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Sugar-Binding Activity of Pea Lectin Enhances Heterologous Infection of Transgenic Alfalfa Plants by Rhizobium leguminosarum biovar viciae

机译:豌豆凝集素的糖结合活性增强了豆科根瘤菌(Rhizobium leguminosarum biovar viciae)对转基因苜蓿植物的异源感染

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摘要

Transgenic alfalfa (Medicago sativa L. cv Regen) roots carrying genes encoding soybean lectin or pea (Pisum sativum) seed lectin (PSL) were inoculated with Bradyrhizobium japonicum or Rhizobium leguminosarum bv viciae, respectively, and their responses were compared with those of comparably inoculated control plants. We found that nodule-like structures formed on alfalfa roots only when the rhizobial strains produced Nod factor from the alfalfa-nodulating strain, Sinorhizobium meliloti. Uninfected nodule-like structures developed on the soybean lectin-transgenic plant roots at very low inoculum concentrations, but bona fide infection threads were not detected even when B. japonicum produced the appropriate S. meliloti Nod factor. In contrast, the PSL-transgenic plants were not only well nodulated but also exhibited infection thread formation in response to R. leguminosarum bv viciae, but only when the bacteria expressed the complete set of S. meliloti nod genes. A few nodules from the PSL-transgenic plant roots were even found to be colonized by R. leguminosarum bv viciae expressing S. meliloti nod genes, but the plants were yellow and senescent, indicating that nitrogen fixation did not take place. Exopolysaccharide appears to be absolutely required for both nodule development and infection thread formation because neither occurred in PSL-transgenic plant roots following inoculation with an Exo R. leguminosarum bv viciae strain that produced S. meliloti Nod factor.
机译:将携带大豆凝集素或豌豆(Pisum sativum)种子凝集素(PSL)的基因的转基因苜蓿(Medicago sativa L. cv Regen)根分别接种日本根瘤菌或豆根瘤菌,并将它们的响应与相同接种的根进行比较控制植物。我们发现仅当根瘤菌菌株从苜蓿根瘤菌苜蓿中华根瘤菌中产生Nod因子时,苜蓿根部才形成根瘤样结构。在大豆凝集素转基因植物的根部,接种物浓度很低时,未感染的根瘤样结构发育,但是即使日本血吸虫产生了适当的苜蓿链球菌Nod因子,也未检测到真正的感染线。相比之下,PSL转基因植物不仅结瘤性好,而且还显示出响应豌豆根瘤菌的感染线形成,但仅当细菌表达完整的苜蓿链球菌点基因时才如此。甚至发现来自PSL转基因植物根的一些根瘤被表达沙门氏菌nod的豆科豆荚菌(R. leguminosarum bv viciae)定殖,但植物呈黄色和衰老状态,表明没有固氮。结节发育和感染线的形成都绝对需要外多糖,因为在接种产生 S的Exo - R. leguminosarum bv viciae菌株接种后,PSL转基因植物的根中都没有外多糖。 meliloti 点头因子。

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