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豌豆根瘤菌胞外多糖合成及结瘤所需的pss基因分析:其一级结构以及与psi和其他结瘤基因的相互作用

Analysis of pss genes of Rhizobium leguminosarum required for exopolysaccharide synthesis and nodulation of peas: their primary structure and their interaction with psi and other nodulation genes.

作者信息

Borthakur D, Barker R F, Latchford J W, Rossen L, Johnston A W

机构信息

John Innes Institute, Norwich, UK.

出版信息

Mol Gen Genet. 1988 Jul;213(1):155-62. doi: 10.1007/BF00333413.

Abstract

Strains of Rhizobium leguminosarum (R.l.) biovar viciae containing pss mutations fail to make the acidic exopolysaccharides (EPS) and are unable to nodulate peas. It was found that they also failed to nodulate Vicia hirsuta, another host of this biovar. When peas were co-inoculated with pss mutant derivatives of a strain of R.l. by viciae containing a sym plasmid plus a cured strain lacking a sym plasmid (and which is thus Nod-, but for different reasons) but which makes the acidic EPS, normal numbers of nodules were formed, the majority of which failed to fix nitrogen (the occasional Fix+ nodules were presumably induced by strains that arose as a result of genetic exchange between cells of the two inoculants in the rhizosphere). Bacteria from the Fix- nodules contained, exclusively, the strain lacking its sym plasmid. When pss mutant strains were co-inoculated with a Nod- strain with a mutation in the regulatory gene nodD (which is on the sym plasmid pRL1JI), normal numbers of Fix+ nodules were formed, all of which were occupied solely by the nodD mutant strain. Since a mutation in nodD abolishes activation of other nod genes required for early stages of infection, these nod genes appear to be dispensable for subsequent stages in nodule development. Recombinant plasmids, containing cloned pss genes, overcame the inhibitory effects of psi, a gene which when cloned in the plasmid vector pKT230, inhibits both EPS production and nodulation ability. Determination of the sequence of the pss DNA showed that one, or perhaps two, genes are required for correcting strains that either carry pss mutations or contain multi-copy psi.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

含有pss突变的豌豆根瘤菌(R.l.)生物变种豌豆致病变种无法产生酸性胞外多糖(EPS),并且不能使豌豆结瘤。研究发现,它们也不能使该生物变种的另一宿主——硬毛野豌豆结瘤。当豌豆与含有共生质粒的豌豆根瘤菌菌株的pss突变衍生物以及缺少共生质粒(因此是结瘤缺陷型,但原因不同)但能产生酸性EPS的治愈菌株共同接种时,形成了正常数量的根瘤,其中大多数根瘤无法固氮(偶尔出现的固氮阳性根瘤可能是由根际中两种接种物细胞间基因交换产生的菌株诱导形成的)。来自固氮阴性根瘤的细菌仅含有缺少其共生质粒的菌株。当pss突变菌株与调节基因nodD(位于共生质粒pRL1JI上)发生突变的结瘤缺陷型菌株共同接种时,形成了正常数量的固氮阳性根瘤,所有这些根瘤仅被nodD突变菌株占据。由于nodD突变消除了感染早期所需的其他nod基因的激活,这些nod基因似乎在根瘤发育的后续阶段是可有可无的。含有克隆的pss基因的重组质粒克服了psi的抑制作用,psi基因克隆到质粒载体pKT230中时,会抑制EPS产生和结瘤能力。pss DNA序列的测定表明,校正携带pss突变或含有多拷贝psi的菌株需要一个也许两个基因。(摘要截短于250字)

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