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首页> 外文期刊>Agroforestry Systems >Influence of improved fallow systems and phosphorus application on arbuscular mycorrhizal fungi symbiosis in maize grown in western Kenya
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Influence of improved fallow systems and phosphorus application on arbuscular mycorrhizal fungi symbiosis in maize grown in western Kenya

机译:改良休耕系统和施磷对肯尼亚西部玉米丛枝菌根真菌共生的影响

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A field study was carried out on a six-year-old on-farm field trial during long-rains season (April-August) 2003 to investigate the effect of improved fallow systems and phosphorus application on arbuscular mycorrhiza fungi (AMF) symbiosis in maize. The trial comprised of maize rotated with a fast growing leguminous Crotalaria grahamiana fallow and a non-leguminous Tithonia diversifolia fallow for 3 years followed by continuous maize. The experiment was randomized complete block design with three cropping (continuous maize, Crotalaria fallow and Tithonia fallow) systems and two phosphorus levels (0 and 50 kg P/ha). AMF colonization in maize roots, maize yield and macro-nutrients uptake were recorded. Phosphorus applications improved (P < 0.05) early (<8 weeks old maize) AMF colonization, nutrient uptake and maize yield in improved fallow systems. Greater differences due to phosphorus application were noted in maize in Tithonia fallow than in Crotalaria fallow. Following phosphorus application, a positive relationship existed between early AMF colonization and maize yield (r = 0.38), and phosphorus and nitrogen uptake (r = 0.40 and r = 0.43, respectively), demonstrating the importance of phosphorus fertilization in enhancing low-input technologies (improved fallows systems) in phosphorus deficient and acidic soils of western Kenya.
机译:在长雨季节(2003年4月至8月)对一项有6年历史的农场田间试验进行了田野研究,以研究改良的休耕系统和施磷对玉米丛枝菌根真菌(AMF)共生的影响。 。该试验包括将玉米与速生的豆科猪屎豆小休耕和非豆科的thithonia diversifolia休耕一起旋转3年,然后连续种植玉米。该实验是随机的,完整的块体设计,其中包括三个种植系统(连续玉米,猪屎豆休耕地和蒂索尼亚休耕地)和两个磷水平(0和50 kg P / ha)。记录了玉米根中的AMF定植,玉米产量和大量养分吸收。在改良的休耕系统中,早期(<8周龄玉米)施用磷肥改善(P <0.05),AMF定植,养分吸收和玉米产量提高。注意到在蒂索尼亚休耕区玉米中施用磷导致的差异大于猪屎豆休耕区。施磷后,AMF早期定植与玉米产量(r = 0.38)以及磷和氮的吸收(r = 0.40和r = 0.43)之间存在正相关关系,表明磷肥在提高低投入技术中的重要性。 (改良的休耕系统)在肯尼亚西部缺磷和酸性的土壤中。

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