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Effect of Pseudomonas luteola on mobilization of phosphorus and growth of young apple trees (Ligol)-pot experiment.

机译:Luteola假单胞菌对磷动员和苹果幼树生长的影响(Ligol)-盆栽试验。

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摘要

The use of phosphate solubilizing bacteria as inoculants may increase the concentration of plant-available phosphorus in soil. Among soil microorganisms, bacteria from the genus Pseudomonas have received considerable attention as plant growth promoters. A phosphate solubilizing bacterium isolated from non-rhizosphere soil collected in Central Poland, was identified as Pseudomonas luteola BN0834 on the basis of biochemical methods and 16SrDNA sequence analysis. P. luteola strain BN08-34 was tested for: solubilization of inorganic and organic compounds of phosphorus (calcium phosphate, zinc phosphate, hydroxyapatite and calcium phytate); indole acetic acid (IAA), siderophore production and biosurfactant production; and the ability to grow on a medium without nitrogen added. Young apple trees, cultivar Ligol (rootstock M26), were grown in a pot-house for 14 weeks in pots filled with nonsterilized soil, classified as a sandy loam. The P. luteola BN0834 was introduced into the soil in a number equal to the number of native phosphate solubilizing microorganisms (PSM) (P. luteola) in soil or in a number ten times higher than the number of native PSM in soil (P. luteola x10). Shoot numbers; average and total shoot lengths; contents of P, K, Mg and Ca in plant material; contents of available P, K and total Mg in non-rhizosphere soil, changes in the number of cfu (colony forming units) of microorganisms (PSM, cophiotrophs, oligotrophs and fungi) in non-rhizosphere soil and in the rhizosphere of the apple trees were studied. When the higher number of P. luteola BN0834 was introduced into soil without a mineral fertilizer added near the surface of the roots, positive correlations were found between the number of PSM in the apple tree rhizosphere and the content of available P in non-rhizosphere soil and also between the number of PSM in the apple tree rhizosphere and the amount of P, K and Ca in plant leaves. The highest total shoot length was also obtained from P. luteola x10 application.
机译:使用磷酸盐增溶细菌作为孕育剂可能会增加土壤中植物有效磷的浓度。在土壤微生物中,假单胞菌属的细菌作为植物生长促进剂已受到相当大的关注。根据生化方法和16SrDNA序列分析,从波兰中部非根际土壤中分离到的一种磷酸盐增溶细菌被鉴定为黄假单胞菌BN0834。对P. luteola菌株BN08-34进行了测试:溶解无机和有机磷化合物(磷酸钙,磷酸锌,羟基磷灰石和植酸钙);吲哚乙酸(IAA),铁载体生产和生物表面活性剂生产;以及在不添加氮的培养基上生长的能力。年轻的苹果树(栽培品种Ligol)(砧木M26)在装有未灭菌土壤(被归类为沙壤土)的花盆中的温室中生长14周。将P. luteola BN0834引入土壤的数量等于土壤中的天然磷酸盐增溶微生物(PSM)(P. luteola)的数量,或比土壤中的PSM数量高十倍的数量(P. luteola x10)。射门编号;平均和总芽长;植物材料中磷,钾,镁和钙的含量;非根际土壤和苹果树根际土壤中有效磷,钾和总镁的含量,非根际土壤中微生物(PSM,共营养菌,寡营养菌和真菌)的cfu(菌落形成单位)数量变化被研究了。当在根部表面附近未添加矿物肥料的情况下,将较高数量的黄腐病菌BN0834引入土壤中时,发现苹果树根际中PSM的数量与非根际土壤中有效磷的含量呈正相关以及苹果树根际中PSM的数量与植物叶片中P,K和Ca的数量之间的关系。最高的总芽长也从P. luteola x10施用获得。

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