首页> 外文OA文献 >The Growth Promotion of Peppers (Capsicum annuum L.) by Trichoderma guizhouense NJAU4742-Based Biological Organic Fertilizer: Possible Role of Increasing Nutrient Availabilities
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The Growth Promotion of Peppers (Capsicum annuum L.) by Trichoderma guizhouense NJAU4742-Based Biological Organic Fertilizer: Possible Role of Increasing Nutrient Availabilities

机译:辣椒(Capsicum Annuum L.)的生长促进由Trichoderma贵州群岛Njau4742的生物有机肥:增加营养消费的可能作用

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摘要

Trichoderma spp. is a cosmopolitan group of soil fungi which plays a remarkable role in stimulating plant growth after interacting with plant roots and has good application prospects in intensive agriculture. In this study, rice straw and amino acids improved the population of Trichoderma guizhouense NJAU4742 under solid-state fermentation and helped us develop a new type of organic fertilizer. The effects of this biological organic fertilizer were evaluated in the growth of peppers (Capsicum annuum L.) for two seasons under sandy and mountain soils. In the first season, the yields in T6 (0.06% solid fermentation products in soil) and AT6 (added 0.06% solid fermentation products and 1% amino acid organic fertilizer in soil) treatments were increased by 41.8% and 52.3% in sandy soil and by 51.6% and 46.5% in mountain soil, respectively, compared with chemical fertilizer. During the second season, the same trend was obtained in both sandy and mountain soils. Soil peroxidase activity (125.2 μmol·g−1 dw), urease activity (58.7 μmol·g−1 dw) and invertase activity (13.11 mg·g−1 dw) reached their highest levels in biological organic fertilizer compared to the treatments with chemical fertilizer and solid fermentation products. Redundancy analysis showed that crop yield was positively correlated with enzyme activities, soil organic carbon, total nitrogen, and available phosphorus. Thus, we demonstrated that NJAU4742-enriched biological organic fertilizer could accelerate the transformation of nutrients and promote pepper growth.
机译:Trichoderma SPP。是一种孤独的土壤真菌组,在与植物根系统互动后刺激植物生长并在集约化农业中具有良好的应用前景,在刺激植物生长方面发挥着显着作用。在这项研究中,稻草和氨基酸在固态发酵下改善了Trichoderma贵州贵州群岛的群体,并帮助我们开发了一种新型的有机肥。在桑迪和山地土壤下的两个季节的辣椒(Capsicum Anumum L.)的生长中评估了这种生物有机肥的效果。在第一季,T6的产量(土壤中的0.06%固体发酵产物)和AT6(加入0.06%固体发酵产物和1%氨基酸有机肥在土壤中)治疗增加了41.8%和52.3%,含有41.8%和52.3%。与化肥相比,山地土壤分别在山地土壤中达到51.6%和46.5%。在第二季,在沙滩和山地土壤中获得了相同的趋势。土壤过氧化物酶活性(125.2μmol·g-1 dw),脲酶活性(58.7μmol·g-1 dw)和转化酶活性(13.11mg·g-1 dw)与化学物质相比,生物有机肥的最高水平达到了它们的最高水平肥料和固体发酵产品。冗余分析表明,作物产量与酶活性,土壤有机碳,总氮和可用磷呈正相关。因此,我们证明了富含Njau4742的生物有机肥料可以加速营养成分的转化并促进胡椒生长。

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