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In-planta Sporulation Capacity Enhances Infectivity and Rhizospheric Competitiveness of Frankia Strains

机译:体内的孢子形成能力增强了Frankia菌株的感染力和根际竞争能力

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Frankia Sp+ strains maintain their ability to sporulate in symbiosis with actinorhizal plants, producing abundant sporangia inside host plant cells, in contrast to Sp? strains, which are unable to perform in-planta sporulation. We herein examined the role of in-planta sporulation in Frankia infectivity and competitiveness for root infection. Fifteen strains belonging to different Sp+ and Sp? phylogenetic lineages were inoculated on seedlings of Alnus glutinosa (Ag) and A. incana (Ai). Strain competitiveness was investigated by performing Sp?/Sp+ co-inoculations. Plant inoculations were standardized using crushed nodules obtained under laboratory-controlled conditions (same plant species, age, and environmental factors). Specific oligonucleotide primers were developed to identify Frankia Sp+ and/or Sp? strains in the resulting nodules. Single inoculation experiments showed that (i) infectivity by Sp+ strains was significantly greater than that by Sp? strains, (ii) genetically divergent Sp+ strains exhibited different infective abilities, and (iii) Sp+ and Sp? strains showed different host preferences according to the origin (host species) of the inocula. Co-inoculations of Sp+ and Sp? strains revealed the greater competitiveness of Sp+ strains (98.3 to 100% of Sp+ nodules, with up to 15.6% nodules containing both Sp+ and Sp? strains). The results of the present study highlight differences in Sp+/Sp? strain ecological behaviors and provide new insights to strengthen the obligate symbiont hypothesis for Sp+ strains.
机译:与Sp?相反,Frankia Sp +菌株保持与放线菌植物共生的孢子形成能力,在宿主植物细胞内产生大量的孢子囊。不能执行植物内孢子形成的菌株。我们在这里检查了植物内孢子形成在Frankia感染性和根部感染竞争力中的作用。属于不同Sp +和Sp?的15个菌株。将系统发育谱系接种到Al木(Ag)和印度曲霉(Ai)的幼苗上。通过进行Sp?/ Sp +共接种来研究菌株的竞争力。使用在实验室控制的条件下(相同的植物物种,年龄和环境因素)获得的粉碎结节对植物接种进行标准化。开发了特定的寡核苷酸引物以鉴定Frankia Sp +和/或Sp?产生的结节应变。单次接种实验表明(i)Sp +菌株的感染力明显大于Sp2菌株。 (ii)具有遗传差异的Sp +菌株表现出不同的感染能力,以及(iii)Sp +和Sp?菌株根据接种物的来源(宿主物种)显示出不同的宿主偏好。 Sp +和Sp的共同作用?菌株显示出Sp +菌株更具竞争力(98.3%到100%的Sp +结核,多达15.6%的结核同时含有Sp +和Sp?菌株)。本研究结果突出了Sp + / Sp?的差异。菌株生态行为,并为加强Sp +菌株专性共生假说提供新见解。

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