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The mechanism on rhizosphere phosphorus activation of two wheat genotypes with different phosphorus efficiency

机译:磷效率不同的两个基因型小麦根际磷活化的机理

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A short-term greenhouse experiment was carried out with two phosphorus (P) levels of purple soil to investigate P availability and associated processes in the rhizosphere of two different P-efficiency wheat genotypes using a thin slicing technique. Two genotypes with different P efficiencies were grown in a root-compartment experiment under low P (P 10: 10 P mg/kg) and high P (P 100: 100 P mg/kg) treatments. Results show that readily extracted forms of soil inorganic P were depleted by the two wheat genotypes, depletion zones extended further adjacent to 4 to 6 mm. Enhanced depletion of sodium hydroxide extractable organic P apparent in the rhizosphere of high P-efficient wheat?cultivar?10098?compared with low P inefficient wheat?cultivar10026?was related to the presence of greater concentrations of microbial biomass and higher soil acid phosphatase and phosphodiesterase enzyme activities. These results confirm that microorganisms and soil enzymic activities played important roles in the mineralization of soil organic P, particularly under high P-efficient wheat?cultivar10098. These results suggest that improving P efficiency based on the character of P efficiency acquisition in P-efficient genotype would be a potential approach for maintaining wheat yield potential in soils with low P bioavailability.
机译:使用薄切片技术,对两种磷水平的紫色土壤进行了短期温室试验,以研究两种不同磷效率小麦基因型的根际中磷的有效性及其相关过程。在低磷(P 10:10 P mg / kg)和高磷(P 100:100 P mg / kg)处理的根室实验中,生长出两种具有不同磷效率的基因型。结果表明,两种小麦基因型均耗尽了易于提取的土壤无机磷的形态,耗尽区进一步延伸至4至6 mm。与低磷低效小麦品种10026相比,高磷高效小麦品种10098的根际中氢氧化钠可萃取有机磷的耗竭增加与微生物生物量浓度升高和土壤酸性磷酸酶和磷酸二酯酶含量较高有关。酶活性。这些结果证实,微生物和土壤酶活性在土壤有机磷的矿化中起着重要作用,特别是在高磷高效小麦品种10098下。这些结果表明,基于磷效率基因型中磷效率获取的特征来提高磷效率将是在低磷生物利用度的土壤中保持小麦单产潜力的一种潜在途径。

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