首页> 外文期刊>Molecular Plant-Microbe Interactions >Competitive Nodulation Blocking of cv. Afghanistan Pea Is Related to High Levels of Nodulation Factors Made by Some Strains of Rhizobium leguminosarum bv. viciae
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Competitive Nodulation Blocking of cv. Afghanistan Pea Is Related to High Levels of Nodulation Factors Made by Some Strains of Rhizobium leguminosarum bv. viciae

机译:竞争性结瘤阻止简历。阿富汗豌豆与某些豆科根瘤菌菌株产生的高水平的结瘤因子有关。蚕豆

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Cultivar Afghanistan peas are resistant to nodulation by many strains of Rhizobium leguminosarum bv. viciae but are nodulated by strain TOM, which carries the host specificity gene nodX . Some strains that lack nodX can inhibit nodulation of cv. Afghanistan by strain TOM. We present evidence that this “competitive nodulation-blocking” (Cnb) phenotype may result from high levels of Nod factors inhibiting nodulation of cv. Afghanistan peas. The TOM nod gene region (including nodX ) is cloned on pIJ1095, and strains (including TOM itself) carrying pIJ1095 nodulate cv. Afghanistan peas very poorly but can nodulate other varieties normally. The presence of pIJ1095, which causes increased levels of Nod factor production, correlates with Cnb. Nodulation of cv. Afghanistan by TOM is also inhibited by a cloned nodD gene that increases nod gene expression and Nod factor production. Nodulation of cv. Afghanistan can be stimulated if nodD on pIJ1095 is mutated, thus severely reducing the level of Nod factor produced. Repression of nod gene expression by nolR eliminates the Cnb phenotype and can stimulate nodulation of cv. Afghanistan. Addition of Nod factors to cv. Afghanistan roots strongly inhibits nodulation. The Cnb+ strains and added Nod factors inhibit infection thread initiation by strain TOM. The sym2A allele determines resistance of cv. Afghanistan to nodulation by strains of R. leguminosarum bv. viciae lacking nodX . We tested whether sym2A is involved in Cnb by using a pea line carrying the sym2A region introgressed from cv. Afghanistan; nodulation in the introgressed line was inhibited by Cnb+ strains. Therefore, the sym2A region has an effect on Cnb, although another locus (or loci) may contribute to the stronger Cnb seen in cv. Afghanistan.
机译:阿富汗品种豌豆对许多豆科根瘤菌菌株都有抗结瘤作用。蚕豆,但被携带宿主特异性基因nodX的TOM菌株根瘤。一些缺乏nodX的菌株可以抑制cv的结节。阿富汗按TOM株。我们提供的证据表明,这种“竞争性结瘤阻断”(Cnb)表型可能是由抑制简历结节的高水平Nod因子引起的。阿富汗豌豆。将TOM nod基因区域(包括nodX)克隆到pIJ1095上,携带pIJ1095结节的菌株(包括TOM本身)结瘤。阿富汗豌豆非常差,但通常可以结瘤其他品种。 pIJ1095的存在会导致Nod因子的产生水平升高,与Cnb相关。简历结节。克隆的nodD基因也抑制了TOM的阿富汗,该基因增加了nod基因的表达和Nod因子的产生。简历结节。如果pIJ1095上的nodD发生突变,可以刺激阿富汗,从而严重降低产生的Nod因子的水平。 nolR抑制nod基因表达可消除Cnb表型并刺激cv结节。阿富汗。将点头因子添加到简历中。阿富汗的根源强烈抑制结瘤。 Cnb + 菌株和添加的Nod因子抑制TOM菌株感染线的启动。 sym2 A 等位基因确定cv的抗性。阿富汗通过豆科植物豆球菌菌株致结。缺乏nodX的蚕豆。我们使用携带自cv渗入的sym2 A 区域的豌豆线,测试了是否在Cnb中涉及sym2 A 。阿富汗; Cnb + 菌株抑制了渗入线中的结瘤。因此,sym2 A 区域对Cnb有影响,尽管另一个位点(或基因座)可能有助于在cv中看到更强的Cnb。阿富汗。

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