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首页> 外文期刊>Applied and Environmental Microbiology >Early Interactions of Rhizobium leguminosarum bv. phaseoli and Bean Roots: Specificity in the Process of Adsorption and Its Requirement of Ca(sup2+) and Mg(sup2+) Ions.
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Early Interactions of Rhizobium leguminosarum bv. phaseoli and Bean Roots: Specificity in the Process of Adsorption and Its Requirement of Ca(sup2+) and Mg(sup2+) Ions.

机译:豆科根瘤菌的早期相互作用。菜豆和菜豆的根:吸附过程中的特异性及其对Ca(sup2 +)和Mg(sup2 +)离子的需求。

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Roots of Phaseolus vulgaris L. were incubated with dilute suspensions (1 x 10(sup3) to 3 x 10(sup3) bacteria ml(sup-1)) of an antibiotic-resistant indicator strain of Rhizobium leguminosarum bv. phaseoli in mineral medium and washed four times by a standardized procedure prior to quantitation of adsorption (G. Caetano-Anolles and G. Favelukes, Appl. Environ. Microbiol. 52:371-376, 1986). The population of rhizobia remaining adsorbed on roots after washing was homogeneous, as indicated by the first-order course of its desorption by hydrodynamic shear. Rhizobia were maximally active for adsorption in the early stationary phase of growth. The process leading to adsorption was rapid, without an initial lag, and slowed down after 1 h. Adsorption of the indicator strain at 10(sup3) bacteria ml(sup-1) was inhibited to different extents in the presence of 10(sup3) to 10(sup8) antibiotic-sensitive competitor rhizobia ml(sup-1). After a steep rise above 10(sup4) bacteria ml(sup-1), inhibition by heterologous competitors in the concentration range of 10(sup5) to 10(sup7) bacteria ml(sup-1) was markedly less than by homologous strains, while at 10(sup8) bacteria ml(sup-1) it approached the high level of inhibition by the latter. At 10(sup7) bacteria ml(sup-1), all of the heterologous strains tested were consistently less inhibitory than homologous competitors (P < 0.001). These differences in competitive behavior indicate that in the process of adsorption of R. leguminosarum bv. phaseoli to its host bean roots, different modes of adsorption occur and that some of these modes are specific for the microsymbiont (as previously reported for the alfalfa system [G. Caetano-Anolles and G. Favelukes, Appl. Environ. Microbiol. 52:377-381, 1986]). Moreover, whereas the nonspecific process occurred either in the absence or in the presence of Ca(sup2+) and Mg(sup2+) ions, expression of specificity was totally dependent on the presence of those cations. R. leguminosarum bv. phaseoli bacteria adsorbed in the presence of Ca(sup2+) and Mg(sup2+) were more resistant to desorption by shear forces than were rhizobia adsorbed in their absence. These results indicate that (i) symbiotic specificity in the P. vulgaris-R. leguminosarum bv. phaseoli system is expressed already during the early process of rhizobial adsorption to roots, (ii) Ca(sup2+) and Mg(sup2+) ions are required by R. leguminosarum bv. phaseoli for that specificity, and (iii) those cations cause tighter binding of rhizobia to roots.
机译:将菜豆的根与豆科根瘤菌的抗生素抗性指示菌菌株的稀悬液(1 x 10(sup3)至3 x 10(sup3)细菌ml(sup-1))一起孵育。菜豆在矿物培养基中的含量,并在定量吸附之前通过标准化程序洗涤四次(G. Caetano-Anolles和G. Favelukes,应用环境微生物学,52:371-376,1986)。洗涤后残留在根上的根瘤菌种群是均匀的,这是通过流体动力剪切解吸的一级过程所表明的。根瘤菌在生长的早期静止期最大程度地吸附。导致吸附的过程是迅速的,没有最初的滞后,并且在1小时后变慢了。在10(sup3)至10(sup8)抗生素敏感的竞争性根瘤菌ml(sup-1)存在下,指示菌株在10(sup3)细菌ml(sup-1)处的吸附受到不同程度的抑制。在10(sup4)个细菌ml(sup-1)急剧上升之后,异源竞争者在10(sup5)至10(sup7)个细菌ml(sup-1)浓度范围内的抑制作用明显小于同源菌株,而在10(sup8)细菌ml(sup-1)处,后者达到了较高的抑制水平。在10(sup7)个细菌ml(sup-1)处,所有测试的异源菌株的抑制性始终低于同源竞争者(P <0.001)。这些竞争行为的差异表明,在豆科植物根瘤菌的吸附过程中。菜豆到其寄主豆的根部,会发生不同的吸附模式,并且其中某些模式对微共生体具有特异性(如先前针对苜蓿系统的报道[G. Caetano-Anolles和G.Favelukes,应用环境微生物学,第52页: 377-381,1986]。此外,尽管非特异性过程是在不存在或存在Ca(sup2 +)和Mg(sup2 +)离子的情况下发生的,但特异性表达完全取决于这些阳离子的存在。豆科植物R. leguminosarum bv。在Ca(sup2 +)和Mg(sup2 +)存在下吸附的菜豆细菌比在不存在的情况下吸附的根瘤菌对剪切力的解吸更有抵抗力。这些结果表明(i)寻常型假单胞菌-R中的共生特异性。豆科在根瘤菌根吸收的早期过程中已经表达了菜豆系统,(ii)豆科植物豆腐需要钙(sup2 +)和Mg(sup2 +)离子。菜豆的特异性,以及(iii)那些阳离子导致根瘤菌与根的结合更紧密。

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