首页> 外文期刊>South African Journal of Plant and Soil >Response of two wheat cultivars to inoculation of diazotrophic bacteria in combination with reduced nitrogen fertilisation under field conditions
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Response of two wheat cultivars to inoculation of diazotrophic bacteria in combination with reduced nitrogen fertilisation under field conditions

机译:两种小麦品种与野外条件下氮肥的解体营养细菌接种的反应

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摘要

Chemical fertilisers are essential for plant nutrition in attaining desired yields. However, increased cost of fertiliser input has made it impossible for small-scale farmers to properly fertilise their crops for optimum yields. Five bacterial strainsoriginally isolated from no-till agricultural soil were tested as seed treatments for their potential to increase growth and yield of two wheat cultivars, under a low dose of nitrogen fertilisation in repeated split-plot field experiments. Two nitrogenlevels (0% and 35%) with and without bacteria treatments were tested. The controls were 100% nitrogen, 0% nitrogen (uninoculated control) and 35% nitrogen control. Wheat yields were 51-96.5% higher than the uninoculated control and 24.7-43.1% higher thanthe fully fertilised control. Increases in shoot dry biomass were consistent with yield increases and varied with bacterial strain, cultivar used and growing season. All of the bacterial strains tested positive for ethylene, siderophore and indoleaceticacid (IAA) production. Ethylene and IAA production ranged from 28.4 to 51.3 nmol L~1 h"1, and from 2.1 to 14.6 mg mL~1, respectively. The consistency in yield response of wheat to bacterisation in the presence of a low dose of nitrogenous fertiliser indicates that these diazotrophs could be used as a supplement to nitrogenous fertiliser.
机译:化肥对植物营养至关重要,以获得所需产量。然而,肥料投入的成本增加使小规模农民无法适当地施肥作物以获得最佳产量。从重复分裂场实验中的低剂量氮肥下,从纬向农业土壤中占据了种子处理的五种细菌菌作为种子处理,以增加两种小麦品种的增长和产量。测试了两种氮素(0%和35%),有没有细菌治疗。该对照为100%氮,0%氮(未致力于管制)和35%氮控制。小麦产量高于未诱导的对照51-96.5%,较高的Thanthe较高的施肥对照组24.7-43.1%。芽干生物质的增加与产量增加一致,随细菌菌株,栽培品种和生长季节而变化。所有细菌菌株都测试了乙烯,纵横道和吲哚美酸(IAA)生产的阳性。乙烯和IAA的产量分别为28.4至51.3nmol L〜1 H“1,分别为2.1至14.6mg mL〜1。小麦在低剂量含氮肥料存在下对细菌的屈服响应的一致性表明这些重氮化可用作含氮肥料的补充剂。

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