Department of Microbiology, Swedish University of Agricultural Sciences, Box 7025, S-750 07 Uppsala, Sweden.
Appl Environ Microbiol. 2010 Apr;76(7):2243-50. doi: 10.1128/AEM.02197-09. Epub 2010 Jan 29.
Knowing spatial patterns of functional microbial guilds can increase our understanding of the relationships between microbial community ecology and ecosystem functions. Using geostatistical modeling to map spatial patterns, we explored the distribution of the community structure, size, and activity of one functional group in N cycling, the denitrifiers, in relation to 23 soil parameters over a 44-ha farm divided into one organic and one integrated crop production system. The denitrifiers were targeted by the nirS and nirK genes that encode the two mutually exclusive types of nitrite reductases, the cd(1) heme-type and copper reductases, respectively. The spatial pattern of the denitrification activity genes was reflected by the maps of the abundances of nir genes. For the community structure, only the maps of the nirS community were related to the activity. The activity was correlated with nitrate and dissolved organic nitrogen and carbon, whereas the gene pools for denitrification, in terms of size and composition, were influenced by the soil structure. For the nirS community, pH and soil nutrients were also important in shaping the community. The only unique parameter related to the nirK community was the soil Cu content. However, the spatial pattern of the nirK denitrifiers corresponded to the division of the farm into the two cropping systems. The different community patterns, together with the spatial distribution of the nirS/nirK abundance ratio, suggest habitat selection on the nirS- and nirK-type denitrifiers. Our findings constitute a first step in identifying niches for denitrifiers at scales relevant to land management.
了解功能微生物类群的空间格局可以增进我们对微生物群落生态学与生态系统功能之间关系的理解。本研究采用地统计建模来绘制空间格局图,以探索与 23 个土壤参数相关的一个氮循环功能群(反硝化菌)的群落结构、大小和活性的分布情况,研究区域为 44 公顷的农场,该农场分为有机作物生产系统和综合作物生产系统。反硝化菌由编码两种相互排斥的亚硝酸盐还原酶(cd(1)血红素型和铜还原剂)的 nirS 和 nirK 基因靶向。反硝化活性基因的空间格局由 nir 基因丰度图反映。就群落结构而言,只有 nirS 群落的图谱与活性有关。活性与硝酸盐和溶解有机氮和碳有关,而反硝化的基因库(大小和组成)受土壤结构的影响。对于 nirS 群落,pH 值和土壤养分也是塑造群落的重要因素。唯一与 nirK 群落相关的独特参数是土壤 Cu 含量。然而,nirK 反硝化菌的空间格局与农场划分为两个种植系统相对应。不同的群落模式,以及 nirS/nirK 丰度比的空间分布,表明反硝化菌对 nirS 和 nirK 型的栖息地选择。本研究结果构成了在与土地管理相关的尺度上识别反硝化菌生态位的第一步。