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Impacts of vegetation, tidal process, and depth on the activities, abundances, and community compositions of denitrifiers in mangrove sediment

机译:植被,潮汐过程和深度对红树林沉积物中反硝化剂的活动,丰度和群落组成的影响

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Coastal mangrove wetland is well known to be intense in nitrogen cycling. The tidal process and plants are key factors in controlling the microbial processes in wetlands. However, mechanisms on how these factors and their interactions affect the microorganisms involved in denitrification remain poorly understood. In this study, the impacts of vegetation (bulk, Kandelia obovata, and Spartina alterniflora) and tidal process (falling tide and rising tide) on denitrification activities, abundances, and community compositions of denitrifiers in the sediments from different depths (0–5 and 5–10 cm) were investigated in a microcosm experiment. A significant enhancement of denitrification activities and gene abundances (nirS, nirK, and nosZ) in the vegetated sediments was observed. Activities and abundances were significantly higher in the 0–5-cm sediments when compared with the 5–10-cm counterparts. The effect of interaction between vegetation and tide or depth was also significant. Terminal restriction fragment length polymorphism (T-RFLP) analysis revealed that not only vegetation but also plant species had a significant impact on the community compositions of nirK denitrifiers, while the tidal process affected the community compositions of nirS and nosZ denitrifiers but not nirK denitrifiers. However, depth only significantly shaped the nirS denitrifier communities. These findings demonstrate the effects of these factors and their interactions in shaping the denitrifiers in sediments.
机译:众所周知,沿海红树林湿地的氮循环非常激烈。潮汐过程和植物是控制湿地微生物过程的关键因素。然而,关于这些因素及其相互作用如何影响反硝化微生物的机理仍知之甚少。在这项研究中,植被(散装,大叶甘蓝和互花米草)和潮汐过程(落潮和涨潮)对不同深度(0-5和0的沉积物中反硝化剂的反硝化活性,丰度和群落组成的影响)在缩影实验中研究了5-10 cm)。观察到植被沉积物中反硝化活性和基因丰度(nirS,nirK和nosZ)显着提高。与5–10 cm对应物相比,0–5 cm沉积物中的活度和丰度明显更高。植被与潮汐或深度之间的相互作用也很显着。末端限制性片段长度多态性(T-RFLP)分析表明,不仅植被而且植物物种也对nirK反硝化剂的群落组成产生重大影响,而潮汐过程影响了nirS和nosZ反硝化剂的群落组成,但对nirK反硝化剂没有影响。但是,深度只会显着影响nirS反硝化器的组成。这些发现证明了这些因素及其相互作用对沉积物中反硝化剂形成的影响。

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