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Effects of phenolic acids on soil nitrogen mineralization over successive rotations in Chinese fir plantations 被引量:7

Effects of phenolic acids on soil nitrogen mineralization over successive rotations in Chinese fir plantations
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摘要 Phenolic acids are secondary metabolites of plants that significantly affect nutrient cycling processes.To investigate such effects,the soil available nitrogen(N)content,phenolic acid content,and net N mineralization rate in three successive rotations of Chinese fir plantations in subtropical China were investigated.Net N mineralization and nitrification rates in soils treated with phenolic acids were measured in an ex situ experiment.Compared with first-rotation plantations(FCP),the contents of total soil nitrogen and nitrate in second(SCP)-and third-rotation plantations(TCP)decreased,and that of soil ammonium increased.Soil net N mineralization rates in the second-and third-rotation plantations also increased by 17.8%and 39.9%,respectively.In contrast,soil net nitrification rates decreased by 18.0%and 25.0%,respectively.The concentrations of total phenolic acids in the FCP soils(123.22±6.02 nmol g^-1)were 3.0%and 17.9%higher than in the SCP(119.68±11.69 nmol g^-1)and TCP(104.51±8.57 nmol g^-1,respectively).The total content of phenolic acids was significantly correlated with the rates of net soil N mineralization and net nitrification.The ex situ experiment showed that the net N mineralization rates in soils treated with high(HCPA,0.07 mg N kg^-1 day^-1)and low(LCPA,0.18 mg N kg^-1 day^-1)concentrations of phenolic acids significantly decreased by 78.6%and 42.6%,respectively,comparing with that in control(0.32 mg N kg^-1 day^-1).Soil net nitrification rates under HCPA and LCPA were significantly higher than that of the control.The results suggested that low contents of phenolic acids in soil over successive rotations increased soil net N mineralization rates and decreased net nitrification rates,leading to consequent reductions in the nitrate content and enhancement of the ammonium content,then resulting in enhancing the conservation of soil N of successive rotations in Chinese fir plantation. Phenolic acids are secondary metabolites of plants that significantly affect nutrient cycling processes.To investigate such effects,the soil available nitrogen(N) content,phenolic acid content,and net N mineralization rate in three successive rotations of Chinese fir plantations in subtropical China were investigated.Net N mineralization and nitrification rates in soils treated with phenolic acids were measured in an ex situ experiment.Compared with first-rotation plantations(FCP),the contents of total soil nitrogen and nitrate in second(SCP)-and third-rotation plantations(TCP) decreased,and that of soil ammonium increased.Soil net N mineralization rates in the second-and third-rotation plantations also increased by17.8% and 39.9%,respectively.In contrast,soil net nitrification rates decreased by 18.0% and 25.0%,respectively.The concentrations of total phenolic acids in the FCP soils(123.22±6.02 nmol g-1) were 3.0% and17.9%higher than in the SCP(119.68 ± 11.69 nmol g-1)and TCP(104.51±8.57 nmol g-1,respectively).The total content of phenolic acids was significantly correlated with the rates of net soil N mineralization and net nitrification.The ex situ experiment showed that the net N mineralization rates in soils treated with high(HCPA,0.07 mg N kg-1 day-1) and low(LCPA,0.18 mg N kg-1 day-1) concentrations of phenolic acids significantly decreased by 78.6% and 42.6%,respectively,comparing with that in control(0.32 mg N kg-1 day-1).Soil net nitrification rates under HCPA and LCPA were significantly higher than that of the control.The results suggested that low contents of phenolic acids in soil over successive rotations increased soil net N mineralization rates and decreased net nitrification rates,leading to consequent reductions in the nitrate content and enhancement of the ammonium content,then resulting in enhancing the conservation of soil N of successive rotations in Chinese fir plantation.
出处 《Journal of Forestry Research》 SCIE CAS CSCD 2020年第1期303-311,共9页 林业研究(英文版)
基金 supported by the National Key Research and Development Program of China(Grant No.2016YFD0600304-2) the National Natural Science Foundation of China(Grant Nos.31830015 and 41630755) Hunan Province Science and Technology Program(2017TP1040)
关键词 Secondary metabolics Nitrogen cycle Chinese fir VANILLIN Vanillic acid p-Hydroxybenzoic acid Secondary metabolics Nitrogen cycle Chinese fir Vanillin Vanillic acid q-Hydroxybenzoicacid
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  • 1马雪华.在杉木林和马尾松林中雨水的养分淋溶作用[J].生态学报,1989,9(1):15-20. 被引量:75
  • 2彭培好,王金锡,胡振宇,高华东.人工桤柏混交林中降雨对养分物质的淋溶影响[J].生态学杂志,1996,15(5):12-15. 被引量:22
  • 3田大伦.-[J].林业科技通讯,1987,(6):13-15.
  • 4潘维俦.-[J].中南林学院学报,1984,4(1):18-28.
  • 5邓仁坚,生态学杂志,1988年,7卷,1期,13页
  • 6方奇,林业科学,1987年,23卷,4期,389页
  • 7吴诗能,广西林业科技,1986年,3期,11页
  • 8冯宗炜,南京林产工业学院学报,1982年,3期,19页
  • 9李家修,张成琦,杨正元,朱志强.气候生态特点对不同类型小麦生长发育的影响[J]贵州农学院学报,1987(01).
  • 10盛炜彤.关于提高杉木材生产力的几个问题[J]浙江林业科技,1986(01).

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