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首页> 外文期刊>Geomicrobiology journal >P Solubilizing Potential of Some Plant Growth Promoting Bacteria Used as Ingredient in Phosphatic Biofertilizers with Emphasis on Growth Promotion of Zea mays L.
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P Solubilizing Potential of Some Plant Growth Promoting Bacteria Used as Ingredient in Phosphatic Biofertilizers with Emphasis on Growth Promotion of Zea mays L.

机译:P溶解一些植物生长促进细菌的潜力,用作磷生物元素的成分,重点是Zea Mays L的生长促进。

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摘要

Given the negative environmental impacts of chemical fertilizers, application of phosphate solubilizing bacteria (PSB) as an ecofriendly and safe approach are becoming increasingly popular as substitute to chemical P fertilizers. Nowadays phosphatic microbial fertilizers (PMF) which are formulated by integration of rock phosphate (RP), organic residues, and efficient microorganisms including PSB are being used as biofertilizers to meet plant phosphorus demand. Accordingly, in this study, first P solubilization efficiency of PSBs (including Pseudomonas fluorescens Tabriz, Pseudomonas putida Tabriz, Pseudomonas sp. C16-2O, Enterobacter sp. S16-3, Bacillus megaterium JK6, Bacillus firmus SN1, and Pantoeaagglomerans P5) was checked under in vitro conditions, then the effectiveness of formulated PMFs was evaluated in pot culture using an autoclaved soil. PMFs of seven PSBs were prepared by adding PSB to the substrate consisting of RP, sulfur powder, and bagasse. The results of in vitro investigation on phosphate solubility of PSBs in qualitative (HD/CD) and quantitative procedures in Sperber medium indicated that there were significant differences among the bacteria and different sources of phosphorus. Moreover, P solubility index (HD/CD) showed a good correlation (r = 0.75, p < 0.05) with P solubility in liquid medium. The highest phosphate solubilization was measured by P. agglomerans P5>Pseudomonas sp. C16-2O >Enterobacter sp. S16-3 > P. putida Tabriz > B. megaterium JK6 > P. fluorescens Tabriz > B. firmus SN1, respectively, and dissolution of phosphorus from tricalcium phosphate (TCP) was higher than from RP. The results obtained from the greenhouse experiments revealed that the application of PMFs on corn had significant effect on fresh and dry weights of shoot and root, and the concentration and content of phosphorus in the root and shoot of corn. The measured parameters in treatments P. agglomerans P5, Pseudomonas sp. C16-2O, Enterobacter sp. S16-3, P. fluorescens and P. putida were significantly higher than control. Although, P5 strain had highest mean in all measured parameters among bacterial strains used in this study, but we introduce new isolated bacteria (S16-3 and C16-2O) along with P5 for further researches. Overall, the two bacteria Enterobacter sp. S16-3 and Pseudomonas sp. C16-2O can be considered because of their positive effects on corn growth [44 and 42% increase in shoot dry weight (SDW) and 1.60- and 1.39-fold increase in root dry weight (RDW), respectively] and P nutrition uptake (both 68% increase in SDW and 1.87- and 1.62-fold increase in RDW, respectively).
机译:鉴于化学肥料的负面环境影响,磷酸盐溶解细菌(PSB)作为ECOFriengly和安全方法的应用变得越来越受欢迎,因为替代化学P肥料。如今,通过整合岩石磷酸盐(RP),有机残基和高效微生物配制的磷酸盐微生物肥料(PMF)被用作生物元化器以满足植物磷的需求。因此,在本研究中,第一个PSBS的PSSB溶解效率(包括假单胞菌含氟葡萄牙蛋白,Pseudomonas Putida Tabriz,Pseudomonas sp.C16-2O,Enterobacter Sp.S16-3,芽孢杆菌MegaTerium JK6,Bacillus Fromus SN1和Pantoeagglomerans P5)被检查在体外条件下,使用高压灭菌的土壤在罐培养中评价配制PMF的有效性。通过将PSB添加到由RP,硫粉和甘蔗渣组成的基材来制备七种PSB的PMF。 Sperber培养基中PSB磷酸盐溶解度的体外研究结果表明,细菌和不同磷的不同来源存在显着差异。此外,P溶解度指数(HD / CD)显示出液体介质中的P溶解度(R = 0.75,P <0.05)的良好相关性(R = 0.75,P <0.05)。通过P.聚集体P5>假单胞菌SP测量最高的磷酸盐溶解。 C16-2O> Enterobacter SP。 S16-3> P. Pivida Tabriz> B. MegaTerium JK6> P.FluoreScens Tabriz> B. Froupus SN1分别和来自磷酸三钙(TCP)的磷溶解高于Rp。从温室实验中获得的结果表明,PMFS对玉米的应用对芽和根系的新鲜和干重的效果显着,以及玉米根部和芽的磷的浓度和含量。处理中的测量参数P. Agglomerans P5,假单胞菌SP。 C16-2O,Enterobacter SP。 S16-3,P.荧光胶囊和P. Putida显着高于对照。虽然,在本研究中使用的细菌菌株中的所有测量参数中p5菌株最高,但我们引入了新的孤立的细菌(S16-3和C16-20)以及P5进行进一步研究。总的来说,两种细菌肠道杆菌。 S16-3和pseudomonas sp。由于它们对玉米生长的积极影响,可以考虑C16-2O [44%,芽干重(SDW)和1.60-和1.69倍的根系干重增加(RDW)和P营养摄取( SDW的增加68%和1.87-和1.62倍的RDW增加)。

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