In semi-arid region of northwestern China, underground mining subsidence often results in decreased vegetation coverage, impoverishment of soil fertility and water stress. In addition, the physical-chemical and biolog...In semi-arid region of northwestern China, underground mining subsidence often results in decreased vegetation coverage, impoverishment of soil fertility and water stress. In addition, the physical-chemical and biological properties of soil also change, resulting in more susceptible to degradation. In particular, subsidence causes disturbance of the symbioses of plant and microbe that can play a beneficial role in the establishment of vegetation communities in degraded ecosystems. The objective of this study was to evaluate the effects of revegetation with exotic arbuscular mycorrhizal fungi(AMF) inoculum on the chemical and biological properties of soil over time in mining subsidence areas. Soils were sampled at a depth up to 30 cm in the adjacent rhizosphere of Amorpha fruticose Linn. from five reclaimed vegetation communities in northwestern China. In August 2015, a field trial was set up with five historical revegetation experiments established in 2008(7-year), 2011(4-year), 2012(3-year), 2013(2-year) and 2014(1-year), respectively. Each reclamation experiment included two treatments, i.e., revegetation with exotic AMF inoculum(AMF) and non-AMF inoculum(the control). Root mycorrhizal colonization, glomalin-related soil protein(GRSP), soil organic carbon(SOC), soil nutrients, and enzyme activities were also assessed. The results showed that mycorrhizal colonization of inoculated plants increased by 33.3%–163.0% compared to that of non-inoculated plants(P<0.05). Revegetation with exotic AMF inoculum also significantly improved total GRSR(T-GRSP) and easily extracted GRSP(EE-GRSP) concentrations compared to control, besides the T-GRSP in 1-year experiment and the EE-GRSP in 2-year experiment. A significant increase in SOC content was only observed in 7-year AMF reclaimed soils compared to non-AMF reclaimed soils. Soil total N(TN), Olsen phosphorus(P) and available potassium(K) were significantly higher in inoculated soil after 1–7 years of reclamation(except for individual cases), and increased with reclamat展开更多
杉木是我国南方重要的速生用材树种,同时南方面临着日益增强的大气氮沉降。尽管有大量的研究探索了氮沉降对杉木林的影响,但关于氮沉降对杉木与丛枝菌根真菌(arbuscular mycorrhizal fungi,AMF)共生关系影响的研究则较少报道。以10年生...杉木是我国南方重要的速生用材树种,同时南方面临着日益增强的大气氮沉降。尽管有大量的研究探索了氮沉降对杉木林的影响,但关于氮沉降对杉木与丛枝菌根真菌(arbuscular mycorrhizal fungi,AMF)共生关系影响的研究则较少报道。以10年生杉木为研究对象,模拟了不同氮沉降水平(N3:3 g N m^(-2)a^(-1),N6:6 g N m^(-2)a^(-1)和Control:0 g N m^(-2)a^(-1))对AMF侵染率和球囊霉素的影响。结果显示:在冬季,与对照相比,N3处理显著增加了AMF侵染率,N6处理显著增加易提取球囊霉素的含量,而氮沉降对总球囊霉素含量无显著影响。在春季,与对照相比,N3处理显著增加AMF侵染率,但是显著降低了易提取球囊霉素的含量。N6处理显著增加总球囊霉素的含量,但显著降低易提取球囊霉素的含量。相同氮添加情况下,春季的AMF侵染率显著低于冬季,而球囊霉素含量(易提取球囊霉素和总球囊霉素)均显著高于冬季的。土壤有效磷与AMF侵染率显著负相关,而与易提取球囊霉素和总球囊霉素含量显著正相关。侵染率与pH显著正相关,球囊霉素与pH显著负相关。本实验针对AMF侵染率和球囊霉素的含量对于氮沉降的响应做出探讨,对全面了解杉木与AMF之间的共生关系对氮沉降的响应及其机制提供了新的参考。展开更多
基金funded by the National Natural Science Foundation of China (51574253)the National High Technology Research and Development Program of China (2013AA102904)the Open Research Project of the State Key Laboratory of Coal Resources and Safe Mining, China University of Mining and Technology (Beijing) (SKLCRSM16KFA01)
文摘In semi-arid region of northwestern China, underground mining subsidence often results in decreased vegetation coverage, impoverishment of soil fertility and water stress. In addition, the physical-chemical and biological properties of soil also change, resulting in more susceptible to degradation. In particular, subsidence causes disturbance of the symbioses of plant and microbe that can play a beneficial role in the establishment of vegetation communities in degraded ecosystems. The objective of this study was to evaluate the effects of revegetation with exotic arbuscular mycorrhizal fungi(AMF) inoculum on the chemical and biological properties of soil over time in mining subsidence areas. Soils were sampled at a depth up to 30 cm in the adjacent rhizosphere of Amorpha fruticose Linn. from five reclaimed vegetation communities in northwestern China. In August 2015, a field trial was set up with five historical revegetation experiments established in 2008(7-year), 2011(4-year), 2012(3-year), 2013(2-year) and 2014(1-year), respectively. Each reclamation experiment included two treatments, i.e., revegetation with exotic AMF inoculum(AMF) and non-AMF inoculum(the control). Root mycorrhizal colonization, glomalin-related soil protein(GRSP), soil organic carbon(SOC), soil nutrients, and enzyme activities were also assessed. The results showed that mycorrhizal colonization of inoculated plants increased by 33.3%–163.0% compared to that of non-inoculated plants(P<0.05). Revegetation with exotic AMF inoculum also significantly improved total GRSR(T-GRSP) and easily extracted GRSP(EE-GRSP) concentrations compared to control, besides the T-GRSP in 1-year experiment and the EE-GRSP in 2-year experiment. A significant increase in SOC content was only observed in 7-year AMF reclaimed soils compared to non-AMF reclaimed soils. Soil total N(TN), Olsen phosphorus(P) and available potassium(K) were significantly higher in inoculated soil after 1–7 years of reclamation(except for individual cases), and increased with reclamat
文摘杉木是我国南方重要的速生用材树种,同时南方面临着日益增强的大气氮沉降。尽管有大量的研究探索了氮沉降对杉木林的影响,但关于氮沉降对杉木与丛枝菌根真菌(arbuscular mycorrhizal fungi,AMF)共生关系影响的研究则较少报道。以10年生杉木为研究对象,模拟了不同氮沉降水平(N3:3 g N m^(-2)a^(-1),N6:6 g N m^(-2)a^(-1)和Control:0 g N m^(-2)a^(-1))对AMF侵染率和球囊霉素的影响。结果显示:在冬季,与对照相比,N3处理显著增加了AMF侵染率,N6处理显著增加易提取球囊霉素的含量,而氮沉降对总球囊霉素含量无显著影响。在春季,与对照相比,N3处理显著增加AMF侵染率,但是显著降低了易提取球囊霉素的含量。N6处理显著增加总球囊霉素的含量,但显著降低易提取球囊霉素的含量。相同氮添加情况下,春季的AMF侵染率显著低于冬季,而球囊霉素含量(易提取球囊霉素和总球囊霉素)均显著高于冬季的。土壤有效磷与AMF侵染率显著负相关,而与易提取球囊霉素和总球囊霉素含量显著正相关。侵染率与pH显著正相关,球囊霉素与pH显著负相关。本实验针对AMF侵染率和球囊霉素的含量对于氮沉降的响应做出探讨,对全面了解杉木与AMF之间的共生关系对氮沉降的响应及其机制提供了新的参考。