Marek-Kozaczuk M, Kopcińska J, Lotocka B, Golinowski W, Skorupska A
Department of General Microbiology, M. Curie-Skłodowska University, Lublin, Poland.
Antonie Van Leeuwenhoek. 2000 Jul;78(1):1-11. doi: 10.1023/a:1002619824691.
Plant growth promoting Pseudomonas fluorescens strain 267, isolated from soil, produced pseudobactin A, 7-sulfonic acid derivatives of pseudobactin A and several B group vitamins. In coinoculation with Rhizobium leguminosarum bv. trifolii strain 24.1, strain 267 promoted clover growth and enhanced symbiotic nitrogen fixation under controlled conditions. To better understand the beneficial effect of P. fluorescens 267 on clover inoculated with rhizobia, the colonization of clover roots by mTn5-gusA marked bacteria was studied in single and mixed infections under controlled conditions. Histochemical assays combined with light and electron microscopy showed that P. fluorescens 267.4 (i) efficiently colonized clover root surface; (ii) was heterogeneously distributed along the roots without the preference to defined root zone; (iii) formed microcolonies on the surface of clover root epidermis; (iv) penetrated the first layer of the primary root cortex parenchyma and (v) colonized endophytically the inner root tissues of clover.
从土壤中分离出的具有促植物生长作用的荧光假单胞菌菌株267,能产生假单胞菌素A、假单胞菌素A的7-磺酸衍生物以及几种B族维生素。在与三叶草根瘤菌三叶草生物型菌株24.1共同接种时,菌株267在可控条件下促进了三叶草生长并增强了共生固氮作用。为了更好地理解荧光假单胞菌267对接种根瘤菌的三叶草的有益作用,在可控条件下,研究了携带mTn5-gusA标记的细菌在单一感染和混合感染情况下在三叶草根部的定殖情况。组织化学分析结合光学显微镜和电子显微镜显示,荧光假单胞菌267.4:(i) 有效地定殖于三叶草根表面;(ii) 沿根呈不均匀分布,无特定根区偏好;(iii) 在三叶草根表皮表面形成微菌落;(iv) 穿透初生根皮层薄壁组织的第一层;(v) 在内生状态下定殖于三叶草的根内部组织。