首页> 外文期刊>Applied and Environmental Microbiology >Split-Root Assays Using Trifolium subterraneum Show that Rhizobium Infection Induces a Systemic Response That Can Inhibit Nodulation of Another Invasive Rhizobium Strain
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Split-Root Assays Using Trifolium subterraneum Show that Rhizobium Infection Induces a Systemic Response That Can Inhibit Nodulation of Another Invasive Rhizobium Strain

机译:使用三叶草地下根的分根分析表明,根瘤菌感染诱导了系统反应,可以抑制另一种侵袭性根瘤菌的结节。

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Subterranean clover plants possessing two equally infectible and robust lateral root systems (“split roots”) were used in conjunction with several specific mutant strains (derived from Rhizobium trifolii ANU843) to investigate a systemic plant response induced by infective Rhizobium strains. This plant response controls and inhibits subsequent nodulation on the plant. When strain ANU843 was inoculated onto both root systems simultaneously or 24, 48, 72, or 96 h apart, an inhibitory response occurred which retarded nodulation on the root exposed to the delayed inoculum but only when the delay period between inocula was greater than 24 h. Equal numbers of nodules were generated on both roots when ANU843 was inoculated simultaneously or 24 h apart. The ability to infect subterranean clover plants was required to initiate the plant inhibitory response since preexposure of one root system to non-nodulating strains did not retard the ability of the wild-type strain to nodulate the opposing root system (even when the delay period was 96 h). Moreover, the use of specific Tn5-induced mutants subtly impaired in their ability to nodulate demonstrated that the plant could effectively and rapidly discriminate between infections initiated by either the parent or the mutant strains. When inoculated alone onto clover plants, these mutant strains were able to infect the most susceptible plant cells at the time of inoculation and induce nitrogen-fixing nodules. However, the separate but simultaneous inoculation on opposing root systems of the parent and the mutant strains resulted in the almost complete inhibition of the nodulation ability of the mutant strains. We concluded that the mutants were affected in their competitive ability, and this finding was reflected by poor nodule occupancy when the mutants were coinoculated with the parent strain onto a single root system. Thus the split-root system may form the basis of a simple screening method for the ranking of competitiveness of various rhizobia on small seeded legumes.
机译:具有两个同等感染力和强健侧根系统(“分裂根”)的地下三叶草植物与几种特定突变株(源自三叶根瘤菌ANU843)结合使用,以研究由根瘤菌感染株诱导的系统性植物应答。这种植物反应控制并抑制了植物上随后的结瘤。将菌株ANU843同时或间隔24、48、72或96小时同时接种到两个根系上时,会发生抑制反应,该反应会延迟暴露于延迟接种物的根部上的结瘤,但前提是接种之间的延迟时间大于24 h 。同时或相隔24小时接种ANU843时,两个根上均产生相同数量的根瘤。必须具备感染地下三叶草植物的能力才能启动植物抑制性反应,因为一个根系预先暴露于非结瘤菌株并不会阻碍野生型菌株结瘤相反的根系的能力(即使延迟时间为96小时)。此外,使用特定的Tn5诱导的突变体形成结节的能力受到明显损害,这表明该植物可以有效,迅速地区分由亲本或突变体菌株引发的感染。当单独接种到三叶草植物上时,这些突变株能够在接种时感染最易感的植物细胞并诱导固氮根瘤。然而,分别但同时接种亲本和突变菌株的相反根系导致了突变菌株的根瘤能力几乎完全被抑制。我们得出的结论是,突变体的竞争能力受到影响,并且当突变体与亲本菌株共接种到单个根系上时,结节占用率低反映了这一发现。因此,分根系统可以构成一种简单筛选方法的基础,该方法可以对各种根瘤菌对小豆类种子的竞争力进行排名。

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