[1]刘月炎,邓小红,王锐洁,等.CO2浓度升高和干旱对虎耳草生长及有效成分的影响[J].北方园艺,2023,(02):96-103.[doi:10.11937/bfyy.20222091]
 LIU Yueyan,DENG Xiaohong,WANG Ruijie,et al.Effects of Elevated CO2 Concentration and Drought Stress on Growth and Active Ingredients of Saxifraga stolonifera Curt.[J].Northern Horticulture,2023,(02):96-103.[doi:10.11937/bfyy.20222091]
点击复制

CO2浓度升高和干旱对虎耳草生长及有效成分的影响

参考文献/References:

[1]王菡娟.2019年全球二氧化碳浓度继续升高[N].人民政协报,2021-07-22(6).[2]圣倩倩,高顺,顾舒文,等.CO2浓度升高对植物生理生化影响的研究进展[J].西部林业科学,2021,50(3):171-176.[3]JEFFERSON M.IPCC fifth assessment synthesis report:‘Climate change 2014:Longer report’:Critical analysis[J].Technol Forecast Soc,2015,92:362-363.[4]MEDVIGY D,WOFSY S C,MUNGER J W,et al.Responses of terrestrial ecosystems and carbon budgets to current and future environmental variability[J].Proc Natl Acad Sci USA,2010,107(18):8275-8280.[5]SIEBERS M H,YENDREK C R,DRAG D,et al.Heat waves imposed during early pod development in soybean (Glycine max) cause significant yield loss despite a rapid recovery from oxidative stress[J].Global Change Biol,2015,21(8):3114-3125.[6]LUO Y,REYNOLDS J,WANG Y P,et al.A search for predictive understanding of plant responses to elevated CO2[J].Global Change Biol,2010,5(2):143-156.[7]PENUELAS J,CASTELLS E,JOFFRE R,et al.Carbon-based secondary and structural compounds in Mediterranean shrubs growing near a natural CO2 spring[J].Global Change Biol,2010,8(3):281-288.[8]GIELEN B,CALFAPIETRA C,CLAUS A,et al.Crown architecture of Populus spp.is differentially modified by free-air CO2 enrichment (POPFACE)[J].New Phytol,2010,153(1):91-99.[9]许小勇,武佩琪,张新岭,等.外源增施CO2对茄子生长及光合特性的影响[J].北方园艺,2021(14):65-73.[10]ROGERS H H,RUNION G B,KRUPA S V.Plant responses to atmospheric CO2 enrichment with emphasis on roots and the rhizosphere[J].Environ Pollut,1994,83(1/2):155-189.[11]许俊萍,田昆,孙梅,等.水葱构件生长对大气CO2浓度升高的响应[J].西南林业大学学报,2016,36(5):84-88.[12]朱丽芳,张丹,庞璐.干旱胁迫对植物生理方面的影响[J].现代园艺,2017(21):71-72.[13]CHAVES M M,FLEXAS J,PINHEIRO C.Photosynthesis under drought and salt stress:Regulation mechanisms from whole plant to cell[J].Ann Bot,2008,103(4):551-560.[14]孙海博,任瑞芬,郭芳,等.干旱胁迫下美国薄荷幼苗形态与生理特性研究[J].山西农业大学学报(自然科学版),2018,38(4):65-73.[15]MARJAN S H,DAVOOD S,MORTEZA E,et al.Effect of drought stress on growth parameters,osmolyte contents,antioxidant enzymes and glycyrrhizin synthesis in licorice (Glycyrrhiza glabra L.) grown in the field[J].Phytochemistry,2018,156:124-134.[16]STEFANO C,GIOVANNI M,GIOVANNI E,et al.Physiological and metabolomic analysis of Punica granatum (L.) under drought stress[J].Planta,2016,2(243):441-449.[17]ZHU Z B,LIANG Z S,HAN R L,et al.Impact of fertilization on drought response in the medicinal herb Bupleurum chinense,DC.:Growth and saikosaponin production[J].Ind Crops Prod,2009,29(2):629-633.[18]MORGAN J A,LECAIN D R,PENDALL E,et al.C4 grasses prosper as carbon dioxide eliminates desiccation in warmed semi-arid grassland[J].Nature,2011,476(7359):202.[19]ATWELL B J,HENERY M L,ROGERS G S,et al.Canopy development and hydraulic function in Eucalyptus tereticornis grown in drought in CO2 enriched atmospheres[J].Funct Plant Biol,2007,34(12):1137-1149.[20]SMITH S D,HUXMAN T E,ZITZER S F,et al.Elevated CO2 increases productivity and invasive species success in an arid ecosystem[J].Nature,2000,408(6808):79-82.[21]XU Z,ZHOU G,WANG Y.Combined effects of elevated CO2 and soil drought on carbon and nitrogen allocation of the desert shrub Caragana intermedia[J].Plant Soil,2007,301(1/2):87-97.[22]刘玉英,李卓琳,韩佳育,等.模拟降雨量变化与CO2浓度升高对羊草光合特性和生物量的影响[J].草业学报,2015,24(11):128-136.[23]何红梅,戴岳,夏玉凤.虎耳草的研究概况[J].中国野生植物资源,2017,36(2):75-78.[24]张慧,李秋月,贺尚文,等.虎耳草化学成分及药理活性研究进展[J].动物医学进展,2021,42(1):94-99.[25]秦红英,周光明,彭贵龙,等.HPLC同时测定虎耳草中的岩白菜素、原儿茶酸和没食子酸的含量[J].四川大学学报(自然科学版),2013,50(5):1044-1048.[26]贺安娜,左浪柱,李胜华,等.干旱对虎耳草光合特性及有效成分含量的影响[J].怀化学院学报,2016,35(5):6-9.[27]翟晓朦,张晓波,王铁梅,等.CO2浓度升高对不同秋眠类型苜蓿生长发育的影响[J].草业科学,2017,34(3):523-531.[28]刘洋,孙胜,邢国明,等.不同浓度CO2施肥对温室黄瓜生长与产量的影响[J].山西农业大学学报(自然科学版),2018(2):53-58.[29]王晨阳.土壤水分胁迫对小麦形态及生理影响的研究[J].河南农业大学学报,1992(1):89-98.[30]付秋实,李红岭,崔健,等.水分胁迫对辣椒光合作用及相关生理特性的影响[J].中国农业科学,2009,42(5):1859-1866.[31]种培芳,姬江丽,李毅,等.红砂(Reaumuria soongorica)对大气CO2浓度升高及降水变化的光合生理响应[J].中国沙漠,2017(4):714-723.[32]田露.水稻幼苗对高浓度CO2和水分胁迫的生理响应研究[D].沈阳:沈阳师范大学,2016.[33]朱教君,康宏樟,李智辉.不同水分胁迫方式对沙地樟子松幼苗光合特性的影响[J].北京林业大学学报,2006,28(2):57-63.[34]裴斌,张光灿,张淑勇,等.土壤干旱胁迫对沙棘叶片光合作用和抗氧化酶活性的影响[J].生态学报,2013,33(5):1386-1396.[35]何建社,张利,刘千里,等.岷江干旱河谷区典型灌木对干旱胁迫的生理生化响应[J].生态学报,2018,38(7):2362-2371.[36]ANTONIO R,PEDRO D V,JOS A H,et al.Superoxide dismutase and total peroxidase activities in relation to drought recovery performance of mycorrhizal shrub seedlings grown in an amended semiarid soil[J].J Plant Physiol,2008,165(7):720-722.[37]杜磊,赵尊练,巩振辉,等.水分胁迫对线辣椒叶片渗透调节作用的影响[J].干旱地区农业研究,2010,28(3):188-190.[38]LORIO P L.Growth-differentiation balance:A basis for understanding southern pine beetle-tree interactions[J].For Ecol Manag,1986,14(4):259-273.[39]孙萌,张子龙.药用植物对气候变化响应研究进展[J].生物学杂志,2015(5):84-88.[40]RASINENI G K,GUHA A,REDDY A R.Responses of Gmelina arborea,a tropical deciduous tree species,to elevated atmospheric CO2:Growth,biomass productivity and carbon sequestration efficacy[J].Plant Science,2011,181(4):428-438.

相似文献/References:

[1]郑峻,单灿灿,张紫华,等.CO2浓度对真姬菇后熟阶段生物学参数的影响[J].北方园艺,2022,(09):115.[doi:10.11937/bfyy.20213839]
 ZHENG Jun,SHAN Cancan,ZHANG Zihua,et al.Effects of CO2 Concentration on Biological Parameters of Post-maturing Stage of Hypsizygus marmoreus[J].Northern Horticulture,2022,(02):115.[doi:10.11937/bfyy.20213839]

备注/Memo

第一作者简介:刘月炎(1998-),女,硕士研究生,研究方向为植物生理生态。E-mail:1963916116@qq.com.责任作者:王健健(1985-),男,博士,副教授,现主要从事植物生理生态等研究工作。E-mail:wangjj33209@163.com.基金项目:国家自然科学基金资助项目(31760155);贵州省生物学一流学科建设资助项目(GNYL[2017]009)。收稿日期:2022-04-08

更新日期/Last Update: 2023-02-16