Investigating the Effect of Phosphate Solubilizing Microorganisms of Insoluble Phosphorus on Phosphorus Acquisition and Utilization Efficiency in Corn (Zea mays L.)

M. Rasouli-Sadaghiani, R. E. Karimabad, R. Vahedi
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Abstract

In order to investigate P acquisition efficiency (PACE) and P utilization efficiency (PUTE) of the corn in the presence of phosphate-solubilizing microorganisms (PSMs), a factorial experiment was carried out in a completely randomized design in the greenhouse. The factors were including P sources (tricalcium phosphate (TCP) and rock phosphate (RP)) and microbial inoculation (control, soluble P as KH 2 PO 4 (Ps), inoculation with bacteria (PSB), inoculation with fungi (PSF), co-inoculation of PSB + PSF). At the end of growth period, plant dry weight and P content in plant and soil available-P were measured and then PACE, PUTE and phosphorus efficiency (PE) indices were calculated. The results showed that, the interaction of phosphate source and microbial inoculation was significant with respect to shoot P content, soil P, PUTE and PE. PSF-TCP treatment increased 7 times shoot phosphorus content compared to cont-RP treatment. PUTE in Cont-TCP treatment was 2.35 times higher than the TCP-P S . The inoculation of PSF increased the PACE 1.61 times compared to co-inoculation of PSB + PSF tretment. Also, the highest PE index (99%) was obtained from SF-TCP treatment. In general, in calcareous soils with low P availability, inoculation of PSM with insoluble phosphorus sources can meet the phosphate needs of the plant.
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不溶性磷增磷微生物对玉米磷获取和利用效率的影响
为了研究磷溶微生物(psm)存在下玉米的磷获取效率(PACE)和磷利用效率(PUTE),采用完全随机设计的因子试验,在温室中进行了试验。影响因素包括磷源(磷酸三钙(TCP)和磷矿粉(RP))和微生物接种(对照,可溶性磷为kh2po4 (Ps),细菌接种(PSB),真菌接种(PSF), PSB + PSF共接种)。在生育期末测定植株干重、植株中磷含量和土壤有效磷含量,计算PACE、PUTE和磷效率(PE)指数。结果表明,磷源与微生物接种对地上部磷含量、土壤磷、PUTE和PE的交互作用显著。PSF-TCP处理比对照rp处理提高了7倍的地上部磷含量。对照组PUTE是TCP-P组的2.35倍。与PSB + PSF共接种相比,接种PSF可使PACE提高1.61倍。此外,SF-TCP处理的PE指数最高(99%)。一般来说,在磷有效性低的钙质土壤中,接种不溶性磷源的PSM可以满足植物对磷的需求。
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