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Effect of microbial agent ARC-BBBE demonstration application on peanut production in the Huang-huai-hai area of China
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作者 Pingping Ji Haohua Gu +5 位作者 Mingbo Wen Hang Cai Jiaming Zhu Xiaofeng Yue Qi Zhang Peiwu Li 《Oil Crop Science》 CSCD 2023年第3期143-148,共6页
The microbial agent ARC-BBBE demonstration trials were conducted in four provinces in the main peanutproducing areas of the Huang-huai-hai plain of China.The results revealed that the application of ARC-BBBE led to a ... The microbial agent ARC-BBBE demonstration trials were conducted in four provinces in the main peanutproducing areas of the Huang-huai-hai plain of China.The results revealed that the application of ARC-BBBE led to a 1.09–1.70 fold increase in the number of nodules in the treatment group at the demonstration site compared to the control group.Moreover,the nodule weight in the treatment group was 0.80–3.32 times higher than that of the control group,and nitrogenase activity per plant showed a significant enhancement by 1.00–2.83 fold compared to controls.Additionally,notable improvements were observed in terms of increased fresh weight of whole plants,well-filled pod numbers,and enhanced growth performance;ultimately resulting in a harvest yield increase ranging from 9.46%to 49.04%.The abundance of Aspergillus flavus in rhizosphere soil was determined by the dilution spread plate method,and the inhibition rate was up to 86.7%.The application of ARC-BBBE in the significant peanut-producing areas of Huang-huai-hai has effects of promoting growth,nodulation,and increasing production.At the same time,it has the effect of inhibiting and controlling soil Aspergillus flavus,which provides a new green and low-carbon way to promote the high-quality development of the peanut industry. 展开更多
关键词 Microbial agent arc-bbbe PEANUT Nitrogenase activity Aspergillus flavus PRODUCTION
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黄曲霉毒素阻控与花生超级结瘤耦合效应研究初报 被引量:2
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作者 周扬 岳晓凤 +3 位作者 唐晓倩 闫洪林 张奇 李培武 《中国油料作物学报》 CAS CSCD 北大核心 2021年第6期947-960,共14页
花生、大豆是我国重要的油料和经济作物,因易受黄曲霉毒素污染,严重威胁食品安全,制约产业发展,因此,黄曲霉毒素防控一直是国内外研究的热点难题。本团队首次提出将黄曲霉毒素绿色阻控与促进根瘤固氮耦合的研究思路,研发了生物菌剂ARC-B... 花生、大豆是我国重要的油料和经济作物,因易受黄曲霉毒素污染,严重威胁食品安全,制约产业发展,因此,黄曲霉毒素防控一直是国内外研究的热点难题。本团队首次提出将黄曲霉毒素绿色阻控与促进根瘤固氮耦合的研究思路,研发了生物菌剂ARC-BBBE,本文报道生物菌剂ARC-BBBE对黄曲霉毒素及其产毒菌阻控的大田应用效果,调查其对花生生物学性状及经济性状的影响,探索ARC-BBBE对花生、大豆根系结瘤及根瘤固氮的影响,为从田间源头阻控黄曲霉毒素及促进根瘤固氮、实现减肥减药提供理论依据和科学指导。连续2年在我国花生主产省开展田间防控试验,将绿色阻控生物菌剂ARC-BBBE于花生播种期以30 kg/hm2用量与基肥一起撒施于土壤中。同时开展室内花生、大豆盆栽试验。使用涂布法调查土壤中黄曲霉毒素产毒菌丰度,使用高效液相色谱法检测花生样品中黄曲霉毒素,使用乙炔还原法测定根瘤固氮活性,采用5点取样法调查统计根瘤数、根瘤重。结果表明,应用ARC-BBBE显著降低了土壤中黄曲霉毒素产毒菌的丰度(平均降低66.5%)和花生中黄曲霉毒素的含量(平均降低83.5%)。应用ARC-BBBE后,花生根系普遍出现超级结瘤现象,实验验证表明其根瘤具有固氮活性,平均结瘤数增加10倍以上(土壤贫瘠地区50倍以上),瘤重增加8.8倍,每克根瘤固氮酶活性提高5倍以上。饱果率、产量均明显提高,叶色浓绿。花生室内盆栽结果表明,ARC-BBBE处理组根系结瘤数是对照组的2.2倍,固氮酶活性是对照组的4倍,叶绿素含量较对照组增加21.3%。大豆室内盆栽苗期实验结果表明,ARC-BBBE同样可诱发大豆结瘤及固氮效应:播种后第26天,处理组瘤数增加13.5倍、瘤重增加19.8倍;而且处理组有固氮活性,而对照组无固氮活性;苗期处理组的根长、根重、鲜重、叶绿素等生物学指标显著提升。ARC-BBBE对花生黄曲霉毒素及其产毒菌污染阻控效果极为明显,既可从生产源头有效阻控花生黄曲霉毒素产毒菌,降低黄曲霉毒素污染风险,同时大幅增加了花生根瘤数量和固氮酶活性,具有显著的促生长、增产量、控病害、保安全作用,具有显著的经济、社会、生态效益。对未来减施农药、化肥,保护农田生态,推动花生、大豆产业高质量绿色发展具有重要意义,在花生、大豆等豆科作物生产中应用前景广阔。 展开更多
关键词 花生 大豆 arc-bbbe生物菌剂 超级结瘤 根瘤固氮 黄曲霉毒素 绿色阻控 耦合效应
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