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941.
Heart rot is a common soil-borne disease in the pineapple industry, but the situation can be alleviated by the application of bio-fertilizers with beneficial microbiomes. Clarifying the controlling mechanism of bio-organic fertilizer on the high incidence of heart rot is critical in monocultural pineapple cropping patterns. In our study, the soil of continuous cropping pineapple orchards was collected. Three types of carriers (rapeseed cake, peat soil, and coconut bran), biocontrol strains (Bacillus subtilis HL2 and Streptomyces strain HL3), and organic fertilizer (YJ) were composted into different bio-fertilizers (KC, KN, KY, LC, LN, and LY), which were used in pot experiments. The controlling effect of the bio-fertilizer was determined based on the response of pineapple heart rot and bacterial communities to different fertilizing methods. Our results revealed that the incidence of heart rot in bio-fertilizer KC was the lowest, which decreased by 20% and 13.3%, respectively, compared to HF (chemical fertilizer, 16-16-16) and YJ (organic fertilizer). The richness and diversity of soil bacterial communities in all biofertilized treatments (KC, KN, KY, LC, LN, and LY) were significantly higher than those in HF. However, the α-diversity indices of the bio-fertilizers (KC, KN, and KY) were higher than those of LC, LN, and LY, and the bacterial community composition was significantly different. The bacteria GP4, GP6, Bacillus, and Azohydromonas were enriched in KC, KN, and KY, while the relative abundance of Streptomyces increased significantly in LC, LN, and LY. Furthermore, Spearman correlation analysis showed that the relative abundance of these bacterial groups was significantly negatively correlated with the incidence of pineapple heart rot. In summary, the application of bio-organic fertilizers can decrease the incidence of pineapple heart rot by altering the soil bacterial community structure and stimulating beneficial soil microorganisms, which is important for reconstructing the ecological balance in continuous pineapple orchards. © 2022 Authors. All rights reserved.  相似文献   
942.
Ammonia oxidation, the first and rate-limiting step of nitrification, is mainly performed by ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB). However, the activities of AOA and AOB in soil and their relative contribution to ammonia oxidation are unclear, and whether there is a significant correlation between the quantity of AOA and AOB and the ammonia oxidation rate is also controversial. In this study, quantitative PCR combined with acetylene (C2H2) and 1-octyne inhibition methods were used to determine the quantity and activity of AOA and AOB in wheat, highland barley, and oilseed rape soils in Nyingchi, Lhatse, Sangzhuzi, and Sangri counties on the Qinghai-Tibet Plateau. The results showed that the quantity of AOB ((2.34 ± 0.84) ×105 - (2.65 ± 1.07) ×106 copies g-1 dry soil) was significantly higher than that of AOA ((0.20 ± 0.10) ×104 - (4.02 ± 0.39) ×104 copies g-1 dry soil) in all the soil samples. Soil pH was the key factor affecting the quantity of AOB, and the total phosphorus and ammonium nitrogen in soil were the key factors affecting the quantity of AOA. The rates of ammonia oxidation in the farmland soils of Lhatse (2.42 ± 0.73 mg kg-1 d-1) and Sangzhuzi (3.24 ± 1.15 mg kg-1 d-1) were significantly higher than those in the soils of Nyingchi (1.17 ± 0.43 mg kg-1 d-1) and Sangri counties (0.88 ± 0.57 mg kg-1 d-1). The rates of ammonia oxidation in the farmland soils of Lhatse and Sangzhuzi were dominated by AOB, while those in the farmland soils of Nyingchi and Sangri counties were dominated by AOA. For crops, the ammonia oxidation rates of wheat and oilseed rape soils in all four regions were significantly higher than those of highland barley soil, whereas the activity of AOA and AOB was not influenced by crops. The ratio of nitrogen to phosphorus was the key factor influencing AOA activity, whereas soil pH and total carbon were the main factors influencing AOB activity. Additionally, the quantities of AOA and AOB were not significantly correlated with the total ammonia oxidation rates and AOA and AOB activity. Overall, our study suggests that both AOA and AOB play important roles in ammonia oxidation in farmland soils of the Qinghai-Tibet Plateau. Moreover, it is unreliable to predict the activity of AOA and AOB and their relative contribution to ammonia oxidation directly based on their number of amoA genes, and the activity of AOA and AOB should be directly and accurately measured. These results are important for understanding ammonia nitrogen removal processes, slowing nitrate loss, and reducing the emission of the greenhouse gas nitrous oxide in the farmland ecosystem of the Qinghai-Tibet Plateau. © 2022 Science Press. All rights reserved.  相似文献   
943.
对白银矿区土壤重金属进行分析研究,分离、筛选和鉴定了受污染土壤中的可培养细菌,并考察其对土壤中重金属胁迫的耐受性。结果表明:白银矿区王岘镇尾渣堆和东大沟河沟土壤重金属污染Pb>Zn>Cu;从污染最严重的土壤中分离、筛选出砖红色微杆菌(Microbacterium testaceum)、特基拉芽孢杆菌(Bacillus tequilensis)和解单端孢菌素微杆菌(Microbacterium trichothecenolyticum)3种细菌,其中菌株M1(Microbacterium testaceum)对Pb、Zn、Cu、Cd的胁迫具有明显的耐受性。  相似文献   
944.
The discharge of slau ghterhouse wastewater(SWW) is incre asing and its wastewater has to be treated thoroughly to avoid the eutrophication.The hybrid zeolite-based ion-exchange and sulfur autotrophic denitrification(IX-AD) process was developed to advanced treat SWW after traditional secondary biological process.Compared with traditional sulfur oxidizing denitrification(SOD),this study found that IX-AD column showed:(1) stronger ability to resist NO3-pollution load,(2) low...  相似文献   
945.
藏西北高寒牧区草地退化现状与机理分析   总被引:7,自引:0,他引:7  
以藏西北高寒牧区为研究区域,综合利用NOAA、MODIS卫星NDVI(归一化植被指数)、气象资料、社会统计资料并结合GIS技术,对藏西北高寒牧区的草地状况和退化机理作了分析。结果表明:①藏西北高寒牧区草地覆盖度等级呈正态分布,且中等偏下略多,地表植被总体上比较稀疏;②2005年区域内的草地退化总面积为14.19×104km2,占区域天然草地总面积的39.64%,其中轻度退化面积最多,占退化总面积的65.96%,其次是中度和重度退化,分别占25.20%和8.84%;③草地退化的主要原因一是与近年来该区域的气候变化有关,二是草地超载率达到59.18%,过度放牧引起的草地退化和沙化现象也越来越严重,是局部草地退化的根本原因,人口的增加和人类活动频繁对草场的破坏,也是近年来草地退化的主要原因。  相似文献   
946.
一株源于污泥浓缩池厌氧除磷菌的分离、鉴定及特性研究   总被引:5,自引:1,他引:4  
采用浓缩池污泥为细菌分离的种泥,利用传统和现代微生物的分离、鉴定相结合手段,分离出一株源于污泥浓缩池的厌氧除磷功能菌(NA菌),从细菌形态、生理生化和16S rDNA三方面确定了所得细菌的分类地位,利用静态厌氧反应对其进行厌氧除磷特性初探. 结果表明:可将NA菌鉴定为蜡状芽孢杆菌(Bacillus cereus),该菌株同时具有反硝化和厌氧除磷产生磷化氢(PH3)的双重功能. 随着培养时间的不断增加,NA菌总数,TP去除率和PH3生成量分别由第7天的1.2×103 mL-1,7.66%和0.124 mg/L上升至第21天的1.7×104 mL-1,11.50%和0.465 mg/L,PH3生成量与TP去除率,NA菌总数之间表现为同步一致的正相关关系,但由于未进行驯化,NA菌的厌氧除磷产生PH3的能力较弱.   相似文献   
947.
固定化菌藻系统及对污水中氮磷营养盐的净化效果   总被引:5,自引:0,他引:5  
利用海藻酸钙分别包埋固定小球藻、活性污泥及其两者混合物.研究固定态小球藻与悬浮态小球藻对污水中氮磷营养盐的处理效果,实验结果表明固定态藻对氮磷的去除效果明显优于悬浮态藻,其原因主要由于海藻酸钙凝胶对氮磷的吸附,系统pH值提高引起氨的气提及磷酸盐的沉淀作用.研究固定化藻、同定化活性污泥及共固定化菌藻分别对污水中氮磷营养盐的处理效果,在同等条件下,固定化菌藻对氮磷的去除效果优于固定化活性污泥和固定化藻类.这项研究显示菌藻共生在污水处理中具有较大的潜力.  相似文献   
948.
响应面法优化低频超声协同H2O2降解偶氮染料酸性绿B   总被引:2,自引:0,他引:2  
以酸性绿B染料废水为研究对象,在单因素试验的基础上,选择染料废水初始pH和H2O2投加量及超声功率为自变量,以酸性绿B降解率为响应值,采用响应面分析法研究各自变量及其交互作用对酸性绿B超声降解的影响,并通过回归方程求解和响应曲面分析,得到二次多项式回归方程的预测模型. 结果表明,染料废水初始pH和H2O2投加量及超声功率与染料降解率存在显著的相关性. 确定酸性绿B废水超声降解优化条件:初始ρ(酸性绿B)为100 mg/L,初始pH和超声功率分别为4.43和216 W,H2O2投加量为1.77 mL. 在该优化条件下,酸性绿B的降解率可达93.34%.经试验验证,实际值与模型预测值拟合性良好,偏差仅为3.48%.   相似文献   
949.
氯氰菊酯降解菌的筛选鉴定及其降解特性研究   总被引:2,自引:0,他引:2  
从农药厂废水排放口附近的污泥中分离到1株能降解氯氰菊酯的细菌LQ-3.根据其形态、生理生化特征和16S rDNA(GenBank Accession No.FJ222585)序列分析,将该菌株鉴定为Starkeya sp..LQ-3菌株只能以共代谢方式降解氯氰菊酯,在有酵母粉、蛋白胨、葡萄糖等营养物质存在的条件下,5 d内对20 mg·L-1氯氰菊酯的降解率达到72.1%.LQ-3菌株降解氯氰菊酯的最适温度为30 ℃左右,pH值为7~8.LQ-3菌株还能降解功夫菊酯、甲氰菊酯、联苯菊酯和溴氰菊酯.酶的定域试验表明,LQ-3菌株降解氯氰菊酯的酶属于胞外酶.  相似文献   
950.
两株异养硝化细菌的氨氮去除特性   总被引:15,自引:0,他引:15       下载免费PDF全文
从生物陶粒反应器中分离得到2株异养硝化细菌ZW2和ZW5,对2菌株的生理生化实验以及16S rDNA序列分析,确定菌株ZW2和ZW5分别为假单胞菌(Pseudomonas sp.)和粪产碱杆菌(Alcaligenes faecalis),并对其硝化性能和脱氮能力进行了研究.结果表明,2株细菌能在利用有机物的同时进行硝化和脱氮作用.经过60h的培养,ZW2和ZW5对氮素的去除率可以分别达到43.90%和48.52%,对COD的去除率分别为67.48%和78.21%.在此过程中,亚硝酸盐浓度一直保持在微量水平,硝酸盐稍有积累,说明2株异养硝化细菌同时也具有好氧反硝化功能.  相似文献   
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