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筛选解磷菌鉴定出 6 种具有不同拟南芥幼苗促生特性的假单胞菌。

Screening of Phosphate Solubilization Identifies Six Pseudomonas Species with Contrasting Phytostimulation Properties in Arabidopsis Seedlings.

机构信息

Instituto de Investigaciones Químico-Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Edificio B3, Ciudad Universitaria, C. P. 58030, Morelia, Michoacán, México.

Catedrático CONACYT-Instituto de Investigaciones Químico-Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Edificio B3, Ciudad Universitaria, C. P. 58030, Morelia, Michoacán, México.

出版信息

Microb Ecol. 2023 Jul;86(1):431-445. doi: 10.1007/s00248-022-02080-y. Epub 2022 Jul 22.

Abstract

The interaction of plants with bacteria and the long-term success of their adaptation to challenging environments depend upon critical traits that include nutrient solubilization, remodeling of root architecture, and modulation of host hormonal status. To examine whether bacterial promotion of phosphate solubilization, root branching and the host auxin response may account for plant growth, we isolated and characterized ten bacterial strains based on their high capability to solubilize calcium phosphate. All strains could be grouped into six Pseudomonas species, namely P. brassicae, P. baetica, P. laurylsulfatiphila, P. chlororaphis, P. lurida, and P. extremorientalis via 16S rRNA molecular analyses. A Solibacillus isronensis strain was also identified, which remained neutral when interacting with Arabidopsis roots, and thus could be used as inoculation control. The interaction of Arabidopsis seedlings with bacterial streaks from pure cultures in vitro indicated that their phytostimulation properties largely differ, since P. brassicae and P. laurylsulfatiphila strongly increased shoot and root biomass, whereas the other species did not. Most bacterial isolates, except P. chlororaphis promoted lateral root formation, and P. lurida and P. chlororaphis strongly enhanced expression of the auxin-inducible gene construct DR5:GUS in roots, but the most bioactive probiotic bacterium P. brassicae could not enhance the auxin response. Inoculation with P. brassicae and P. lurida improved shoot and root growth in medium supplemented with calcium phosphate as the sole Pi source. Collectively, our data indicate the differential responses of Arabidopsis seedlings to inoculation with several Pseudomonas species and highlight the potential of P. brassicae to manage phosphate nutrition and plant growth in a more eco-friendly manner.

摘要

植物与细菌的相互作用以及它们长期适应挑战性环境的成功与否,取决于一些关键特性,包括养分溶解、根系结构重塑和宿主激素状态的调节。为了研究细菌促进磷酸盐溶解、根系分枝和宿主生长素响应是否可以促进植物生长,我们根据其高钙磷酸盐溶解能力从土壤中分离和鉴定了 10 株细菌。通过 16S rRNA 分子分析,所有菌株可分为 6 种假单胞菌,即 P. brassicae、P. baetica、P. laurylsulfatiphila、P. chlororaphis、P. lurida 和 P. extremorientalis。还鉴定出了一株 Solibacillus isronensis 菌株,该菌株与拟南芥根系相互作用时呈中性,因此可用作接种对照。在体外纯培养细菌条纹与拟南芥幼苗的相互作用表明,它们的促植物生长特性有很大的不同,因为 P. brassicae 和 P. laurylsulfatiphila 强烈增加了地上部和根的生物量,而其他种则没有。除 P. chlororaphis 外,大多数分离菌都促进了侧根的形成,P. lurida 和 P. chlororaphis 强烈增强了根中生长素诱导基因构建体 DR5:GUS 的表达,但最具生物活性的益生菌 P. brassicae 不能增强生长素响应。接种 P. brassicae 和 P. lurida 可改善在仅以磷酸钙作为唯一磷源的培养基中的地上部和根的生长。总之,我们的数据表明拟南芥幼苗对几种假单胞菌接种的反应不同,并强调了 P. brassicae 以更环保的方式管理磷酸盐营养和植物生长的潜力。

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