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首页> 外文期刊>International Journal of Agriculture, Environment and Biotechnology >Impact of Acacia Wood Based Biochar Levels and Azospirillum on Microbial and Crop Growth Stimulation Under Unsterile Vertisols
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Impact of Acacia Wood Based Biochar Levels and Azospirillum on Microbial and Crop Growth Stimulation Under Unsterile Vertisols

机译:相思木生物炭水平和固氮螺菌对未消毒的Vertisols下微生物和作物生长刺激的影响。

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Research in exploring the use of biochar as soil amendment to enhance soil fertility and sequester carbon is upgraded day by day. However, the impacts of different levels of biochar with bioinoculants like Azospirillum on microbial as well as crop growth stimulation are unknown. Hence, a pot culture experiment was conducted to find out the impact of different levels of Acacia wood based biochar with Azospirillum strain AZ204 on the growth of Maize variety PEHM5 under unsterile vertisols. Biochar application at the level of 25 t ha1 with Azospirillum recorded significantly higher growth parameters like shoot length, root length, girth of stem and total dry weight over other levels of biochar (0, 5, 10, 15 and 201 ha1) at 30, 60 and 90 days after sowing. Also, the population size of beneficial soil microbes like Azospirillum and total diazotrophs in the rhizosphere registered maximum at the highest level of biochar (25 t ha~(-1)) application with Azospirillum at all the days of sampling. Furthermore,a significant increase of the native mycorrhizal responses to 25 t ha1 of biochar with Azospirillum application was also observed in terms of root colonization of maize and spore number in the soil. The experimental results indicated that biochar at higher levels of 25 t ha1 with Azospirillum inoculation was significantly superior in increasing the uptake of nutrients by maize. This treatment combination also proved efficient in increasing the yield of maize by recording 104.08 g plant1 and 18.62 g oftotal cob and 100 grain weight. Thus, biochar amendments at the rate of 25 t ha1 with Azospirillum is indeed capable of improving nutrient availability as well as microbial activity in vertisol resulting in a significant increase (upto 60%) in yield of maize. Thereby, the addition of biochar at the level of 25 t ha1 to soil with Azospirillum has the potential to bring in a significant plant-microbial responses, ultimately leading to enhanced crop growth and productivity upto 60%.
机译:探索使用生物炭作为土壤改良剂以提高土壤肥力和固碳的研究日益提高。然而,不同水平的生物炭与像厌氧螺旋藻这样的生物触媒剂对微生物以及作物生长刺激的影响尚不清楚。因此,进行了盆栽试验,以发现不同水平的洋槐木基生物炭与固氮螺菌AZ204菌株对未灭菌杂种玉米下玉米PEHM5生长的影响。与其他水平的生物炭(0、5、10、15和201 ha1)相比,在25 t ha1的固氮菌水平上施用生物炭记录了更高的生长参数,例如苗长,根长,茎周长和总干重,高于其他水平的生物炭(0、5、10、15和201 ha1)。播种后60天和90天。同样,在整个采样日中,在固氮菌的最高生物炭施用量(25 t ha〜(-1))下,根际土壤中有益的土壤微生物(如偶氮螺旋菌和重氮营养菌)的种群规模最大。此外,从玉米的根部定植和土壤中的孢子数方面,还观察到了应用氮磷螺旋菌对25 t ha1生物炭的天然菌根反应的显着增加。实验结果表明,接种偶氮螺旋菌的25t ha1较高水平的生物炭在增加玉米对养分的吸收方面具有显着优势。通过记录104.08 g植株1和18.62 g的总穗轴和100粒重,这种处理组合还被证明可以有效地提高玉米的产量。因此,用固氮螺菌以25 t ha1的速率对生物炭进行改良的确能够改善养分的利用率,以及在藜芦醇中的微生物活性,从而导致玉米产量显着提高(最高60%)。因此,将偶氮螺旋菌添加到土壤中25吨ha1的生物炭有可能引起重要的植物-微生物反应,最终导致作物生长和生产力提高60%。

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