被69个核苷酸隔开。双氮酶(nifDK)的结构基因是从不同于双氮酶还原酶(nifH)的启动子转录的。 nifDK的转录会在nifDK操纵子的起始密码子上游起始41个核苷酸。对于nifH基因,确定了两个转录起始位点,位于起始密码子上游的152和114个核苷酸处。还确定了来自茎根瘤菌BTAil的nifH基因的启动子和部分N端核苷酸序列以及转录起始。出乎意料的是,该核苷酸序列与来自cow豆根瘤菌IRc78的相应序列表现出100%的同源性,并且转录起始位点位于相同的位置。两个核苷酸序列,分别位于大约-15和-25中心的六聚体(GGTTGC)和五聚体(TGGCA),在nifD和nifH启动子区域中保守,在69个核苷酸的nifDK连接中不存在。在转录的但未翻译的nifD和nifH的前导区之间未检测到除可能的核糖体结合位点TTGAA(或T)GGA以外的序列同源性,其位于起始密码子上游14个核苷酸处。慢生根瘤菌中固氮酶启动子和结构基因的分离和表征促进了固氮酶启动子和N端序列与lacZ基因的翻译融合。插入到根瘤菌可动员的重组/插入载体中,可将nif启动子-lacZ融合体稳定整合到日本根瘤菌I110 Fix('-)突变体中。当测定不能激活β-半乳糖苷酶表达的能力时,没有从一般类别的Fix('-)突变体中鉴定出nif调节突变体。但是,包含nifH启动子-lacZ融合体的菌株中存在的β-半乳糖苷酶活性水平比包含nifD启动子-lacZ融合体的菌株中观察到的高两倍。

著录项

  • 作者

    YUN, ALLEN CHUAN.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

  • 入库时间 2022-08-17 11:51:06

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