|本期目录/Table of Contents|

[1]罗天相,卢以鑫.蚯蚓对N2O排放的影响及途径研究进展[J].江苏农业科学,2019,47(18):50-53.
 Luo Tianxiang,et al.Research progress on influence and mechanism of earthworm on N2O emission from soil[J].Jiangsu Agricultural Sciences,2019,47(18):50-53.
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蚯蚓对N2O排放的影响及途径研究进展(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第47卷
期数:
2019年第18期
页码:
50-53
栏目:
专论与综述
出版日期:
2019-10-15

文章信息/Info

Title:
Research progress on influence and mechanism of earthworm on N2O emission from soil
作者:
罗天相 卢以鑫
宜春学院生命科学与资源环境学院,江西宜春 336000
Author(s):
Luo Tianxianget al
关键词:
蚯蚓N2O排放途径关键酶基因秸秆残体还田源汇研究进展
Keywords:
-
分类号:
S154.1
DOI:
-
文献标志码:
A
摘要:
土壤生态系统与温室气体排放关系密切。蚯蚓参与调控土壤的能量流动和物质循环过程,对土壤温室气体如N2O的产生与排放产生重要影响。蚯蚓影响N2O排放的关键酶基因,特别是反硝化过程中的Nir与Nos基因比,调控土壤硝化和反硝化作用进程,影响土壤N2O排放。蚯蚓促进土壤氮素分解矿化过程,与氮素可利用性密切相关,显著影响了N2O的产生和排放。秸秆残体还田处理是一种常见的农田管理方式,有助于培肥土壤。但不同C/N的秸秆、秸秆施加方式(混施、表施)在接种不同生态型蚯蚓后,对土壤N2O排放量的影响差异很大。蚯蚓在取食、活动包括死亡后,都可能直接释放出N2O,尽管直接排放的N2O量在田间的比例相对较低,但这在微系统中仍然不容忽视。
Abstract:
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参考文献/References:

[1]Karsten G R,Drake H L. Denitrifying bacteria in the earthworm gastrointestinal tract and in vivo emission of nitrous oxide (N2O) by earthworms[J]. Applied and Environmental Microbiology,1997,63(5):1878-1882.
[2]Drake H L,Horn M A. Earthworms as a transient heaven for terrestrial denitrifying microbes:a review[J]. Engineering in Life Sciences,2006,6(3):261-265.
[3]Lubbers I M,van Groenigen K J,Fonte S J,et al. Greenhouse-gas emissions from soils increased by earthworms[J]. Nature Climate Change,2013,3(3):187-194.
[4]Borken W,Gründel S,Beese F. Potential contribution of Lumbricus terrestris L. to carbon dioxide,methane and nitrous oxide fluxes from a forest soil[J]. Biology and Fertility of Soils,2000,32(2):142-148.
[5]罗天相,胡锋,李辉信. 施加秸秆和蚯蚓活动对麦田N2O排放的影响[J]. 生态学报,2013,33(23):7545-7552.
[6]Rizhiya E,Bertora C,van Vliet P C,et al. Earthworm activity as a determinant for N2O emission from crop residue[J]. Soil Biology & Biochemistry,2007,39(8):2058-2069.
[7]Parkin T B,Berry E C. Microbial nitrogen transformations in earthworm burrows[J]. Soil Biology & Biochemistry,1999,31(13):1765-1771.
[8]曹佳,王冲,皇彦,等. 蚯蚓对土壤微生物及生物肥力的影响研究进展[J]. 应用生态学报,2015,26(5):1579-1586.
[9]Braker G,Zhou J,Wu L,et al. Nitrite reductase genes (nir K and nir S) as functional markers to investigate diversity of denitrifying bacteria in pacific northwest marine sediment communities[J]. Applied and Environmental Microbiology,2000,66(5):2096-2104.
[10]王海涛,郑天凌,杨小茹. 土壤反硝化的分子生态学研究进展及其影响因素[J]. 农业环境科学学报,2013,32(10):1915-1924.
[11]Philippot L,Andert J,Jones C M,et al. Importance of denitrifiers lacking the genes encoding the nitrous oxide reductase for N2O emissions from soil[J]. Global Change Biology,2011,17(3):1497-1504.
[12]Kong X W,Duan Y F,Schramm A,et al. Mitigating N2O emissions from clover residues by 3,4-dimethylpyrazole phosphate (DMPP) without adverse effects on the earthworm Lumbricus terrestris[J]. Soil Biology & Biochemistry,2017,104:95-107.
[13]Horn M A,Drake H L,Schramm A. Nitrous oxide reductase genes (nos Z) of denitrifying microbial populations in soil and the earthworm gut are phylogenetically similar[J]. Applied and Environmental Microbiology,2006,72(2):1019-1026.
[14]程苗苗. Bt玉米秸秆还田和赤子爱胜蚓对土壤温室气体排放的影响[D]. 广州:华南农业大学,2016.
[15]Wu Y P,Shaaban M,Zhao J S,et al. Effect of the earthworm gut-stimulated denitrifiers on soil nitrous oxide emissions[J]. European Journal of Soil Biology,2015,70:104-110.
[16]Wang Z Y,Peng S X,Sun Y,et al. How gut-stimulated denitrifiers influence soil N2O emission without earthworm activity[J]. European Journal of Soil Biology,2016,76:70-73.
[17]Horn M A,Mertel R,Gehre M,et al. In vivo emission of dinitrogen by earthworms via denitrifying bacteria in the gut[J]. Applied and Environmental Microbiology,2006,72(2):1013-1018.
[18]Chapuis-Lardy L,Brauman A,Bernard L,et al. Effect of the endogeic earthworm Pontoscolex corethrurus on the microbial structure and activity related to CO2 and N2O fluxes from a tropical soil (Madagascar)[J]. Applied Soil Ecology,2010,45(3):201-208.
[19]Wrage N,van Groenigen J W,Oenema O,et al. A novel dual-isotope labelling method for distinguishing between soil sources of N2O[J]. Rapid Communications in Mass Spectrometry,2005,19(22):3298-3306.
[20]胡安谊,焦念志. 氨氧化古菌——环境微生物生态学研究的一个前沿热点[J]. 自然科学进展,2009,19(4):370-379.
[21]Giannopoulos G,Pulleman M M,van Groenigen J W. Interactions between residue placement and earthworm ecological strategy affect aggregate turnover and N2O dynamics in agricultural soil[J]. Soil Biology and Biochemistry,2010,42(4):618-625.
[22]Denman K L,Brasseur G P,Chidthaisong A,et al. Couplings between changes in the climate system and biogeochemistry[C]//Climate Change 2007:The Physical Science Basis:Contribution of working group Ⅰ to the fourth assessment report of the intergovernmental panel on climate change. Cambridge:Cambridge University Press,2007:501-568.
[23]Lim S L,Wu T Y,Lim P N,et al. The use of vermicompost in organic farming:overview,effects on soil and economics[J]. Journal of the Science of Food and Agriculture,2015,95(6):1143-1156.
[24]Edwards C A,Bohlen P J. Biology and ecology of earthworms[M]. London:Chapman and Hall,1996:426.
[25]罗天相. 土壤动物活动对农田温室气体(CO2、N2O)排放的影响[D]. 南京:南京农业大学,2008.
[26]张宁,廖燕,孙福来,等. 不同土地利用方式下的蚯蚓种群特征及其与土壤生物肥力的关系[J]. 土壤学报,2012,49(2):364-372.
[27]Holmstrup M,Lamande M,Torp S B,et al. Associations between soil texture,soil water characteristics and earthworm populations in grassland[J]. Acta Agriculturae Scandinavica Section B(Soil and Plant Science),2011,61(7):583-592.
[28]徐国良,莫江明,周国逸,等. 土壤动物与N素循环及对N沉降的响应[J]. 生态学报,2003,23(11):2453-2463.
[29]Chen Y X,Zhang Y F,Zhang Q G,et al. Earthworms modify microbial community structure and accelerate maize stover decomposition during vermicomposting[J]. Environmental Science and Pollution Research International,2015,22(21):17161-17170.
[30]Li X X,Srensen P,Olesen J E,et al. Evidence for denitrification as main source of N2O emission from residue-amended soil[J]. Soil Biology & Biochemistry,2016,92:153-160.
[31]Ravindran B,Contreras-Ramos S M,Sekaran G. Changes in earthworm gut associated enzymes and microbial diversity on the treatment of fermented tannery waste using epigeic earthworm Eudrilus eugeniae[J]. Ecological Engineering,2015,74:394-401.
[32]王争妍,雷紫烟,叶志雄,等. 蚯蚓作用下不同C/N秸秆还田对土壤CO2及N2O排放的影响[J]. 农业环境科学学报,2017,36(9):1908-1915.
[33]Wüst P K,Horn M A,Henderson G,et al. Gut-associated denitrification and in vivo emission of nitrous oxide by the earthworm families megascolecidae and lumbricidae in New Zealand[J]. Applied and Environmental Microbiology,2009,75(11):3430-3436.
[34]韩兴国,王智平. 土壤生物多样性与微量气体(CO2、CH4、N2O)代谢[J]. 生物多样性,2003,11(4):322-332.

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备注/Memo

备注/Memo:
收稿日期:2018-05-27
基金项目:国家自然科学基金(编号:31460150);宜春学院地方发展中心研究项目(编号:2015DF031)。
作者简介:罗天相(1973—),男,江西南昌人,博士,教授,主要从事土壤生态学与环境生态学研究。E-mail:ltxls@139.com。
更新日期/Last Update: 2019-09-20