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来自摩洛哥磷矿的解磷解钾细菌对细菌性溃疡病菌具有拮抗作用,并能有效促进番茄生长。

Phosphate and potash solubilizing bacteria from Moroccan phosphate mine showing antagonism to bacterial canker agent and inducing effective tomato growth promotion.

作者信息

Bouizgarne B, Bakki M, Boutasknit A, Banane B, El Ouarrat H, Ait El Maalem S, Amenzou A, Ghousmi A, Meddich A

机构信息

Laboratory of Plant Biotechnology, Department of Biology, Faculty of Sciences, Ibn Zohr University (UIZ), Agadir, Morocco.

Laboratory of Agro-Food, Biotechnologies & Valorization of Plant Bioresources (AGROBIOVAL), Department of Biology, Faculty of Science Semlalia, Cadi Ayyad University (UCA), Marrakesh, Morocco.

出版信息

Front Plant Sci. 2023 Mar 8;14:970382. doi: 10.3389/fpls.2023.970382. eCollection 2023.

Abstract

Most agricultural soils are facing limited phosphorus availability that challenges modern agriculture. Phosphate solubilizing microbia (PSM) has been explored extensively as potential biofertilizers for plant growth and nutrition, and harnessing phosphate rich areas could provide such beneficial microorganisms. Isolation of PSM from Moroccan rock phosphate led to the selection of two bacterial isolates, Bg22c and Bg32c, showing high solubilization potential. The two isolates were also tested for other PGPR effects and compared to a non-phosphate solubilizing bacterium Bg15d. In addition to phosphates, Bg22c and Bg32c were able to solubilize insoluble potassium and zinc forms (P, K, and Zn solubilizers) and produce indole-acetic acid (IAA). Mechanisms of solubilization involved production of organic acids as demonstrated by HPLC. , the isolates Bg22c and Bg15d were able to antagonize the phytopathogenic bacteria subsp. , causal agent of tomato bacterial canker disease. Phenotypic and molecular identification by 16S rDNA sequencing demonstrated delineation of Bg32c and Bg15d as members of the genus and Bg22c as member of the genus . The two isolates Bg22c and Bg32c were further tested either alone or in a consortium and compared to the non-P, K, and Zn solubilizing strain Bg15d for their efficacy to promote tomato growth and yield. They were also compared to treatment with a conventional NPK fertilizer. Under greenhouse conditions, strain Bg32c remarkably improved the growth of whole plant height, root length, shoot and root weight, number of leaves and fruits, as well as fruit fresh weight. This strain also induced stomatal conductance enhancement. The strain also improved total soluble phenolic compounds, total sugars, protein, phosphorus and phenolic compounds contents compared to the negative control. All increases were more pronounced in plants inoculated with strain Bg32c in comparison with control and strain Bg15d. The strain Bg32c could be considered a potential candidate for formulation of a biofertilizer in order to improve tomato growth.

摘要

大多数农业土壤面临着有效磷供应有限的问题,这对现代农业构成了挑战。解磷微生物(PSM)作为植物生长和营养的潜在生物肥料已被广泛研究,开发富含磷的区域可以提供此类有益微生物。从摩洛哥磷矿中分离解磷微生物,筛选出了两株具有高解磷潜力的细菌菌株Bg22c和Bg32c。还对这两株菌株的其他植物生长促进根际细菌(PGPR)效应进行了测试,并与非解磷细菌Bg15d进行了比较。除了磷酸盐,Bg22c和Bg32c还能够溶解不溶性钾和锌形态(磷、钾和锌溶解菌)并产生吲哚 - 乙酸(IAA)。高效液相色谱法(HPLC)证明,溶解机制涉及有机酸的产生。此外,菌株Bg22c和Bg15d能够拮抗番茄溃疡病菌( 亚种),该病菌是番茄细菌性溃疡病的病原体。通过16S rDNA测序进行的表型和分子鉴定表明,Bg32c和Bg15d属于 属,Bg22c属于 属。进一步单独或联合测试了两株菌株Bg22c和Bg32c,并与非磷、钾和锌溶解菌株Bg15d比较了它们促进番茄生长和产量的功效。还将它们与传统NPK肥料处理进行了比较。在温室条件下,菌株Bg32c显著提高了整株植物的高度、根长、地上部和根部重量、叶片和果实数量以及果实鲜重。该菌株还诱导气孔导度增强。与阴性对照相比,该菌株还提高了总可溶性酚类化合物、总糖、蛋白质、磷和酚类化合物的含量。与对照和菌株Bg15d相比,接种菌株Bg32c的植物中所有这些增加更为明显。菌株Bg32c可被视为用于配制生物肥料以改善番茄生长的潜在候选菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c08/10030999/87c08d677c8b/fpls-14-970382-g001.jpg

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