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首页> 外文期刊>American Journal of Agriculture and Forestry >Rock-phosphate solubilising bacteria and their effect on soybean (Glycine max) growth under pot grown conditions
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Rock-phosphate solubilising bacteria and their effect on soybean (Glycine max) growth under pot grown conditions

机译:盆栽条件下增溶岩磷的细菌及其对大豆生长的影响

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The modern agriculture is dependent on phosphorus (P) derived from phosphate rock. However, the direct application of low-grade rock phosphate as a P source in soils need an addition of inoculums of phosphate solubilising microorganisms to improve the rock phosphate efficiency as a phosphorus source. Phosphate solubilising bacteria (PSB) were screened for their phosphate solubilising ability on plates and in liquid cultures supplemented with Malian, Moroccan or Mexican rock phosphates. They were subsequently tested on soybean grown in pots filled with non sterile soil amended with Moroccan rock phosphate for their aptitude in promoting soybean growth. The activity of the different strains on plates indicates Panthoea sp. and Bacillus sp. as the most efficient strains able to show halo zone on plates supplemented all different rock phosphates, with a solubilisation index (SI) of 3.65, 4.10 and 5.42 (Panthoea sp.) and 2.93, 3.13 and 2.13 (Bacillus sp.) respectively for Malian, Moroccan and Mexican rock phosphates. Panthoea sp. remains the strains showing the highest concentration of the solved P with all rock phosphates: 1038.25, 996.67 and 1207.87 μgP/g for Malian, Moroccan and Mexican rock phosphates respectively. It is followed by Klebsiella sp. (862.57, 615.19 and 426.29 μgP/g respectively) and Bacillus sp. (810.86, 270.92 and 180.95 μgP/g). In general, Panthoea sp. and Bacillus sp. better contribute to the soybean growth with the effect of 35% and 34% respectively compare to non inoculated control supplied with non soluble Moroccan rock phosphate. The activity of Klebsiella sp. (13%) that is low in general seems to be stimulated when associated with the two other strains (33%). This suggests that the use of rock phosphate combined with the co-inoculation with those strains would ensure soybean production in economically profitable and environmentally friendly conditions.
机译:现代农业依赖于磷矿中的磷。然而,在土壤中直接使用低品位的磷酸盐岩作为磷源需要增加磷酸盐溶解微生物的接种量,以提高磷酸盐岩作为磷源的效率。在平板和补充了马里,摩洛哥或墨西哥岩石磷酸盐的液体培养物中,筛选了磷酸盐增溶细菌(PSB)的磷酸盐增溶能力。随后对它们进行了测试,这些大豆在装满非无菌土壤并用摩洛哥磷酸钙改良的花盆中生长的大豆上,具有促进大豆生长的能力。平板上不同菌株的活性表明泛菌。和芽孢杆菌因为能够在平板上显示光晕带的最有效菌株补充了所有不同的磷酸盐磷酸盐,对马里的溶解指数(SI)分别为3.65、4.10和5.42(Panthoea sp。)和2.93、3.13和2.13(Bacillus sp。) ,摩洛哥和墨西哥的磷酸盐磷酸盐。 Panthoea sp。剩下的菌株显示了所有磷矿石中溶解的磷的最高浓度:马里,摩洛哥和墨西哥的磷矿石分别为1038.25、996.67和1207.87μgP/ g。其次是克雷伯菌属。 (分别为862.57、615.19和426.29μgP/ g)和芽孢杆菌(Bacillus sp。) (810.86、270.92和180.95μgP/ g)。一般而言,Panthoea sp.。和芽孢杆菌与非可溶性摩洛哥磷酸盐混合的非接种对照相比,对大豆生长的贡献更好,分别为35%和34%。克雷伯菌的活性。通常较低的(13%)与其他两个菌株(33%)结合时似乎会受到刺激。这表明结合使用磷酸盐岩和与这些菌株共同接种可确保在经济上有利可图的环境条件下生产大豆。

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