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Two types of pea leghemoglobin genes showing different O-2-binding affinities and distinct patterns of spatial expression in nodules

机译:两种豌豆血红蛋白基因在结节中表现出不同的O-2-结合亲和力和不同的空间表达模式

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摘要

Five distinct cDNA clones for leghemoglobin (Lb) were isolated from pea (Pisum sativum) nodules. They were classified into two groups designated PsLbA and PsLbB according to sequence homology, O-2-binding affinities of the recombinant proteins, and in situ localization of the mRNAs. The PsLbB group was comprised of four cDNA clones: PsLb120-1, -8, -29, and -34. They showed a high similarity of deduced amino acid sequences and O-2-binding affinities of their recombinant proteins. Among them, the spatial expression pattern of PsLb120-1 was investigated in great detail, indicating that its transcripts were localized in the region from infection zone II to the distal part of nitrogen fixation zone III in effective nodules. PsLb5-10, which is the only cDNA clone of the PsLbA type, differed considerably from the PsLbB type in amino acid sequence, and the recombinant protein had a higher O-2-binding affinity than those of the PsLbB type. The transcripts of PsLb5-10 were detected throughout the central tissue of effective nodules. However, in ineffective nodules on the pea mutant E135 (sym13), transcripts of PsLb5-10 were restricted to the distal portion of the central tissue as well as those of PsLb120-1. These findings indicate that the pea genome contains two types of Lb genes and suggest that they have different roles in the development of nitrogen-fixing symbiosis in pea nodules. [References: 46]
机译:从豌豆(Pisum sativum)根瘤中分离出五个不同的来血红蛋白(Lb)cDNA克隆。根据序列同源性,重组蛋白的O-2-结合亲和力和mRNA的原位定位,将它们分为两组,分别称为PsLbA和PsLbB。 PsLbB组由四个cDNA克隆组成:PsLb120-1,-8,-29和-34。他们显示出其重组蛋白的推导氨基酸序列和O-2-结合亲和力的高度相似性。其中,对PsLb120-1的空间表达模式进行了详细研究,表明其转录本位于有效结节中从感染区II到固氮区III远端的区域。 PsLb5-10是PsLbA型的唯一cDNA克隆,在氨基酸序列上与PsLbB型有很大的不同,并且重组蛋白具有比PsLbB型更高的O-2-结合亲和力。在整个有效结节的中央组织中检测到PsLb5-10的转录本。但是,在豌豆突变体E135(sym13)上无效的根瘤中,PsLb5-10的转录本仅限于中央组织的远端部分以及PsLb120-1的那些部分。这些发现表明豌豆基因组包含两种类型的Lb基因,并表明它们在豌豆根瘤固氮共生过程中具有不同的作用。 [参考:46]

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