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首页> 外文期刊>Plant and Soil >Effect of termite mound material on the physical properties of sandy soil and on the growth characteristics of tomato (Solanum lycopersicum L.) in semi-arid Niger
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Effect of termite mound material on the physical properties of sandy soil and on the growth characteristics of tomato (Solanum lycopersicum L.) in semi-arid Niger

机译:白蚁丘材料对半干旱尼日尔沙质土壤物理特性和番茄生长特性的影响(Solanum lycopersicum L.)

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摘要

This investigation assessed the effects of termite mound material (TMM) on the physical properties of sandy soil and on tomato (Solanum lycopersicum L.) growth characteristics and water use efficiency. TMM combined with organic manure, TMM combined with rice straw mulching and organic manure, organic manure alone (OM) and unamended (T0) were the treatments used. Results showed that soil treated with TMM had more clay sized particles and organic carbon content than T0 and OM. In TMM-treated soil, more water was being retained at both field capacity and permanent wilting point. The application of TMM did not affect the amount of plant available water. Saturated hydraulic conductivity also remained unaffected by the TMM application, but increased with the organic matter treatment. Tomatoes grown in TMM amended soils had greater plant height and more leaves, fruit and biomass. No specific rate of TMM application was better for all parameters being assessed. The amount of water used by the tomatoes was significantly correlated (P < 0.01) with fresh fruit yield (r = 0.82), leaf area index (r = 0.82) and total dry matter production (r = 0.68). While TMM did not specifically affect plant water-use efficiency, this parameter was generally improved in amended soils.
机译:这项研究评估了白蚁丘材料(TMM)对沙质土壤物理特性以及对番茄(Solanum lycopersicum L.)生长特性和水分利用效率的影响。 TMM结合有机肥,TMM结合稻草覆盖和有机肥,单独使用有机肥(OM)和未经改良(T0)。结果表明,与T0和OM相比,TMM处理的土壤具有更大的粘土颗粒和有机碳含量。在TMM处理过的土壤中,在田间持水量和永久枯萎点处都保留了更多的水分。 TMM的应用不会影响植物的可用水量。饱和的水力传导率也不受TMM应用的影响,但随着有机物的处理而增加。在TMM改良土壤中生长的番茄植株高,叶片,果实和生物量也更多。对于所有要评估的参数,TMM应用的特定比例没有更好的选择。西红柿用水量与新鲜水果产量(r = 0.82),叶面积指数(r = 0.82)和总干物质产量(r = 0.68)显着相关(P <0.01)。尽管TMM并没有特别影响植物的水分利用效率,但在改良土壤中通常可以改善该参数。

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