首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Ecological guild and enzyme activities of rhizosphere soil microbial communities associated with Bt‐maize cultivation under field conditions in North West Province of South Africa
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Ecological guild and enzyme activities of rhizosphere soil microbial communities associated with Bt‐maize cultivation under field conditions in North West Province of South Africa

机译:南非南部省南部田地条件下与BT-玉米种植相关的根际土壤微生物社区的生态公会和酶活性

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摘要

Insecticidal proteins expressed by genetically modified Bt maize may alter the enzymatic and microbial communities associated with rhizosphere soil. This study investigated the structure and enzymatic activity of rhizosphere soil microbial communities associated with field grown Bt and non‐Bt maize. Rhizosphere soil samples were collected from Bt and non‐Bt fields under dryland and irrigated conditions. Samples were subjected to chemical tests, enzyme analyses, and next generation sequencing. Results showed that nitrate and phosphorus concentrations were significantly higher in non‐Bt maize dryland soils, while organic carbon was significantly higher in non‐Bt maize irrigated field soil. Acid phosphatase and β‐glucosidase activities were significantly reduced in soils under Bt maize cultivation. The species diversity differed between fields and Bt and non‐Bt maize soils. Results revealed that Actinobacteria, Proteobacteria, and Acidobacteria were the dominant phyla present in these soils. Redundancy analyses indicated that some chemical properties and enzyme activities could explain differences in bacterial community structures. Variances existed in microbial community structures between Bt and non‐Bt maize fields. There were also differences between the chemical and biochemical properties of rhizosphere soils under Bt and non‐Bt maize cultivation. These differences could be related to agricultural practices and cultivar type.
机译:基因改性的BT玉米表达的杀虫蛋白可以改变与根际土壤相关的酶和微生物群落。本研究研究了与野外生长BT和非BT玉米相关的根际土壤微生物社区的结构和酶活性。在Dryland和灌溉条件下从BT和非BT领域收集根际土壤样品。对样品进行化学试验,酶分析和下一代测序。结果表明,非BT玉米旱地土壤中硝酸盐和磷浓度明显高,而非BT玉米灌溉场土壤有机碳显着高。在BT玉米培养下的土壤中显着降低了酸性磷酸酶和β-葡糖苷酶活性。物种多样性不同于田地和BT和非BT玉米土壤之间。结果表明,猕猴细菌,植物体外和抗酸杆菌是这些土壤中存在的主要植物。冗余分析表明,一些化学性质和酶活性可以解释细菌群落结构的差异。 BT和非BT玉米场之间的微生物群落结构存在差异。在BT和非BT玉米栽培中,根际土壤的化学和生化特性也存在差异。这些差异可能与农业实践和品种类型有关。

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