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Comparative study of the microbial diversity of bulk paddy soil of two rice fields subjected to organic and conventional farming

机译:有机和常规耕作两个稻田块状稻田土壤微生物多样性的比较研究

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Two adjacent paddies of an experimental rice field, subjected to organic and conventional farming, were characterized aiming the comparative assessment of microbiological variations occurring in the bulk paddy soil over the rice cycle. This study comprehended the simultaneous characterization of general physicochemical soil properties [total carbon and nitrogen, pH (H sub(2)O and KCl), C:N ratio and water content], biochemical properties [enzymatic activities and Community Level Physiological Profiles (CLPP)], the estimation of cultivable organisms (enumeration of fast growing heterotrophic bacteria, actinomycetes and fungi) and the assessment of bacterial diversity using a culture-independent method (PCR-DGGE fingerprinting). The linkage of the parameters measured was analysed by canonical correspondence analysis (CCA). CCA ordination plots of the CLPP showed a similar pattern of microbial functional activity in both agronomic management systems, except in June. Enzymatic activity, water content and fungi counts were the main factors affecting the observed CLPP time variation. Such a variation was not expressed by the Shannon and evenness indices, which did not evidence significant differences in the bacterial and functional diversity between or within farming type over the analysed period. The cluster and CCA analyses of the DGGE profiles allowed the distinction of the bacterial communities of both paddies, with temporal variations being observed in the organically managed field but not in the conventional paddy. Enzymatic activity, pH and molinate content were the factors which most contributed to the observed variations. Altogether these results underline the functional redundancy of the rice paddy soil and evidence the temporal variations on the metabolic activity of soil, irrespective of farming type.
机译:对经历过有机和常规耕作的一个实验稻田的两个相邻稻田进行了表征,目的是比较评估整个稻田周期中散装稻田土壤中发生的微生物变异。这项研究包括一般物理化学土壤性质[总碳和氮,pH(H sub(2)O和KCl),C:N比和水含量],生化性质[酶活性和群落水平生理学特征(CLPP)的同时表征)],可培养生物的估算(快速生长的异养细菌,放线菌和真菌的计数),以及使用独立于培养的方法(PCR-DGGE指纹图谱)评估细菌多样性。通过规范对应分析(CCA)分析了所测参数的链接。除6月外,CLPP的CCA排序图在两个农艺管理系统中均显示了相似的微生物功能活动模式。酶活性,含水量和真菌数量是影响观察到的CLPP时间变化的主要因素。香农指数和均匀度指数未表达这种变化,在分析期间,尚无证据表明耕作类型之间或之内的细菌和功能多样性存在显着差异。 DGGE图谱的聚类和CCA分析允许区分两个稻田的细菌群落,在有机管理的田地中观察到时间变化,而在常规稻田中则观察不到。酶促活性,pH和甲酸盐含量是最能引起观察到的变化的因素。总而言之,这些结果突出了稻田土壤的功能冗余,并证明了与耕作类型无关的土壤代谢活性的时间变化。

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