硫氧化细菌硫代硫杆菌与有机质对小麦生长和产量的交互作用

Hanen Aqeel Jassim Al Ramahy, Abdullah Karim Jabbar Al-Jebory
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引用次数: 1

摘要

生物学研究试验包括接种硫氧化菌的效果及其与有机质水平的相互作用。此外,生物疫苗对硫斑绦虫的第二个影响因素是有机物在三个水平上控制,通过不添加(0%、0.5%、1%)的结果进行统计分析,表明生物接种效果良好。水稻产量、土壤有效氮含量和土壤有效硫含量最高,分别为4.74 mg.h-1, 0.22×104 CFu gm-1土壤,54.27 mg N kg -1土壤,3131.39 mg S kg -1土壤。土壤有效氮含量和土壤有效硫含量(0.23×104 CFu gm-1 soil, 5163 mg N kg soil-1, 2796 mg S kg soil-1)在第二级有机质水平1%处理下最高。除生物接种黄颡鱼外,还对黄颡鱼数量、土壤速效氮含量和土壤速效硫含量(0.24×104 CFu gm-1土壤,59.40 mg N kg soil-1, 3326.87 mg S kg soil-1)进行交互处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Interacting effect of sulphur oxidizing bacteria Thiobacillus thioparus and organic matter on the growth and yield of wheat (Triticum aestivum L.)
The biological study experiment included the effect of inoculation with sulphur-oxidizing bacteria T. thioparus and its interaction with levels of organic matter. In addition, a biological vaccine for T. thioparus and the second factor is the organic matter at three levels control by without adding (0%, 0.5%, 1 %) the results of the statistical analysis showed that the biological Inoculation. T. thioparus treatment gave the highest levels of grain yield, numbers of T. thioparus bacteria, soil content of available nitrogen and soil content of available sulphur (4.74 mg.h-1, 0.22×104 CFu gm-1 soil, 54.27 mg N kg soil-1, 3131.39 mg S kg soil-1) respectively. While treatment with the second level of organic matter 1% gave the highest levels of the numbers of T. thioparus bacteria and the nitrogen content available in the soil and the sulphur content available in the soil (0.23×104 CFu gm-1 soil, 5163 mg N kg soil-1, 2796 mg S kg soil-1) respectively. In addition to the interactive treatments of biological inoculation of T. thioparus and organic matter of B1O2 of T. thioparus numbers, nitrogen content available in soil and soil sulphur content available (0.24×104 CFu gm-1 soil, 59.40 mg N kg soil-1, 3326.87 mg S kg soil-1) respectively.
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