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mRNA recovery and denitrification gene expression in clay-soil bacterial communities under different agricultural managements.

机译:不同农业管理下黏土土壤细菌群落的mRNA恢复和反硝化基因表达

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Denitrifying bacterial expression was evaluated in a clay-rich soil on wheat cultivation in Agugliano (AN) Italy under different managements (no-tillage and conventional tillage; N-fertilization and without N-fertilization). The expression of genes coding for two nitrate reductases (narG and napA), two nitrite reductases (nirS and nirK), two nitric oxide reductases (cnorB and qnorB) and nitrous oxide reductase (nosZ) was analysed by reverse transcription (RT)-nested PCR. nirK gene expression was more widely distributed in soil environment than nirS gene. The DGGE analyses was performed for nirK, nirS and nosZ and gave prominence to the significant difference between structure community and its actual activity: The DNA analysis showed a wide presence of these genes in soil, while RNA analysis evidenced that denitrifying activity was expressed in few species or groups of species. The soil denitrifying bacterial structure resulted influenced by soil management, conventional tillage or no-tillage, but not by nitrogen fertilization.
机译:在不同管理下(免耕和常规耕作;氮肥和不氮肥),在意大利阿古利亚诺(AN)的小麦种植中,在富含粘土的土壤中评估了反硝化细菌的表达。编码两种硝酸盐还原酶( nar G和 nap A),两种亚硝酸盐还原酶( nir S和 nir < / i> K),分析了两种一氧化氮还原酶(c nor B和q nor B)和一氧化二氮还原酶( nos Z)通过反转录(RT)嵌套PCR。在土壤环境中, nir K基因的表达比 nir S基因更广泛。对 nir K, nir S和 nos Z进行了DGGE分析,突出了结构群落与其实际活动之间的显着差异: DNA分析表明这些基因广泛存在于土壤中,而RNA分析表明反硝化活性在少数物种或物种组中表达。土壤反硝化细菌结构的结果受土壤管理,常规耕作或免耕的影响,但不受氮肥的影响。

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