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首页> 外文期刊>Frontiers in Microbiology >Isolation and Characterization of a Phosphorus-Solubilizing Bacterium from Rhizosphere Soils and Its Colonization of Chinese Cabbage ( Brassica campestris ssp. chinensis)
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Isolation and Characterization of a Phosphorus-Solubilizing Bacterium from Rhizosphere Soils and Its Colonization of Chinese Cabbage ( Brassica campestris ssp. chinensis)

机译:根际土壤中可溶磷细菌的分离,鉴定及其在大白菜中的定殖( Brassica campestris ssp。 chinensis

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摘要

Phosphate-solubilizing bacteria (PSB) can promote the dissolution of insoluble phosphorus (P) in soil, enhancing the availability of soluble P. Thus, their application can reduce the consumption of fertilizer and aid in sustainable agricultural development. From the rhizosphere of Chinese cabbage plants grown in Yangling, we isolated a strain of PSB (YL6) with a strong ability to dissolve P and showed that this strain promoted the growth of these plants under field conditions. However, systematic research on the colonization of bacteria in the plant rhizosphere remains deficient. Thus, to further study the effects of PSB on plant growth, in this study, green fluorescent protein (GFP) was used to study the colonization of YL6 on Chinese cabbage roots. GFP expression had little effect on the ability of YL6 to grow and solubilize P. In addition, the GFP-expressing strain stably colonized the Chinese cabbage rhizosphere (the number of colonizing bacteria in the rhizosphere soil was 4.9 lg CFU/g). Using fluorescence microscopy, we observed a high abundance of YL6-GFP bacteria at the Chinese cabbage root cap and meristematic zone, as well as in the root hairs and hypocotyl epidermal cells. High quantities of GFP-expressing bacteria were recovered from Chinese cabbage plants during different planting periods for further observation, indicating that YL6-GFP had the ability to endogenously colonize the plants. This study has laid a solid and significant foundation for further research on how PSB affects the physiological processes in Chinese cabbage to promote plant growth.
机译:磷酸盐增溶细菌(PSB)可以促进土壤中不溶性磷(P)的溶解,提高可溶性磷的利用率。因此,其应用可以减少肥料的消耗并有助于农业的可持续发展。从杨凌生长的大白菜植物的根际中,我们分离出一株具有强溶磷能力的PSB(YL6)菌株,表明该菌株在田间条件下促进了这些植物的生长。但是,对植物根际中细菌定殖的系统研究仍然很不足。因此,为了进一步研究PSB对植物生长的影响,在本研究中,绿色荧光蛋白(GFP)用于研究YL6在大白菜根上的定殖。 GFP的表达对YL6生长和溶解P的能力影响很小。此外,表达GFP的菌株稳定地定居在大白菜根际(根际土壤中的定殖细菌数为4.9 lg CFU / g)。使用荧光显微镜,我们在大白菜根冠和分生组织区以及根毛和下胚轴表皮细胞中观察到大量的YL6-GFP细菌。在不同种植时期从大白菜植株中回收到大量表达GFP的细菌用于进一步观察,表明YL6-GFP具有内源定植这些植株的能力。这项研究为进一步研究PSB如何影响大白菜的生理过程以促进植物生长奠定了坚实而重要的基础。

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