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Responses of soil enzyme activities and plant growth in a eucalyptus seedling plantation amended with bacterial fertilizers

机译:用细菌肥料修正桉树幼苗种植园土壤酶活性及植物生长的反应

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Plant growth-promoting rhizobacteria (PGPR) are widely used to improve plant nutrient uptake and assimilation and soil physicochemical properties. We investigated the effects of bacterial (Bacillus megaterium strain DU07) fertilizer applications in a eucalyptus (clone DH32-29) plantation in Guangxi, China in February 2011. We used two types of organic matter, i.e., fermented tapioca residue ("FTR") and filtered sludge from a sugar factory ("FS"). The following treatments were evaluated: (1) no PGPR and no organic matter applied (control), (2) 3 x 10(9) CFU/g (colony forming unit per gram) PGPR plus FS (bacterial fertilizer 1, hereafter referred to as BF1), (3) 4 x 10(9) CFU/g plus FS (BF2), (4) 9 x 10(9) CFU/g plus FS (BF3), (5) 9 x 10(9) CFU/g broth plus FTR (BF4). Soil and plant samples were collected 3 months (M3) and 6 months (M6) after the seedlings were planted. In general, bacterial fertilizer amendments significantly increased plant foliar total nitrogen (TN) and soil catalase activity in the short term (month 3, M3); whereas, it significantly increased foliar TN, chlorophyll concentration (Chl-ab), proline; plant height, diameter, and volume of timber; and soil urease activity, STN, and available N (Avail N) concentrations in the long term (month 6, M6). Redundancy analysis showed that soil available phosphorus was significantly positively correlated with plant growth in M3, and soil Avail N was negatively correlated with plant growth in M6. In M3, soil catalase was more closely correlated with plant parameters than other enzyme activities and soil nutrients, and in M6, soil urease, polyphenol oxidase, and peroxidase were more closely correlated with plant parameters than other environmental factors and soil enzyme activities. PCA results showed that soil enzyme activities were significantly improved under all treatments relative to the control. Hence, photosynthesis, plant growth, and soil N retention were positively affected by bacterial fertilizer in M6, and bacterial fertilizer applications had positive and significant influence on soil enzyme activities during the trial period. Thus, bacterial fertilizer is attractive for use as an environmentally friendly fertilizer in Eucalyptus plantations following proper field evaluation.
机译:植物生长促进的根瘤菌(PGPR)被广泛用于改善植物营养吸收和同化和土壤物理化学性质。我们研究了2011年2月在中国广西广西桉树(克隆DH32-29)种植园中的细菌(芽孢杆菌菌株DU07)肥料应用的影响。我们使用了两种类型的有机物,即发酵烟草残留物(“FTR”)来自糖厂(“FS”)的过滤污泥。评估以下处理:(1)(1)不施加PGPR和没有有机物质(对照),(2)3×10(9)CFU / g(每克菌落形成单位)PGPR加fS(细菌肥料1,以下简称)作为BF1),(3)4×10(9)CFU / g Plus FS(BF2),(4)9×10(9)CFU / g Plus Fs(BF3),(5)9×10(9)CFU / g肉汤加上FTR(BF4)。种植幼苗后,收集了3个月(M3)和6个月(M6)的土壤和植物样品。一般来说,细菌肥料修正案在短期内显着增加了植物叶面总氮(TN)和土壤过敏酶活性(第3个,M3);虽然,它显着增加了叶酸TN,叶绿素浓度(CHL-AB),脯氨酸;植物高度,直径和木材体积;和土壤脲酶活性,STN和长期可用N(可用N)浓度(第6个,M6)。冗余分析表明,土壤可用磷与M3的植物生长显着呈正相关,土壤可用N与M6的植物生长呈负相关。在M3中,土壤过缩酶与植物参数更密切相关,而不是其他酶活性和土壤营养素,并且在M6,土壤脲酶,多酚氧化酶和过氧化物酶与植物参数比其他环境因素和土壤酶活性更密切相关。 PCA结果表明,在相对于对照的所有治疗下,土壤酶活性显着改善。因此,光合作用,植物生长和土壤n保留受M6中的细菌肥料产生的积极影响,并且细菌肥料应用对试用期间土壤酶活性具有积极的影响。因此,在适当的现场评估之后,细菌肥料在桉树种植园中使用作为环保肥料。

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