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不同光环境下金边百里香的形态和生理可塑性

李金平, 任瑞芬, 尹大芳, 郭芳, 杨秀云

李金平, 任瑞芬, 尹大芳, 郭芳, 杨秀云. 不同光环境下金边百里香的形态和生理可塑性[J]. 草业科学, 2017, 11(10): 2130-2140. DOI: 10.11829/j.issn.1001-0629.2017-0189
引用本文: 李金平, 任瑞芬, 尹大芳, 郭芳, 杨秀云. 不同光环境下金边百里香的形态和生理可塑性[J]. 草业科学, 2017, 11(10): 2130-2140. DOI: 10.11829/j.issn.1001-0629.2017-0189
Jin-ping Li, Rui-fen Ren, Da-fang Yin, Fang Guo, Xiu-yun Yang. Morphological and physiological plasticity of Thymus mongolicus under different light conditions[J]. Pratacultural Science, 2017, 11(10): 2130-2140. DOI: 10.11829/j.issn.1001-0629.2017-0189
Citation: Jin-ping Li, Rui-fen Ren, Da-fang Yin, Fang Guo, Xiu-yun Yang. Morphological and physiological plasticity of Thymus mongolicus under different light conditions[J]. Pratacultural Science, 2017, 11(10): 2130-2140. DOI: 10.11829/j.issn.1001-0629.2017-0189

不同光环境下金边百里香的形态和生理可塑性

基金项目: 

山西省农业科技攻关项目&#x02014

&#x02014

山西优势草种驯化培育及产业化开发&#x02014

&#x02014

山西乡土芳香地被植物选优及扩繁体系构建(20140311013-4)

山西省科技成果转化引导专项&#x02014

&#x02014

绢毛匍匐委陵菜新品种示范及推广(201604D131054)

摘要: 本研究采用1年龄金边百里香(Thymus mongolicus)幼苗为试验材料,以自然光照作为对照处理,设置25%、50%和75%遮光处理梯度,分别于处理0、7、14、24、44 d时测定其叶部、根部的生理和形态指标,以期为芳香地被植物的选育及推广提供基础理论依据。结果表明,1)在处理14 d时干物质分配发生了改变,通过增加叶重比、降低根重比来平衡不同光环境下植株体内的养分累积。2)50%的光照处理显著促进了叶部超氧化物歧化酶(SOD)的活性,增加了根部渗透调节物质可溶性蛋白的含量,抑制了植株内丙二醛(MDA)的积累,表现出较强的生理可塑性。3)金边百里香在50%的光环境较其它光环境处理下的形态和生理可塑性强,且不同光环境下叶部的生理可塑性较根部显著。

 

English

  • [1] 周潇,毛凯,干友民.我国地被植物耐荫性研究.北方园艺,2007(1):51-53.
    [1]

    Zhou X,Mao K,Gan Y M.Research of cover plant shadow resistance in China.Northern Horticulture,2007(1):51-53.(in Chinese)

    [2] 于盈盈,胡聃,郭二辉,肖强,柳敏,张小飞.城市遮阴环境变化对大叶黄杨光合过程的影响.生态学报.2011.31(19):5646-5653.
    [2]

    Yu Y Y,Hu D,Gu E H,Xiao Q,Liu M,Zhang X F.Effects of urban shading on photosynthesis of Euonymus japonicas .Acta Ecologica Sinica,2011,31(19):5646-5653.(in Chinese)

    [3] 何小燕,马锦林,张日清,叶航.弱光胁迫对植物生长影响的研究进展.经济林研究,2011,29(4):131-136.
    [3]

    He X Y,Ma J L,Zhang R Q,Ye H.Research progress on effects of low-light stress on plant growth.Nonwood Forest Research,2011,29(4):131-136.(in Chinese)

    [4]

    Tong K L.Comparative studies on shade tolerance and adaptability to garden-environment planting of 10 ground cover plants.Journal of Northwest Forestry University,2012,27(4):234-237.(in Chinese)

    [4] 童开林.10种地被植物的耐阴性与园林适应性比较.西北林学院学报,2012,27(4):234-237.
    [5]

    FernandoV,Jos#x000e9; Manuel C,Ismael A,Luis B,Pierre D,Esteban M,Erwin D.The greater seedling high-light tolerance of Quercus robur over Fagus sylvatica is linked to a greater physiological plasticity.Trees,2002,16:395-403.

    [5]

    Tian F P,Wu G L,Shi Y J,Yang Z Q.Review on the research progress of garden lawn plants in China.Pratacultural Science,2006,23(9):111-115.(in Chinese)

    [6]

    De Kroons H,Huber H,Stuefer J F,van Groenendael J M.A modular concept of phenotypic plasticity in plants.New Phytologist,2005,166:73-82.

    [6]

    Wang J Q,Zhu N,Ding S C.Research status on ground cover plants.Journal of Anhui Agricultural.Science,2012,40(1):1-3,12.(in Chinese)

    [7]

    Riis T,Lambertini C,Olesen B,Clayton J S,Brix H,Sorrell B K.Invasion strategies in clonal aquatic plants:Are phenotypic differences caused by phenotypic plasticity or local adaptation.Annals of Botany,2010,106:813-822.

    [7]

    Mu D,Liang Y H.Introduction and landscape application of Thyme in Jiamusi region.Anhui Agricultural.Science Bulletin,2013,19(16):31-32.(in Chinese)

    [8]

    Bian J S,Du G M,Zhao B.Research advances on Thymus .Grassland and Turf,2007(1):78-81.(in Chinese)

    [8] 田福平,武高林,时永杰,杨志强.我国园林地被植物研究现状.草业科学,2006,23(9):111-115.
    [9] 王杰青,祝宁,丁守仓.地被植物研究现状.安徽农业科学,2012,40(1):1-3,12.
    [9]

    Quan J P,Lyu G H,He S L,Peng F,Nie C S,Xia B.Investigation and analysis of Thymus wild resources in China.Northern Horticulture,2012(2):87-91.(in Chinese)

    [10]

    Zhang Y,Jiang Z B,Yang C.Clonal growth characterstics of Thymus serpyllum var. asiaticus .Journal of Plant Ecology,2007,31(4):630-636.(in Chinese)

    [10] 穆丹,梁英辉.佳木斯地区百里香的引种栽培及园林应用研究.安徽农学通报,2013,19(16):31-32.
    [11]

    Xu S Q,Li X D,Zhang J G.Comparative analysis of essential oil quality and composition from tissue culture seedlings of Thymus vulgaris L. using different extraction methods.Plant Science Journal,2013,31(6):609-615.

    [11]

    Stahl Biskup,Elisabeth,Francisco S#x000e1;ez.Thyme:The genus Thymus .London:Taylor Francis,2002:15-20.

    [12]

    Pei H R,Han X,Cao X L.Analysis of the components of Thymus essential oil and its antioxidant and antibacterial activity.Journal of Chinese Institute of Food Science and Technology,2011,11(5):182-188.(in Chinese)

    [12]

    De Lisi A,Tedone L,Montesano V,Sarli G,Negro D.Chemical characterisation of Thymus population belonging from Southern Italy.Food Chemistry,2011,125:1284-1286.

    [13] 卞金山,杜广明,赵波.我国百里香属植物研究进展.草原与草坪,2007(1):78-81.
    [13]

    Luo C X,Tian Y Q,Pan Y B.Research progress of Thymus .Journal of Anhui Agricultural Science,2014,42(33):111669-11672.(in Chinese)

    [14]

    Yang H,Zeng F J,Guo T,Lu S S,Sun J,Zhao H E.Research advance of Thymus .Chinese Wild Plant Resources,2012,11(2):4-7.(in Chinese)

    [14] 权俊萍,吕国华,何树兰,彭峰,聂传胜,夏冰.我国百里香属植物资源调查分析.北方园艺,2012(2):87-91.
    [15] 张颖,贾志斌,杨持.百里香无性系的克隆生长特征.植物生态学报,2007,31(4):630-636.
    [15]

    Li H S,Sun Q.Principle and Technology of Plant Physiological and Biochemical Experiments.Beijing:Higher Education Press,2000,164-169.(in Chinese)

    [16] 徐世千,李晓东,张建国.不同方法提取组培百里香精油质量及成分的比较分析.植物科学学报,2013,31(6):609-615.
    [16]

    Liu J F,Yang W J,Jiang Z P,Guo Q S,Jin J Q,Xue L.Effects of shading on photosynthetic characteristics and chlorophyll fluorescence parameters in leaves of the endangered plant Thuja sutchuenensis .Acta Ecologica Sinica,2011,31(20):5999-6004.(in Chinese)

    [17]

    Wang Y,Liu N,Ren H,Shao L,Chen X W,Chen G,Wang J.Physiological characteristics of Begonia fimbristipula Hance to light intensity.Ecology and Environmental Sciences,2015,24(6):957-964.(in Chinese)

    [17] 裴海闰,韩笑,曹学丽.百里香精油的成分分析及其抗氧化和抑菌活性评价.中国食品学报,2011,11(5):182-188.
    [18]

    Zhao L J,Zhu L Q,Xian W D,Liu S Z,Ouyang N,Jiang X,Li R S.Eco-physiological responses of Syzygium hancei seedlings to different irradiance intensities.Ecological Science,2014,33(6):1177-1181.(in Chinese)

    [18] 罗彩霞,田永强,潘彦彪.百里香研究进展.安徽农业科学,2014,42(33):111669-11672.
    [19]

    Chen X,Xu Y F,Zhang Z Y.Leaf anatomical and phyotosynthetic physiology responses of Sorbus folgneri seedlings under drought stress.Acta Botanica Boreali-Occidentalia Sinica,2012,32(1):111-116.(in Chinese)

    [19] 杨恒,曾凡景,郭甜,卢珊珊,孙健,赵惠恩.百里香研究进展.中国野生植物资源,2012,11(2):4-7.
    [20]

    Seamus K,Kevin B,Conor O,#x000c1;ine N D.The impact of shade on morphology,growth and biomass allocation in Picea sitchensis , Larix #x000D7;eurolepis and Thuja plicata .New Forests,2007,33:139-153.

    [20]

    Li J P,Zhao H X,Dong R,Feng M.The effect of different light intensity on the growth and photosynthesis characteristics of two kinds of colorful Hosta .Journal of Nanjing Forestry University(Natural Science Edition),2012,36(4):57-61.(in Chinese)

    [21] 李合生,孙群.植物生理生化实验原理和技术.北京:高等教育出版社:2000:164-169.
    [21]

    Ji Y,Zhang X Q,Peng Y,Liang X Y,Huang L K,Chen L Z,Li Z,Ma Y M.Effect of drought stress on the root growth and photosynthetic characters of Dactylis glomerata seedlings.Chinese Journal of Applied Ecology,2013,24(10):2763-2769.(in Chinese)

    [22]

    Li Z Z,Liu D H,Zhao S W,Jiang C D,Shi L.Mechanisms of photoinhibition induced by high light in Hosta grown outdoors.Chinese Journal of Plant Ecology,2014,38(10):720-728.(in Chinese)

    [22] 刘建锋,杨文娟,江泽平,郭泉水,金江群,薛亮.遮荫对濒危植物崖柏光合作用和叶绿素荧光参数的影响.生态学报,2011,31(20):5999-6004.
    [23]

    Wang B Y,Ma H J,Su T W,Liu T,Wang Q.Physiological response and acclimation to changes in light regimes in two tropical rainforest species.Plant Physiology Journal,2012,48(6):232-240.(in Chinese)

    [23]

    Valladares F,Gianoli E,G#x000f3;mez J M.Ecological limits to plant phenotypic plasticity.New Phytologist,2007,176(12):749-763.

    [24]

    Pei B,Zhang G C,Zhang S Y,Wu Q,Xu Z Q,Xu P.Effects of soil drought stress on photosynthetic characteristics and antioxidant enzyme activities in Hippophae rhamnoides Linn. seedings.Acta Ecologica Sinica,2013,33(5):1386-1396.(in Chinese)

    [24] 汪越,刘楠,任海,邵玲,陈雄伟,陈刚,王俊.紫背天葵( Begonia fimbristipula Hance)叶片形态和生理生态特征对不同光强的响应.生态环境学报,2015,24(6):957-964.
    [25]

    Tang G L,Li X Y,Lin L S,Li L,Lu J R.Change of different shading on moisture conditions and the physiological response in Alhagi sparsifolia .Chinese Journal of Plant Ecology,2013,37(4):354-364.(in Chinese)

    [25] 招礼军,朱栗琼,谢伟东,刘思祝,欧阳妮,蒋欣,李仁山.红鳞蒲桃幼苗对不同光强的生理生态响应.生态科学,2014,33(6):1177-1181.
    [26] 陈昕,徐宜凤,张振英.干旱胁迫下石灰花楸幼苗叶片的解剖结构和光合生理响应.西北植物学报,2012,32(1):111-116.
    [26]

    Wang S,Zhou Q,Zhu Z L.Physiological and biochenical characteristics of Carpinus betulus seedling under drought stress.Acta Botanica Boreali-Occidentalia Sinica.,2013,33(12):2459-2466.(in Chinese)

    [27] 李金鹏,赵和祥,董然,冯敏.光照强度对两种彩叶玉簪生长及光合特性的影响.南京林业大学学报(自然科学版),2012,36(4):57-61.
    [27]

    Jin S J.Shading,high temperature stress on six herbs#x02019; growth and plant physiology.Master Thesis.Chongqing:Southwest University,2010.(in Chinese)

    [28]

    Wei J,Wu C Y,Wang H L,Jiang Y,Liu X M.Effect of different light intensity on physiological characteristics in leaves of Ziziphus jujuba cv.Huizao.Journal of Henan Agricultural Sciences,2014,43(12):112-116.(in Chinese)

    [28]

    Sims D,Pearcy R.Scaling sun and shade photosynthetic acclimation of Alocasia macrorrhiza to whole plant performance I.Carbon balance and allocation at different daily photon flux densities.Plant,Cell #x00026; Environment,1994,17(6):881-887.

    [29]

    Poorter H,Nagel O.The role of biomass allocation in the growth response of plants to different levels of light,CO 2 ,nutrients and water:A quantitative review.Functional Plant Biology,2000,27(6):1191-1197.

    [29]

    Sun J L,Li L L,Tao S T,Zhang S L.Effects of drought stress and rewatering on physiological characteristics of pear seedling.China Journal of Applied Environmental Biology,2012,18(2):218-223.(in Chinese)

    [30]

    Reich P,Tjoelker M,Walters M,Vanderklein D,Buschena C.Close association of RGR,leaf and root morphology,seed mass and shade tolerance in seedlings of nine boreal tree species grown in high and low light.Functional Ecology,1998,38(12):327-338.

    [31]

    Evans J,Poorter H.Photosynthetic acclimation of plants to growth irradiance:The relative importance of specific leaf area and nitrogen partitioning in maximizing carbon gain.Plant,Cell #x00026; Environment,2001,24:755-767.

    [32]

    Gommers C M,Visser E J,Onge K R S,Voesenek L A,Pierik R,Shade tolerance:When growing tall is not an option.Trends Plant Science,2013,18(8):65-71.

    [33] 季杨,张新全,彭燕,梁小玉,黄琳凯,陈灵鸷,李州,马迎梅.干旱胁迫对鸭茅幼苗根系生长及光合特性的影响.应用生态学报,2013,24(10):2763-2769.
    [34] 李志真,刘东焕,赵世伟,姜闯道,石雷.环境强光诱导玉簪叶片光抑制的机制.植物生态学报,2014,38(10):720-728.
    [35] 裴斌,张光灿,张淑勇,吴芹,徐志强,徐萍.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.生态学报,2013,33(5):1386-1396.
    [35] 王博轶,马洪军,苏腾伟,刘涛,王齐.两种热带雨林树苗对环境光强变化的生理响应和适应机制.植物生理学报,2012,48(6):232-240.
    [36]

    Maruta T,Tanouchi A,Tamoi M,Yabuta Y,Yoshimura K,Ishikawa T,Shigeoka S. Arabidopsis chloroplastic ascorbate peroxidase isoenzymes play a dual role in photoprotection and gene regulation under photooxidative stress.Plant and Cell Physiology,2010,51(2):190-200.

    [37] 唐钢梁,李向义,林丽莎,李磊,鲁建荣.骆驼刺在不同遮阴下的水分状况变化及其生理响应.植物生态学报,2013,37(4):354-364.
    [38]

    Wang Z L,Huang B R.Physiological recovery of Kentucky bluegrass from simultaneous drought and heat stress.Crop Science,2004,44:1729-1736.

    [39] 王飒,周琦,祝遵凌.干旱胁迫对欧洲鹅耳枥幼苗生理生化特征的影响.西北植物学报,2013,33(12):2459-2466.
    [40] 靳素娟.遮荫和高温胁迫对几种香草植物生理与生长发育的影响.重庆:西南大学硕士学位论文,2010.
    [41] 位杰,吴翠云,王合理,蒋媛,刘小梅.不同光照强度对灰枣叶片生理特性的影响.河南农业科学,2014,43(12):112-116.
    [42] 孙继亮,李六林,陶书田,张绍铃.干旱胁迫和复水对梨幼树生理特性的影响.应用与环境生物学报,2012,18(2):218-223.
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  • 收稿日期:  2017-04-13
  • 修回日期:  2017-06-21
  • 发布日期:  2017-10-19

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