|本期目录/Table of Contents|

[1]胡智勇,陈孝杨,陈敏,等.土壤与大气温度及CO2浓度变化对根系呼吸影响研究进展[J].江苏农业科学,2018,46(11):1-5.
 Hu Zhiyong,et al.Research progress on effects of soil and atmospheric temperature and CO2 concentration on root respiration[J].Jiangsu Agricultural Sciences,2018,46(11):1-5.
点击复制

土壤与大气温度及CO2浓度变化对
根系呼吸影响研究进展
(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第46卷
期数:
2018年第11期
页码:
1-5
栏目:
专论与综述
出版日期:
2018-06-05

文章信息/Info

Title:
Research progress on effects of soil and atmospheric temperature and CO2 concentration on root respiration
作者:
胡智勇 陈孝杨 陈敏 刘本乐 邢雅珍 张凌霄
安徽理工大学地球与环境学院,安徽淮南 232001
Author(s):
Hu Zhiyonget al
关键词:
根系呼吸土壤温度大气温度CO2浓度响应特征响应机制
Keywords:
-
分类号:
Q945.1
DOI:
-
文献标志码:
A
摘要:
植物根系呼吸是陆地生态系统土壤碳收支及生物圈碳平衡的一个重要依据,准确把握根系呼吸的影响因素及其作用具有非常重要的意义。目前已有许多专家和学者对此进行了不同层次的研究和探讨,并对根系呼吸的研究意义和重要性进行了客观评价。主要综述不同时空区域下根系呼吸对温度、CO2浓度变化的响应特征,讨论各植物类型根系呼吸在不同季节和不同影响因子下的变化趋势,同时指出根系呼吸速率变化的不确定性,重点分析根系呼吸对温度、CO2浓度变化等的响应机制。在此基础上进行阐述和概括,并对根系呼吸相关内容和发展趋势进行展望。
Abstract:
-

参考文献/References:

[1]Liu Y,Han S J,Zhou Y M,et al. Contribution of root respiration to total soil respiration in a betula ermanii-dark coniferous forest ecotone of the Changbai Mountains,China[J]. Pedosphere,2005,15(4):448-455.
[2]唐罗忠. 土壤中根系呼吸通量的分离测定方法综述[J]. 南京林业大学学报(自然科学版),2008,32(2):97-102.
[3]Ding P,Shen C D,Wang N,et al. Carbon isotopic composition,turnover and origins of soil CO2 in a monsoon evergreen broadleaf forest in the Dinghushan Biosphere Reservoir,South China[J]. Chinese Science Bulletin,2010,55(23):2548-2556.
[4]Yuste J C,Baldocchi D D,Gershenson A,et al. Microbial soil respiration and its dependency on carbon inputs,soil temperature and moisture[J]. Global Change Biology,2007,13(9):2018-2035.
[5]Savage K,Davidson E A,Tang J. Diel patterns of autotrophic and heterotrophic respiration among phenological stages[J]. Global Change Biology,2013,19(4):1151-1159.
[6]Wang X G,Zhu B,Wang Y Q,et al. Field measures of the contribution of root respiration to soil respiration in an alder and cypress mixed plantation by two methods:trenching method and root biomass regression method[J]. European Journal of Forest Research,2008,127(4):285-291.
[7]Glenn D M,Campostrini E. Girdling and summer pruning in apple increase soil respiration[J]. Scientia Horticulturae,2011,129(4):889-893.
[8]Snell H S K,Robinson D,Midwood A J. Sampling root-respired CO2 in-situ for 13C measurement[J]. Plant and Soil,2015,393(1/2):259-271.
[9]Franck N,Morales J P,Arancibia-Avendao D,et al. Seasonal fluctuations in Vitis vinifera root respiration in the field[J]. New Phytologist,2011,192(4):939-951.
[10]Tomotsune M,Yoshitake S,Watanabe S,et al. Separation of root and heterotrophic respiration within soil respiration by trenching,root biomass regression,and root excising methods in a cool-temperate deciduous forest in Japan[J]. Ecological Research,2013,28(2):259-269.
[11]张雪松,申双和,谢轶嵩,等. 华北平原冬麦田根呼吸对土壤总呼吸的贡献[J]. 中国农业气象,2009,30(3):289-296,301.
[12]Bouma T J,Kai L N,Eissenstat D M,et al. Estimating respiration of roots in soil:interactions with soil CO2,soil temperature and soil water content[J]. Plant and Soil,1997,195(2):221-232.
[13]Jarvi M P,Burton A J. Acclimation and soil moisture constrain sugar maple root respiration in experimentally warmed soil[J]. Tree Physiology,2013,33(9):949-959.
[14]Rewald B,Kunze M E,Godbold D L. NH4 ∶ NO3 nutrition influence on biomass productivity and root respiration of poplar and willow clones[J]. Global Change Biology Bioenergy,2016,8(1):51-58.
[15]Makita N,Kosugi Y,Dannoura M,et al. Patterns of root respiration rates and morphological traits in 13 tree species in a tropical forest[J]. Tree Physiology,2012,32(3):303-312.
[16]McConnell N A,Turetsky M R,McGuire A D,et al. Controls on ecosystem and root respiration across a permafrost and wetland gradient in interior Alaska[J]. Environmental Research Letters,2013,8(4):5029.
[17]孙宝玉,韩广轩. 模拟增温对土壤呼吸影响机制的研究进展与展望[J]. 应用生态学报,2016,27(10):3394-3402.
[18]姜艳. 毛竹林土壤呼吸及其三个生物学过程的时空格局变化研究[D]. 北京:中国林业科学研究院,2010.
[19]Nakamura T,Nakamura M. Root respiratory costs of ion uptake,root growth,and root maintenance in wetland plants:efficiency and strategy of O2 use for adaptation to hypoxia[J]. Oecologia,2016,182(3):667-678.
[20]Lundegardh H. Carbon dioxide evolution of soil and crop growth[J]. Soil Science,1927,23(6):417-453.
[21]Wiant H V. Has the contribution of litter decay to forest “soil respiration” been overestimated?[J]. Journal of Forestry Washington,1967,65(6):408-409.
[22]Burton A J,Jarvey J C,Jarvi M P,et al. Chronic N deposition alters root respiration-tissue N relationship in northern hardwood forests[J]. Global Change Biology,2012,18(1):258-266.
[23]Jia S,McLaughlin N B,Gu J,et al. Relationships between root respiration rate and root morphology,chemistry and anatomy in Larix gmelinii and Fraxinus mandshurica[J]. Tree Physiology,2013,33(6):579-589.
[24]Marsden C,Nouvellon Y,Epron D. Relating coarse root respiration to root diameter in clonal Eucalyptus stands in the Republic of the Congo[J]. Tree Physiology,2008,28(8):1245-1254.
[25]Hao Q,Jiang C. Contribution of root respiration to soil respiration in a rape (Brassica campestris L.) field in Southwest China[J]. Plant Soil and Environment,2014,60(1):8-14.
[26]Hawthorne I,Johnson M S,Jassal R S,et al. Application of biochar and nitrogen influences fluxes of CO2,CH4 and N2O in a forest soil[J]. Journal of Environmental Management,2017,192:203-214.
[27]Sorrenti G,Buriani G,Gaggia F,et al. Soil CO2 emission partitioning,bacterial community profile and gene expression of Nitrosomonas spp. and Nitrobacter spp. of a sandy soil amended with biochar and compost[J]. Applied Soil Ecology,2017,112:79-89.
[28]Ceccon C,Tagliavini M,Schmitt A O,et al. Untangling the effects of root age and tissue nitrogen on root respiration in Populus tremuloides at different nitrogen supply[J]. Tree Physiology,2016,36(5):618-627.
[29]Li P,Yang Y H,Fang J Y. Variations of root and heterotrophic respiration along environmental gradients in Chinas forests[J]. Journal of Plant Ecology,2013,6(5):358-367.
[30]Thurgood A,Singh B,Jones E,et al. Temperature sensitivity of Soil and root respiration in contrasting soils[J]. Plant and Soil,2014,382(1/2):253-267.
[31]Rachmilevitch S,Lambers H,Huang B. Short-term and long-term root respiratory acclimation to elevated temperatures associated with root thermotolerance for two Agrostis grass species[J]. Journal of Experimental Botany,2008,59(14):3803-3809.
[32]Zhao Z M,Zhao C Y,Mu Y L,et al. Contributions of root respiration to total soil respiration before and after frost in Populus euphratica forests[J]. Journal of Plant Nutrition and Soil Science,2011,174(6):884-890.
[33]Escalona J M,Tomas M,Martorell S,et al. Carbon balance in grapevines under different soil water supply:importance of whole plant respiration[J]. Australian Journal of Grape and Wine Research,2012,18(3):308-318.
[34]Lloyd J,Taylor J A. On the temperature dependence of Soil respiration[J]. Functional Ecology,1994,8(3):315-323.
[35]陈光水,杨玉盛,王小国,等. 格氏栲天然林与人工林根系呼吸季节动态及影响因素[J]. 生态学报,2005,25(8):1941-1947.
[36]郭建平. 气候变化对中国农业生产的影响研究进展[J]. 应用气象学报,2015(1):1-11.
[37]闫美芳,张新时,周广胜,等. 不同树龄杨树人工林的根系呼吸季节动态[J]. 生态学报,2010,30(13):3449-3456.
[38]Schindlbacher A,Zechmeister-Boltenstern S,Jandl R. Carbon losses due to soil warming:do autotrophic and heterotrophic soil respiration respond equally?[J]. Global Change Biology,2009,15(4):901-913.
[39]Wang X,Nakatsubo T,Nakane K. Impacts of elevated CO2,and temperature on soil respiration in warm temperate evergreen Quercus glauca stands:an open-top chamber experiment[J]. Ecological Research,2012,27(3):595-602.
[40]Suseela V,Dukes J S. The responses of soil and rhizosphere respiration to simulated climatic changes vary by season[J]. Ecology,2013,94(2):403-413.
[41]Norby R J,ONeill E G,Hood W G,et al. Carbon allocation,root exudation and mycorrhizal colonization of Pinus echinata seedlings grown under CO2 enrichment[J]. Tree Physiology,1987,3(3):203-210.
[42]Bouma T J,Nielsen K L,Eissenstat D M,et al. Soil CO2 concentration does not affect growth or root respiration in bean or citrus[J]. Plant Cell and Environment,1997,20(12):1495-1505.
[43]Burton A J,Zogg G P,Pregitzer K S,et al. Effect of measurement CO2 concentration on sugar maple root respiration[J]. Tree Physiology,1997,17(7):421-427.
[44]Luo Y,Jackson R B,Field C B,et al. Elevated CO2 increases belowground respiration in California grasslands[J]. Oecologia,1996,108(1):130-137.
[45]Johnson M G,Phillips D L,Tingey D T,et al. Effects of elevated CO2,N-fertilization,and season on survival of ponderosa pine fine roots[J]. Canadian Journal of Forest Research,2000,30(2):220-228.
[46] 寇太记,徐晓峰,朱建国,等. CO2浓度升高和施氮条件下小麦根际呼吸对土壤呼吸的贡献[J]. 应用生态学报,2011,22(10):2533-2538.
[47]Drake J E,Stoy P C,Jackson R B,et al. Fine-root respiration in a loblolly pine (Pinus taeda L.) forest exposed to elevated CO2 and N fertilization[J]. Plant,Cell and Environment,2008,31(11):1663-1672.
[48]寇太记,朱建国,谢祖彬,等. CO2浓度增加和不同氮肥水平对冬小麦根系呼吸及生物量的影响[J]. 植物生态学报,2008,32(4):922-931.
[49]Daepp M,Suter D,Almeida J P F,et al. Yield response of Lolium perenne swards to free air CO2 enrichment increased over six years in a high N input system on fertile soil[J]. Global Change Biology,2000,6(7):805-816.
[50]Suter D,Frehner M,Fischer B U,et al. Elevated CO2 increase carbon allocation to the roots of Lolium perenne under free-air CO2 enrichment but not in a controlled environment[J]. New Phytologist,2002,154(1):65-75.
[51]Lagomarsino A,de Angelis P,Moscatelli M,et al. The influence of temperature and labile C substrates on heterotrophic respiration in response to elevated CO2 and nitrogen fertilization[J]. Plant and Soil,2009,317(1/2):223-234.
[52]Lynch D J,Matamala R,Iversen C M,et al. Stored carbon partly fuels fine-root respiration but is not used for production of new fine roots[J]. New Phytologist,2013,199(2):420-430.
[53]Thorne M A,Frank D A. The effects of clipping and soil moisture on leaf and root morphology and root respiration in two temperate and two tropical grasses[J]. Plant Ecology,2009,200(2):205-215.
[54]Burton A J,Pregitzer K S. Measurement carbon dioxide concentration does not affect root respiration of nine tree species in the field[J]. Tree Physiology,2002,22(1):67-72.
[55]Bloemen J,Teskey R O,McGuire M A,et al. Root xylem CO2 flux:an important but unaccounted-for component of root respiration[J]. Trees,2016,30(2):343-352.
[56]Salomón R,Valbuena-Carabaóa M,Rodríguez-Calcerrada J,et al. Xylem and soil CO2 fluxes in a Quercus pyrenaica Willd. coppice:root respiration increases with clonal size[J]. Annals of Forest Science,2015,72(8):1065-1078.

相似文献/References:

[1]兰孟焦,吴问胜,潘浩,等.不同地膜覆盖对土壤温度和甘薯产量的影响[J].江苏农业科学,2015,43(01):104.
 Lan Mengjiao,et al.Effects of different plastic film mulching on temperature of soil and yield of sweet potato[J].Jiangsu Agricultural Sciences,2015,43(11):104.
[2]刘胜尧,张立峰,贾建明,等.华北旱地覆膜对春甘薯田土壤温度和水分的效应[J].江苏农业科学,2015,43(03):287.
 Liu Shengyao,et al.Effects of plastic film mulching in spring on moisture and temperature of soil in sweet potato field on dryland of northern China[J].Jiangsu Agricultural Sciences,2015,43(11):287.
[3]郑娜,司剑华,乔建华.土壤增温对高寒冻土层地区青杨生长的影响[J].江苏农业科学,2016,44(05):234.
 Zheng Na,et al.Effect of soil calescence on growth of Populus cathayana in alpine permafrost[J].Jiangsu Agricultural Sciences,2016,44(11):234.
[4]聂晓,王毅勇.非充分灌溉下寒地井灌稻田生态经济效益[J].江苏农业科学,2016,44(10):151.
 Nie Xiao,et al.Ecological and economic benefits of well irrigated paddy fields in cold region of China under deficit irrigation[J].Jiangsu Agricultural Sciences,2016,44(11):151.
[5]杜江洪,景振举,郑伟,等.保墒减蒸技术对半干旱地区玉米生长发育及产量的影响[J].江苏农业科学,2016,44(11):122.
 Du Jianghong,et al.Effects of soil moisture conservation and evaporation reduction technology on growth and yield of maize in semi-arid area[J].Jiangsu Agricultural Sciences,2016,44(11):122.
[6]安颖蔚,史书强,冯良山,等.鲜食玉米应用不同厚度PBSA降解膜效果研究[J].江苏农业科学,2017,45(10):45.
 An Yingwei,et al.Application effects of PBSA degradable mulching film with different thicknesses on fresh corn[J].Jiangsu Agricultural Sciences,2017,45(11):45.
[7]庞明亮,李波,姚名泽.日光温室玉米秸秆深埋土壤温度变化规律研究[J].江苏农业科学,2017,45(16):231.
 Pang Mingliang,et al.Study on temperature variation of corn straw buried soil in solar greenhouse[J].Jiangsu Agricultural Sciences,2017,45(11):231.
[8]袁余,苏学德,李鹏程,等.地下滴灌葡萄园土壤温度的时空变化特征[J].江苏农业科学,2017,45(21):127.
 Yuan Yu,et al.Spatial and temporal variations of soil temperature in underground drip vineyard[J].Jiangsu Agricultural Sciences,2017,45(11):127.
[9]于玲玲,郭强,徐阳,等.保护性耕作对华北地区玉米田土壤呼吸的影响[J].江苏农业科学,2018,46(02):253.
 Yu Lingling,et al.Effect of conservation tillage on soil respiration of maize fields in North China[J].Jiangsu Agricultural Sciences,2018,46(11):253.
[10]李鹤,李曙光,刘新潮,等.有机肥及地膜对土壤温度及春小麦水分利用效率的影响[J].江苏农业科学,2018,46(19):85.
 Li He,et al.Ifluences of organic fertilizer and plastic film on soil temperature and water use efficiency of spring wheat[J].Jiangsu Agricultural Sciences,2018,46(11):85.

备注/Memo

备注/Memo:
收稿日期:2017-10-11
基金项目:国家自然科学基金(编号:41572333、51274013);安徽理工大学研究生创新基金(编号:2017CX2059、2017CX2004)。
作者简介:胡智勇(1994—),男,安徽霍邱人,硕士研究生,主要从事矿山生态环境修复研究。E-mail:1115671775@qq.com。
通信作者:陈孝杨,博士,教授,主要从事矿山生态环境修复与土地复垦研究。E-mail:chenxy@aust.edu.cn。
更新日期/Last Update: 2018-06-05