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我国农业微生物产业发展研究 被引量:8
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作者 周杨 邓名荣 +3 位作者 杜娟 宋仲戬 吴清平 朱红惠 《中国工程科学》 CSCD 北大核心 2022年第5期197-206,共10页
农业微生物产业作为利用农业微生物资源和生物技术形成的生物科技产业和高增值农业,涉及种植业、养殖业、农业环境等,在保障粮食安全、提升耕地质量、促进农业减排方面具有重要意义。本文从微生物肥料、饲用微生物产品、微生物农药、酶... 农业微生物产业作为利用农业微生物资源和生物技术形成的生物科技产业和高增值农业,涉及种植业、养殖业、农业环境等,在保障粮食安全、提升耕地质量、促进农业减排方面具有重要意义。本文从微生物肥料、饲用微生物产品、微生物农药、酶制剂微生物产品、农业废弃物资源化利用等方向,梳理了我国农业微生物产业的发展现状,进而总结了农业微生物技术与产业发展趋势;在研判种质资源、技术研究、产品研发、行业标准等农业微生物产业发展面临问题的基础上,提出了布局科研平台专项、建设数据信息系统、加强微生物种业创新、构建法律法规体系等重点举措。建立完善的产业政策体系和相关配套措施,健全农业微生物产业创新体系,孵化参与国际竞争的高科技企业,以此保障我国农业微生物产业高质量发展。 展开更多
关键词 农业微生物 产业发展 微生物肥料 饲用微生物 微生物农药 酶制剂微生物 微生物种业
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Microbial Populations,Activity and Gene Abundance in Tropical Vertisols Under Intensive Chemical Farming
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作者 Kopparapu APARNA Desiraju Lakshmi Narsimha RAO Dananjeyan BALACHANDAR 《Pedosphere》 SCIE CAS CSCD 2016年第5期725-732,共8页
There are increasing concerns on the environmental impacts of intensive chemical agriculture. The effect of high agrochemical inputs used in intensive chemical farming was assessed on soil microbiological, molecular a... There are increasing concerns on the environmental impacts of intensive chemical agriculture. The effect of high agrochemical inputs used in intensive chemical farming was assessed on soil microbiological, molecular and biochemical properties in tropical Vertisols in India. Farm field sites under normal cultivation of arable crops using high inputs of fertilizers and pesticides in chili (Capsicum annum L., 5.0× dose for fertilizers and 1.5× dose for pesticides over normal inputs) and black gram (Vigna mungo L. Hepper, 2.2× dose for fertilizers and 2.3× dose for pesticides over normal inputs) were compared with adjacent sites using normal recommended doses. Organic carbon and basal respiration showed no response to high inputs of fertilizers and pesticides in soils of both crops. Labile carbon decreased by 10% in chili soils and increased by 24% in black gram soils under high input farming system. The proportion of soil labile carbon as a fraction of soil organic carbon was unaffected by high inputs. The labile carbon mineralization coefficient (qMLc) increased by 50.0% in chili soils, indicating that the soil microorganisms were under stress due to high agochemical inputs, whereas qMLc decreased by 36.4% in black gram soils. Copiotrophs increased due to high inputs in soils of both chili (63.1%) and black gram (47.1%). Oligotrophs increased by 10.8% in black gram soils but not in chili soils. The abundance of amoA gene reduced by 39.3% in chili soils due to high inputs and increased significantly by 110.8% in black gram soils. β-Glucosidase also increased by 27.2% and 325.0%, respectively. Acid phosphatase activity reduced by 29.2% due to high inputs in chili soils and increased by 105.0% in black gram soils. The use of high agrochemical inputs thus had adverse consequences on biological health in chili but not in black gram soils. In soils cultivated with black gram, the moderating effect of cultivating legumes and their beneficial effect on soil health were evident from the increase in soil labile carbon, lower qMLc, higher amoA gene and enzyme activities. Overall results showed that cultivation of legumes permits intensive chemical farming without deteriorating soil biological health. 展开更多
关键词 amoA gene copiotrophs high agrochemical input legumes oligotrophs soil enzymes
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