...
首页> 外文期刊>Journal of soil & sediments >Foliage application of nitrogen has less influence on soil microbial biomass and community composition than soil application of nitrogen
【24h】

Foliage application of nitrogen has less influence on soil microbial biomass and community composition than soil application of nitrogen

机译:施氮对土壤微生物量和群落组成的影响小于施氮对土壤微生物量和群落组成的影响。

获取原文
获取原文并翻译 | 示例
           

摘要

PurposeMany studies have shown the simulated effects of nitrogen (N) deposition on soil microbial community composition by adding N directly to the forest floor but have ignored the N retention process by the canopy. This study was conducted to compare the responses of soil microbial biomass and community composition between soil application of N (SAN) and foliage application of N (FAN).Materials and methodsA pot experiment was designed with (1) two N application methods (SAN and FAN), (2) three N application levels (5.6, 15.6 and 20.6gNm(-2)year(-1)), and (3) two tree species (Schima superba Gardn. et Champ. and Pinus massoniana Lamb.) following a nested factorial design. Soil microbial biomass and community composition were determined using phospholipid fatty acids (PLFAs) techniques after 1 and 1.5years of treatments.Results and discussionNitrogen addition increased (P0.05) soil NH4+-N content and soil NO3--N content and decreased (P0.05) soil pH and soil microbial (bacterial, fungal, and actinomycete) biomass for both N application methods. Compared with the SAN treatment, the FAN treatment had higher (P0.05) pH and lower (P0.05) contents of soil NH4+-N and soil NO3--N. Soil microbial biomass and community composition were significantly different between the different N addition levels under the SAN treatment, but they showed no significant difference (P0.05) between the different N addition levels under the FAN treatment. The soil microbial biomass in the S. superba soil was higher (P0.05) than that in the P. massoniana soil for the FAN treatment, with the opposite trend observed under the SAN treatment. Moreover, redundancy analysis showed that soil microorganisms were significantly correlated with soil pH, soil water content, NH4+-N, and NO3--N.ConclusionsThe results showed that N addition affected soil properties, microbial biomass, and the composition of microbial communities; however, the FAN treatment had less influence on soil properties and soil microorganisms than did the SAN treatment over short time scales, and the extent of this effect was different between coniferous and broadleaf trees.
机译:目的许多研究表明,通过将氮直接添加到森林地表,可以模拟氮(N)沉积对土壤微生物群落组成的模拟影响,但忽略了冠层对氮的保留过程。本研究旨在比较施氮和施氮(FAN)对土壤微生物量和群落组成的响应。材料与方法采用(1)两种施氮方法(SAN和N)设计盆栽试验。 FAN),(2)三种氮素施用水平(5.6、15.6和20.6gNm(-2)year(-1)),以及(3)两种树种(Schima superba Gardn。et Champ。和Pinus massoniana Lamb。)嵌套的析因设计。处理1年和1.5年后,用磷脂脂肪酸(PLFAs)技术测定土壤微生物量和群落组成。结果与讨论氮素增加(P <0.05)土壤NH4 + -N含量和土壤NO3--N含量降低(P两种氮肥施用方法的土壤pH值和土壤微生物(细菌,真菌和放线菌)生物量均<0.05。与SAN处理相比,FAN处理的土壤NH4 + -N和NO3--N的pH值较高(P <0.05),而其含量较低(P <0.05)。在SAN处理下,不同氮添加水平下土壤微生物量和群落组成均存在显着差异,但在FAN处理下,不同氮添加水平下土壤微生物量和群落组成均无显着差异(P <0.05)。 FAN处理后,S.superba土壤中的微生物生物量高于马尾松土壤中(P <0.05),而在SAN处理下观察到相反的趋势。此外,冗余分析表明土壤微生物与土壤pH,土壤含水量,NH4 + -N和NO3--N显着相关。结论:氮的添加会影响土壤特性,微生物生物量和微生物群落的组成;然而,在短时间内,FAN处理对土壤特性和土壤微生物的影响小于SAN处理,并且针叶树和阔叶树的影响程度有所不同。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号