ZHANG Qi,SU Yonghong.Research Progress of Plant Water Utilization Strategies[J].Northern Horticulture,2022,(07):119-127.[doi:10.11937/bfyy.20213579]
植物水分利用策略研究进展
- Title:
- Research Progress of Plant Water Utilization Strategies
- Keywords:
- plant; water use strategy; stable hydrogen and oxygen isotope; water source model; influencing factor
- 文献标志码:
- A
- 摘要:
- 植物生长分布与水分可利用条件密切相关,研究植物水分利用策略有助于更好的了解植物生态水文过程和生态系统对环境水分的响应状况。该文系统阐述了植物水分来源研究的常用方法以及不同方法之间的优势和局限,介绍了稳定氢氧同位素技术判断植物水分来源的原理、方法和不确定性,讨论了季节、降水、生境、植物类型和生长阶段对植物水分利用策略的影响,旨在把握当前植物水分利用策略的最新研究进展以及为未来植物水分来源研究提供科学参考。通过对比各种方法的优点和缺点,指出当前水分来源研究方法存在的一些局限性,未来研究重点是利用稳定氢氧同位素技术综合植物其它理化性质辅以其它水源研究方法,深度纵向研究植物水分利用策略。
- Abstract:
- The growth and distribution of plants are closely associated with the water availability conditions.The study of plant water use strategies will help to better understand the plant eco-hydrological processes and the response of ecosystem to environmental water.This paper systematically exponded the common methods of plant water source research and the advantages and limitations of different methods,introduced the principle,methods and uncertainty of judging plant water source by stable hydrogen and oxygen isotope technology,and discussed the effects of season,precipitation,habitat,plant type and growth stage on plant water use strategies.Those could provide the latest research progress of current plant water use strategies and scientific reference for the study of
参考文献/References:
[1]ANDEREGG W R.Spatial and temporal variation in plant hydraulic traits and their relevance for climate change impacts on vegetation[J].New Phytologist,2015,205(3):1008-1014.[2]EHIERINGER J R,DAWSON T E.Water uptake by plants:Perspectives from stable isotope composition[J].Plant,Cell & Environment,1992,15(9):1073-1082.[3]XU Q,LI H,CHEN J,et al.Water use patterns of three species in subalpine forest,Southwest China:The deuterium isotope approach[J].Ecohydrology,2011,4(2):236-244.[4]WU H,LI X Y,LI J,et al.Age-related water uptake patterns of alpine plantation shrubs in reforestation region of Qinghai-Tibetan Plateau based on stable isotopes[J].Ecohydrology,2019,12(1):e2049.[5]ZHOU H,ZHAO W,ZHENG X,et al.Root distribution of Nitraria sibirica with seasonally varying water sources in a desert habitat[J].Journal of Plant Research,2015,128(4):613-622.[6]SMITH D M,ALLEN S J.Measurement of sap flow in plant stems[J].Journal of Experimental Botany,1996,47(12):1833-1844.[7]WHITE J,COOK E R,LAWRENCE J R,et al.The D/H ratios of sap in trees:Implications for water sources and tree ring D/H ratios[J].Geochimca Et Cosmochimca Acta,1985,49(1):237-246.[8]LIU Y,ZHANG X,ZHAO S,et al.The depth of water taken up by walnut trees during different phenological stages in an irrigated arid hilly area in the taihang mountains[J].Forests,2019,10(2):121-133.[9]NIE Y P,CHEN H S,WANG K L,et al.Rooting characteristics of two widely distributed woody plant species growing in different karst habitats of Southwest China[J].Plant Ecology,2014,215(10):1099-1109.[10]王尚涛,许洁,韩拓,等.干旱绿洲区葡萄根系分布及水分利用策略[J].兰州大学学报(自然科学版),2020,56(4):537-544.[11]聂云鹏,陈洪松,王克林.土层浅薄地区植物水分来源研究方法[J].应用生态学报,2010,21(9):2427-2433.[12]赵春彦,司建华,冯起,等.树干液流研究进展与展望[J].西北林学院学报,2015,30(5):98-105.[13]MGUAS C,GRIFFITHS H.Applications of stable isotopes in plant ecology[J].Progress in Botany,2003,64:472-505.[14]ELLSWORTH P Z,WILLIAMS D G.Hydrogen isotope fractionation during water uptake by woody xerophytes[J].Plant & Soil,2007,291(1/2):93-107.[15]LIN G,STERNBERG L.Hydrogen isotopic fractionation by plant roots during water uptake in Coastal Wetland plants[M].San Diego:Academic Press,1993.[16]寿文凯,胡飞龙,阿拉木萨,等.基于SPAC系统干旱区水分循环和水分来源研究方法综述[J].生态学杂志,2013,32(8):2194-2202.[17]EGGEMEYER K D,AWADA T,HARVEY F E,et al.Seasonal changes in depth of water uptake for encroaching trees Juniperus virginiana and Pinus ponderosa and two dominant C4 grasses in a semiarid grassland[J].Tree Physiology,2009,29(2),157-169.[18]GREGG P J W.Uncertainty in source partitioning using stable isotopes[J].Oecologia,2001,127(2):171-179.[19]GREGG P J W.Source partitioning using stable isotopes:Coping with too many sources[J].Oecologia,2003,136(2):261-269.[20]WEST A G,HULTINE K R,BURTCH K G,et al.Seasonal variations in moisture use in a pion-juniper woodland[J].Oecologia,2007,153(4):787-798.[21]YING M,SONG X.Using stable isotopes to determine seasonal variations in water uptake of summer maize under different fertilization treatments[J].Science of the Total Environment,2016,550:471-483.[22]NIE Y P,CHEN H S,WANG K L,et al.Water source utilization by woody plants growing on dolomite outcrops and nearby soils during dry seasons in karst region of Southwest China[J].Journal of Hydrology,2012,420(4):264-274.[23]HAO X M,CHEN Y N,GUO B,et al.Hydraulic redistribution of soil water in Populus euphratica Oliv.in a central Asian desert riparian forest[J].Ecohydrology,2013,6(6):974-983.[24]QIAN J,ZHENG H,WANG P,et al.Assessing the ecohydrological separation hypothesis and seasonal variations in water use by Ginkgo biloba L.in a subtropical riparian area[J].Journal of Hydrology,2017,553:486-500.[25]DAI Y,ZHENG X J,TANG L S,et al.Stable oxygen isotopes reveal distinct water use patterns of two Haloxylon species in the Gurbantonggut Desert[J].Plant and Soil,2015,389(1-2):73-87.[26]于静洁,李亚飞.稳定氢氧同位素定量植物水分来源的不确定性解析[J].生态学报,2018,38(22):7942-7949.[27]ZHANG C,ZHANG J,ZHAO B,et al.Coupling a two-tip linear mixing model with a δD-δ18O plot to determine water sources consumed by maize during different growth stages[J].Field Crops Research,2011,123(3):196-205.[28]ROMERO SALTOS H,STERNBERG L,MOREIRA M Z,et al.Rainfall exclusion in an eastern Amazonian forest alters soil water movement and depth of water uptake[J].American Journal of Botany,2005,92(3):443-455.[29]PARNELL A C,INGER R,BEARHOP S,et al.Source partitioning using stable isotopes:Coping with too much variation[J].PLoS One,2010,5(3):e9672.[30]张宇,张明军,王圣杰,等.基于稳定氧同位素确定植物水分来源不同方法的比较[J].生态学杂志,2020,39(4):292-304.[31]WANG J,LU N,FU B.Inter-comparison of stable isotope mixing models for determining plant water source partitioning[J].Science of the Total Environment,2019,666:685-693.[32]STOCK B C,SEMMENS B X.Unifying error structures in commonly used biotracer mixing models[J].Ecology,2016,97(10):2562-2569.[33]曾祥明,徐宪立,钟飞霞,等.MixSIAR和IsoSource模型解析植物水分来源的比较研究[J].生态学报,2020,40(16):164-172.[34]杜勤勤.基于氢氧稳定同位素的兰州市南北两山植物水分来源研究[D].兰州:西北师范大学,2020.[35]LI J,HEAP A D.A review of comparative studies of spatial interpolation methods in environmental sciences:Performance and impact factors[J].Ecological Informatics,2011,6(3/4):228-241.[36]CRAMER V A,THORBURN P J,FRASER G W.Transpiration and groundwater uptake from farm forest plots of Casuarina glauca and Eucalyptus camaldulensis in saline areas of southeast Queensland,Australia[J].Agricultural Water Management,1999,39(2):187-204.[37]韩磊,韩永贵,黄晓宇,等.氢氧稳定同位素示踪旱区植物水分来源与利用策略[J].安徽农业大学学报,2020,47(3):435-441.[38]DAWSON T E.Hydraulic lift and water use by plants:Implications for water balance,performance and plant-plant interactions[J].Oecologia,1993,95:565-574.[39]YOURI R,MATHIEU J.Reviews and syntheses:Isotopic approaches to quantify root water uptake:A review and comparison of methods[J].Biogeosciences,2017,14(8):2199-2224.[40]BARGUS TOBELLA A,HASSELQUIST N J,BAZI H R,et al.Strategies trees use to overcome seasonal water limitation in an agroforestry system in semiarid West Africa[J].Ecohydrology,2017,10(3):1808-1818.[41]WHITE J C,SMITH W K.Seasonal variation in water sources of the riparian tree species Acer negundo and Betula nigra,southern Appalachian foothills,USA[J].Botany,2015,93(8):519-528.[42]YANG B,WEN X,SUN X.Seasonal variations in depth of water uptake for a subtropical coniferous plantation subjected to drought in an East Asian monsoon region[J].Agricultural & Forest Meteorology,2015,201:218-228.[43]MUOZ-VILLERS L E,HOLWERDA F,ALVARADO-BARRIENTOS M S,et al.Reduced dry season transpiration is coupled with shallow soil water use in tropical montane forest trees[J].Oecologia,2018,188:1-15.[44]SCHWENDENMANN L,PENDALL E,SANCHEZ-BRAGADO R,et al.Tree water uptake in a tropical plantation varying in tree diversity:Interspecific differences,seasonal shifts and complementarity[J].Ecohydrology,2015,8(1):1-12.[45]刘龙,姚云峰,郭月峰,等.农牧交错带柠条锦鸡儿根系与土壤水分空间关系研究[J].中国农业科技导报,2017,19(7):101-107.[46]CHEN J,XU Q,GAO D,et al.Differential water use strategies among selected rare and endangered species in West Ordos Desert of China[J].Journal of Plant Ecology,2017,10(4):660-669.[47]钱龙娇.基于氢氧稳定同位素浑善达克沙地人工种植杨树吸水来源和耗水耦合研究[D].呼和浩特:内蒙古农业大学,2017.[48]曾巧,马剑英.黑河流域不同生境植物水分来源及环境指示意义[J].冰川冻土,2013,35(1):148-155.[49]ZHU Y,WANG G,LI R.Seasonal dynamics of water use strategy of two Salix shrubs in alpine sandy land,Tibetan Plateau[J].PLoS One,2016,11(5):e0156586.[50]聂云鹏,陈洪松,王克林.石灰岩地区连片出露石丛生境植物水分来源的季节性差异[J].植物生态学报,2011,35(10):1029-1037.[51]FIELD T S,DAWSON T E.Water sources used by Didymopanax pittieri at different life stages in a tropical cloud forest[J].Ecology,1998,79(4):1448-1452.[52]STERNBERG L S L,SWART P K.Utilization of freshwater and ocean water by coastal plants of southern florida[J].Ecology,1987,68(6):1898-1905.[53]BOWLING D R,SCHULZE E S,HALL S J.Revisiting streamside trees that do not use stream water:Can the two water worlds hypothesis and snowpack isotopic effects explain a missing water source?〖KG-*3〗[J].Ecohydrology,2017,10(1):e1771.[54]OERTER E J,SIEBERT G,BOWLING D R,et al.Soil water vapor isotopes identify missing water source for streamside trees[J].Ecohydrology,2019,12(4):e2083.[55]李亚飞,于静洁,陆凯,等.额济纳三角洲胡杨和多枝柽柳水分来源解析[J].植物生态学报,2017,41(5):519-528.[56]EHLERINGER J R,PHILLIIPS S L,SCHUSTER W S F,et al.Differential utilization of summer rains by desert plants[J].Oecologia,1991,88(3):430-434.[57]WU J,LIU W,CHEN C.How do plants share water sources in a rubber-tea agroforestry system during the pronounced dry season?〖KG-*3〗[J].Agriculture,Ecosystems & Environment,2017,236:69-77.[58]DODD M B,LAUENROTH W K,WELKER J M.Differential water resource use by herbaceous and woody plant life-forms in a shortgrass steppe community[J].Oecologia,1998,117(4):504-512.[59]刘树宝,陈亚宁,陈亚鹏.基于稳定同位素技术的黑河下游不同林龄胡杨的吸水深度研究[J].生态学报,2016,36(3):729-739.
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备注/Memo
第一作者简介:张琦(1999-),女,硕士研究生,研究方向为植物水分来源与利用。E-mail:3205138156@qq.com.责任作者:苏永红(1977-),女,博士,副研究员,现主要从事干旱区生态水文及碳循环等研究工作。E-mail:syh@lzb.ac.cn.基金项目:国家自然科学基金面上资助项目(42071138)。收稿日期:2021-08-31