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Black soldier fly: A new vista for livestock and poultry manure management
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作者 ZHANG Ji-bin ZHANG Jia +6 位作者 LI Jia-hui Jeffery K.TOMBERLIN XIAO Xiao-peng Kashif ur REHMAN CAI Min-min ZHENG Long-yu yu zi-niu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第8期2602-2602,共1页
The corresponding author and editor express their thanks to Dr.Dave Mangindaan(Bina Nusantara University,Indonesia)forpointingoutthemisuse.
关键词 EDITOR MANURE POULTRY
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抗植物病原线虫的多粘类芽胞杆菌KM2501-1发酵培养基和发酵条件优化 被引量:4
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作者 杨景艳 程万里 +5 位作者 曾立 黄典 蔡珉敏 郑龙玉 喻子牛 张吉斌 《化学与生物工程》 CAS 2018年第6期25-31,共7页
多粘类芽胞杆菌KM2501-1可以有效抑制南方根结线虫对植物的危害,促进植物生长,具有良好的应用前景。采用正交实验和单因素实验分别对多粘类芽胞杆菌KM2501-1的发酵培养基和发酵条件进行了优化。结果表明,多粘类芽胞杆菌KM2501-1发酵培... 多粘类芽胞杆菌KM2501-1可以有效抑制南方根结线虫对植物的危害,促进植物生长,具有良好的应用前景。采用正交实验和单因素实验分别对多粘类芽胞杆菌KM2501-1的发酵培养基和发酵条件进行了优化。结果表明,多粘类芽胞杆菌KM2501-1发酵培养基的最优配方为:可溶性淀粉3%、豆粕3%、氯化钙0.05%、氯化钠0.25%;最适发酵初始pH值为8.5,最适发酵温度为28℃。将多粘类芽胞杆菌KM2501-1在优化培养基中的发酵上清液稀释5倍后,作用根结线虫48 h的校正死亡率为87.15%,比优化前提高了61.61%;多粘类芽胞杆菌KM2501-1在优化培养基中发酵48 h后的芽胞数为2.5×10~8 cfu·mL^(-1),是优化前的6.25倍,芽胞率达到100%时发酵周期为48 h,优化效果十分显著。该研究为多粘类芽胞杆菌KM2501-1的中试和大规模发酵生产提供了基础数据。 展开更多
关键词 多粘类芽胞杆菌KM2501-1 发酵培养基 发酵条件 杀线虫活性 芽胞数
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鱼腥草地下茎提取物的成分分析及其对牙龈卟啉单胞菌的体外抑菌作用 被引量:8
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作者 余耔妞 金安婷 +4 位作者 梁思源 杨天如 唐澜 李奉华 徐康平 《中南药学》 CAS 2018年第9期1244-1248,共5页
目的通过对鱼腥草地下茎各提取物的成分分析,考察其对牙龈卟啉单胞菌的抑菌活性,为鱼腥草用于牙周炎治疗提供理论依据。方法以新鲜紫色茎鱼腥草地下茎为原料,利用水蒸气蒸馏法获得挥发油及芳香水,采用GC-MS联用技术分析其化学成分,基于... 目的通过对鱼腥草地下茎各提取物的成分分析,考察其对牙龈卟啉单胞菌的抑菌活性,为鱼腥草用于牙周炎治疗提供理论依据。方法以新鲜紫色茎鱼腥草地下茎为原料,利用水蒸气蒸馏法获得挥发油及芳香水,采用GC-MS联用技术分析其化学成分,基于肉汤连续稀释法稀释成不同浓度的鱼腥草,接种牙龈卟啉单胞菌,采用纸片法检测各提取物的抑菌活性。结果鱼腥草挥发油中鉴定出了甲基正壬酮、癸酸乙酯等30种化学组分,抑菌实验发现挥发油、浓缩药液及芳香水均有数个浓度组出现抑菌环,能有效抑制牙龈卟啉单胞菌生长。结论所有鱼腥草提取物均具有体外抑制牙龈卟啉单胞菌的作用,且表现出一定的量效关系,其中挥发油部分抑菌效果最佳。 展开更多
关键词 鱼腥草地下茎 成分分析 牙龈卟啉单胞菌 牙周炎 体外抑菌活性
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Adsorption and Insecticidal Activity of Toxin from Bacillus thuringiensis on Rectorite 被引量:4
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作者 ZHOU Xue-Yong HUANG Qiao-yun +1 位作者 CAI Peng yu zi-niu 《Pedosphere》 SCIE CAS CSCD 2007年第4期513-521,共9页
从书籍的右页仪式上的杆菌 thuringiensis 紧张 WG-001 的毒素的吸附和解吸附作用在不同毒素或书籍的右页仪式集中被学习, pH 和温度。吸附的毒素的杀虫活性被决定致死浓度杀死 Heliothis 有佩带徽章权利的人的 50% 幼虫评估一(LC50 )... 从书籍的右页仪式上的杆菌 thuringiensis 紧张 WG-001 的毒素的吸附和解吸附作用在不同毒素或书籍的右页仪式集中被学习, pH 和温度。吸附的毒素的杀虫活性被决定致死浓度杀死 Heliothis 有佩带徽章权利的人的 50% 幼虫评估一(LC50 ) 。在钠碳酸盐的书籍的右页仪式上的毒素的吸附缓冲(pH 9 ) 在 0.5 1.0 h 和毒素的吸附等温线以内的到达平衡跟随了兰米尔方程(R2 】 0.99 ) 。在从 9 ~ 11 的 pH 范围(碳酸盐缓冲区) ,吸附的毒素与增加 pH 减少了。吸附数量与增加 rectorite:toxin 比率减少了。吸附没被在 10 和 50 ° C 之间的温度显著地影响。X 光检查衍射分析由毒素显示了书籍的右页仪式的置闰的出现。红外线的吸收光谱证明毒素的绑定没改变它的结构。吸附的毒素的 LC50 价值是比免费毒素的那些小的。书籍的右页仪式保护了毒素免受紫外线照射损坏的伤害。水里的吸附的毒素的解吸附作用在一个碳酸盐缓冲区从 37.5% ~ 56.4% 并且从 27.4% ~ 41.8%。解吸附作用百分比也与增加 rectorite:toxin 比率减少了。 展开更多
关键词 吸附作用 杀虫剂 杆状细菌 土壤污染
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Preparation and efficacy evaluation of Paenibacillus polymyxa KM2501-1 microbial organic fertilizer against root-knot nematodes 被引量:2
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作者 CHENG Wan-li ZENG Li +7 位作者 YANG Xue HUANG Dian yu Hao CHEN Wen CAI Min-min ZHENG Long-yu yu zi-niu ZHANG Ji-bin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第2期542-551,共10页
Root-knot nematodes(RKNs) cause huge yield losses to agricultural crops worldwide. Meanwhile, livestock manure is often improperly managed by farmers, which leads to serious environmental pollution. To resolve these t... Root-knot nematodes(RKNs) cause huge yield losses to agricultural crops worldwide. Meanwhile, livestock manure is often improperly managed by farmers, which leads to serious environmental pollution. To resolve these two problems, this study developed a procedure for the conversion of chicken manure to organic fertilizer by larvae of Hermetia illucens L. and Bacillus subtilis BSF-CL. Chicken manure organic fertilizer was then mixed thoroughly with Paenibacillus polymyxa KM2501-1 to a final concentration of 1.5×10^(8)CFU g^(-1). The efficacy of KM2501-1 microbial organic fertilizer in controlling root-knot nematodes was evaluated in pot and field experiments. In pot experiments, applying KM2501-1 microbial organic fertilizer either as a base fertilizer or as a fumigant at the dose of 40 g/pot suppressed root-knot disease by 61.76 and 69.05% compared to the corresponding control treatments, respectively. When applied as a fumigant at the dose of 1 kg m;in field experiments, KM2501-1 microbial organic fertilizer enhanced the growth of tomato plants, suppressed root-knot disease by 49.97%, and reduced second stage juveniles of RKN in soil by 88.68%. KM2501-1 microbial organic fertilizer controlled RKNs better than commercial bio-organic fertilizer in both pot and field experiments. These results demonstrate that this co-conversion process efficiently transforms chicken manure into high value-added larvae biomass and KM2501-1 microbial organic fertilizer with potential application as a novel nematode control agent. 展开更多
关键词 chicken manure Hermetia illucens L. microbial organic fertilizer root-knot nematode field experiment
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Black soldier fly:A new vista for livestock and poultry manure management 被引量:1
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作者 ZHANG Ji-bin ZHANG Jia +6 位作者 LI Jia-hui Jeffery KTOMERLIN XIAO Xiao-peng Kashif ur REHMAN CAI Min-min ZHENG Long-yu yu zi-niu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第5期1167-1179,共13页
The number of intensive livestock and poultry farms is expected to increase substantially in future because of consumer demand.Unfortunately,such demand also results in a great deal of manure being generated,which thr... The number of intensive livestock and poultry farms is expected to increase substantially in future because of consumer demand.Unfortunately,such demand also results in a great deal of manure being generated,which threatens the environment if it is not properly managed.Concurrent developments in biotransformation of these wastes with the black soldier fly(BSF),Hermetia illucens(L.)(Diptera:Stratiomydiae),demonstrates such concerns can be abated,while also producing products(e.g.,protein,chitin,biodiesel,and fertilizer)of value.In this review,we analyzed the factors influencing black soldier fly larvae(BSFL)conversion processes,the role of microorganisms,and the mechanisms used by BSFL when converting livestock and poultry manure into these valuable products.The effects of BSFL conversion technology on reducing the hazards of such materials and their associated pathogens are reviewed,and the economics of livestock and poultry manure conversion by BSF larvae is discussed. 展开更多
关键词 black soldier fly livestock and poultry manure CONVERSION MECHANISM resource utilization
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