Welcome Pratacultural Science,Today is 2025-5-3 Saturday!
Jie Yin, Zong-ming Sui, Li-ben Wei, Jian-guo Huang. Allelopathic effects of Alternanthera philoxeroides extract on Medicago sativa, Cichorium intybus, and Avena sativa[J]. Pratacultural Science, 2018, 12(1): 146-156. DOI: 10.11829/j.issn.1001-0629.2017-0212
Citation: Jie Yin, Zong-ming Sui, Li-ben Wei, Jian-guo Huang. Allelopathic effects of Alternanthera philoxeroides extract on Medicago sativa, Cichorium intybus, and Avena sativa[J]. Pratacultural Science, 2018, 12(1): 146-156. DOI: 10.11829/j.issn.1001-0629.2017-0212

Allelopathic effects of Alternanthera philoxeroides extract on Medicago sativa, Cichorium intybus, and Avena sativa

More Information
  • Received Date: April 24, 2017
  • Published Date: January 19, 2018
  • Alternanthera philoxeroides, a noxious weed whose removal is difficult, is widely distributed over land and water surface in more than 20 provinces (or municipalities) of China, and leads to devastating ecological disasters and considerable economical loss. Investigation of the allelopathic effects of this noxious weed on pasture grass would provide useful information on the elimination of A. philoxeroides and selection of pasture grass species for cultivation. Therefore, pure culture and greenhouse pot experiment were conducted to evaluate the allelopathic effects of extracts of both shoot regions (ESA) and roots (ERA) of A. philoxeroides on seed germination and growth of Medicago sativa, Cichorium intybus, and Avena sativa seedlings. The results showed that seed soak in ESA and ERA inhibited the hydrolysis of proteins, starch, and inositol phosphates in the endosperm, and reduced the levels of free amino acids, soluble sugars, and soluble inorganic phosphates in seeds; it even damaged the seed cell membrane. The results showed that seed germination rate, germination index, and seed vigor index were reduced by 95.66%, 96.15%, and 98.63%, respectively. Irrigation of pasture grass seedlings with A. philoxeroides extracts reduced root vigor, nitrate reductase activity, chlorophyll content, and uptake of nitrogen, phosphorus, and potassium, resulting in the inhibition of seedling growth. The highest rate of seedling biomass reduction ranged from 52.27% (ESA) to 63.74% (ERA). Furthermore, the allelopathic response index and allelopathic synthetic effect of A. philoxeroides on the three grasses, whose absolute values increased with increase in A. philoxeroides extract concentrations, were negative; the allelopathic inhibitory effect was stronger for Avena sativa than for Cichorium intybus and Medicago sativa, and the intensity of the allelopathic effect of ERA was higher than that of ESA. Therefore, the extracts exerted allelopathic effects on the three pasture grasses, with ERA showing a stronger effect than ESA. Seed germination and growth of A. sativa seedlings were more sensitive than those of C. intybus and M. sativa. The selection of insensitive M. sativa and C. intybus for pasture grass cultivation could reduce harm and economic loss.
  • [1]
    Longstreth D J,Bolanos J A,Smith J E.Salinity effects on photosynthesis and growth in Alternanthera philoxeroides Griseb.Plant Physiology,1984,75(4):1044-1047.
    [1]
    Wang G Q,Gao R R,Wang Y L,Chai R J.Structure foundation and ecological adaptability of Alternathera philoxeroides in heterogeneous habitats.Acta Prataculturae Sinica,2011,20(4):143-152.(in Chinese)
    [2]
    Chen L L,Yu Y,He J.Historical invasion and expansion process of Alternanthera philoxeroides and its potential spread in china.Biodiversity Science,2008,16(6):578-585.(in Chinese)
    [2]
    Garbari F,Pedulla M L. Alternanthera philoxeroides (Amaranthacease),a new species for the exotic flora of italy.Webbia,2001,56(1):139-143.
    [3]
    Weng B Q,Lin S,Wang Y X.Discussion on adaptability and invasion mechanisms of Alternanthera philoxeroides in China.Acta Ecologica Sinica,2006,26(7):2374-2377.(in Chinese)
    [3]
    王桂芹,高瑞如,王玉良,柴瑞娟.异质生境空心莲子草的结构基础与生态适应性.草业学报,2011,20(4):143-152.
    [4]
    陈立立,余岩,何金.喜旱莲子草在中国的入侵和扩散动态及其潜在分布区预测.生物多样性,2008,16(6):578-585.
    [4]
    Zhang Z Z,Shi Q X,Sun Z H,Lan M F.Allelopathy of the invasive plant Alternanthera philoxeroides to radish and lettuce.Acta Prataculturae Sinica,2013,22(1):288-293.(in Chinese)
    [5]
    翁伯琦,林嵩,王义祥.空心莲子草在我国的适应性及入侵机制.生态学报, 2006,26(7):2374-2377.
    [5]
    Lei B,Li J.Effect of Alternathera philoxeroides aqueous extract on mitosis of Vicia faba root tip cell.Journal of Southern Agriculture,2013,44(12):1972-1976.(in Chinese)
    [6]
    Yu L Q,Fujii Y,Zhou Y J,Zhang J P,Lu Y L,Xuan S N.Comparison of allelopathy potential between an exotic invasive weed Alternanthera philoxeroides and a local weed A. sessilis .Chinese Journal of Rice Science,2007,21(1):84-89.(in Chinese)
    [6]
    张志忠,石秋香,孙志浩,蓝茂锋.入侵植物空心莲子草对生菜和萝卜的化感效应.草业学报,2013,22(1):288-293.
    [7]
    Xiong Y,Qu R,Wang H B,Xiong K J,Jiang Z L.The study on allelopathy mechanism of aqueous extracts from the different organizations of Alternanthera philoxeroides Griseb on Vicia faba and Zea mays .Chinese Agricultural Science Bulletin,2011,27(18):158-163.(in Chinese)
    [7]
    雷波,李洁.空心莲子草水浸提液对蚕豆根尖细胞有丝分裂的影响.南方农业学报,2013,44(12):1972-1976.
    [8]
    Peng K Q,Hu D J.Study on the K + absorption of Alternanthera philoxeroides Griseb.Acta Phytophysiologica Sinica,1986,12(2):187-193(in Chinese)
    [8]
    余柳青,Yoshiharu Fujii,周勇军,张建萍,陆永良,玄松南.外来入侵杂草空心莲子草与本土杂草的化感作用潜力比较.中国水稻科学,2007,21(1):84-89.
    [9]
    熊勇,屈睿,王红斌,熊开金,姜传亮.空心莲子草不同部位水浸提液对蚕豆、玉米化感作用机制的研究.中国农学通报,2011,27(18):158-163.
    [9]
    Lin M Z,Qiu X F,Lin N W,Huang L P.Response of Alternathera philoxeroides to heavy metals and its sorption effectiveness for heavy metals.Pratacultura Science,2012,29(5):681-686.(in Chinese)
    [10]
    Li D,Xu L,Zhang Z,Wang Y P.The research progress on utilization and biological control of Alternanthera philoxeroides .Chinese Agricultural Science Bulletin,2013,29(1):71-75.(in Chinese)
    [10]
    Hu Y,Wang Y H,Wen G S,Shen L Q,Wu A P.The interactive effects of different sterilization levels and aqueous extracts from Alternanthera philoxeroides on the seed germination and seedling growth of Trifolium repens .Ecological Science,2015,528:230-237.
    [11]
    Zhou G F,Peng N J,Wang Y,Wan H Q,Peng Y L.Two kinds of chemical herbicides on control of Alternanthera philoxeroides effect.Pratacultural Science,2009,26(3):95-96.(in Chinese)
    [11]
    Dong B C,Alpert P,Guo W.Effects of fragmentation on the survival and growth of the invasive,clonal plant Alternanthera philoxeroides .Biological Invasions,2012,14(6):1101-1110.
    [12]
    彭克勤,胡笃敬.空心莲子草K + 吸收的动力学研究.植物生理学报,1986,12(2):187-193.
    [12]
    Saimilakezi·Taiwaikuli,Jin G L,An S Z,Cui G Y,Zhang Y J,Caidengba·Jinbao.Effects of rhizosphere soil of Achnatherum inebrians on forages seed germination.Pratacultural Science,2015,31(11):2105-2112.(in Chinese)
    [13]
    林茂兹,邱雪芬,林能文,黄丽萍.空心莲子草对污泥重金属的响应与吸附效应.草业科学,2012,29(5):681-686.
    [13]
    Zheng Y L,Ma H C,Robert S,Gao Z,Zheng Y.Influence of environmental factors on seed germination of Bombax malabaricum .Acta Ecologica Sinica,2013,33(2):0382-0388.(in Chinese)
    [14]
    Cao J K,Jiang W B,Zhao Y M.Experiment Guidance of Postharvest Physiology and Biochemistry of Fruits and Vegetables.Beijing:China Light Industry Press,2011:34-78.(in Chinese)
    [14]
    李丹,徐丽,张震,王育鹏.喜旱莲子草的利用及其生物防治研究进展.中国农学通报,2013,29(1):71-75.
    [15]
    Wang X K.Principles and Techniques of Plant Physiology and Biochemistry Experiment.Beijing:Higher Education Press,2005:199-207.(in Chinese)
    [15]
    周国峰,彭念军,王云,万海青,彭友林.2种化学除草剂对沟渠空心莲子草防除效果.草业科学,2009,26(3):95-96.
    [16]
    Yang J H,Wang C L,Dai H L.Soil Chemical Analysis and Environmental monitoring.Beijing:China Land Press,2008:55-66.(in Chinese)
    [16]
    赛米拉克孜·台外库力,靳瑰丽,安沙舟,崔国盈,张勇娟,才登巴·金保.醉马草根围土壤对牧草种子萌发的影响.草业科学,2015,31(11):2105-2112.
    [17]
    Liu C,Wu M,Chen X D,Ye X Q,He L.Allelopathic effects of aqueous extracts from Phragmites communis on the growth and photosynthesis of Solidago canadensis .Chinese Journal of Ecology,2014,3(3):624-630.(in Chinese)
    [17]
    郑艳玲,马焕成,Scheller Robert,高柱,郑元.环境因子对木棉种子萌发的影响.生态学报,2013,33(2):0382-0388.
    [18]
    Hu W J,Ma D W,Wang Y L,Zhang H,Li Q.Allelopathic potential of volatile oil from Chenopodium ambrosioides on root tip cells of Vicia faba .Acta Ecologica Sinica,2011,31(13):3684-3690.(in Chinese)
    [18]
    曹建康,姜微波,赵玉梅.果蔬采后生理生化实验指导.北京:中国轻工业出版社,2011:34-78.
    [19]
    王学奎.植物生理生化实验原理和技术.北京:高等教育出版社,2005:199-207.
    [19]
    Wang S G.Plant Physiology and Biochemistry.Beijing:China Forestry Publishing House,2013:102-156.(in Chinese)
    [20]
    Jiao Y J,Sang Y J,Yang L,Wang Y Q,Wu Y K,Du R W,Yuan L.Effects of fresh and composted Ageratina adenophora on physiology of three Solanaceae vegetables and yield and quality of pepper.Scientia Agricultura Sinica,2016,49(5):874-884.(in Chinese)
    [20]
    杨剑虹,王成林,代亨林.土壤农化分析与环境监测.北京:中国大地出版社,2008:55-56.
    [21]
    Williamson G B,Richardson D.Bioassays for allclopathy:Measuring treatment response with independent controls.Journal of Chemical Ecology,1988,14(1):181-188.
    [21]
    Peng K M.Agricultural Chemical General.Beijing:China Agriculture Press,2003:79-99.(in Chinese)
    [22]
    Wang Y Q,Jiao Y J,Chen D M,Yuan L,Huang Y,Wu Y K,Du R W.Effects of Eupatorium adenophorum extracts on seed germination and seedling growth of pasture species.Acta Prataculturae Sinica,2016,25(2):150-159.(in Chinese)
    [22]
    Macias F A,Molnillo J M V.Allelopathy anatural alternative for weed control.Pest Management Science,2007,63(4):327-348.
    [23]
    Babula P,Vanco J,Kohoutkova V,Dankova I,Havel L,Kizek R.Cell signals as markers of cytotoxicity of new complexes of naphthoquinones.Analysis of Biomedical Signals and Images,2010,6159(3):259-263.
    [23]
    Jiao Y J,Wang Y Q,Yuan L.Allelopathic effects of extracts from tuberous roots of Aconitum carmichaeli on three pasture grasses.Journal of Traditional Chinese Medicine,2015,40(21):4155-4199.(in Chinese)
    [24]
    刘成,吴明,陈晓德,叶小齐,贺丽.芦苇水提液对加拿大一枝黄花生长及光合作用的化感效应.生态学杂志,2014,33(3):624-630.
    [24]
    Gao P,Liu Y P,Pan W G,Jiang D H,Gan M Z,Qin X N,Liu S G.Toxicological study of alcohol extract of Eupatorium adenphorum Sprengel.Sichuan Journal of Zoology,2005,24(1):87-89.
    [25]
    胡琬君,马丹炜,王亚男,张红,李群.土荆芥挥发油对蚕豆根尖细胞的化感潜力.生态学报,2011,31(13):3684-3690.
    [25]
    Bai Z,Huang Y,Huang J G.Allelopathic effects of artemisinin on seed germination and seedling growth of vegetables.Acta Ecologica Sinica,2013,33(23):7576-7582.(in Chinese)
    [26]
    Li X,Zhang H H,Zhang X L,Xu N,Hu J W,Pang H S,Teng Z Y,Sun G Y.Photosynthetic gas exchange and chlorophyll fluorescence parameters in response to illumination intensity in leaves of Lespedeza davurica under different light environments.Pratacultural Science,2016,33(4):706-712.(in Chinese)
    [26]
    王三根.植物生理生化.北京:中国林业出版社,2013:102-156.
    [27]
    焦玉洁,桑宇杰,杨磊,王亚麒,吴叶宽,杜如万,袁玲.新鲜和腐熟紫茎泽兰对三种茄科蔬菜生理和辣椒产量品质的影响.中国农业科学,2016,49(5):874-884.
    [28]
    Xing S Z,Wang J F,Cai D.Effects of citrate and malate on the seed germination and memberane permeability of Pakchoi .Chinese Agricultural Science Bulletin,2007,123(9):312-316.
    [29]
    Politycka B.Peroxidase activity and lipid peroxidation in roots of cucumber seedlings influenced by deriatives of cinnamic and benzoic acids.Acta Physiology Plantarum,1996,18(4):365-370.
    [30]
    Wang Y C,Wang D X,Peng S B,He K.Effects of drought stress on physiological characteristics of woody saltbush.Scientia Silvae Sinica,2010,46(1):61-67.
    [31]
    彭克明.农业化学总论.北京:中国农业大学出版社,2003:79-99.
    [32]
    王亚麒,焦玉洁,陈丹梅,袁玲,黄玥,吴叶宽,杜如万.紫茎泽兰浸提液对牧草种子发芽和幼苗生长的影响.草业学报,2016,25(2):150-159.
    [33]
    焦玉洁,王亚麒,袁玲.乌头块根浸提液对3种牧草的化感效应.中国中药杂志,2015,40(21):4155-4199.
    [34]
    Wang Y Q,Chen D M,Yuan L.Allelopathic effects of the extracts from fibrous roots of Coptis chinensis on Compositae.Vigna Radiate and Brassica Rapa Pekinensis,2015,24(6):142-149.
    [35]
    Wu W,Zhao J.Progress of research on plant nitrogen absorption and utilization.Chinese Agricultural Bulletin,2010,26(13):75-78.
    [36]
    Kerley S J.The effect of soil liming on shoot development,root growth,and cluster root activity of white lupin.Biology and Fertility of Soil,2000,32(2):94-101.
    [37]
    高平,刘燕萍,潘为高,江德洪,甘明哲,秦晓娜,刘世贵.紫茎泽兰醇提物的毒理学研究.四川动物,2005,24(1):87-89.
    [38]
    白祯,黄玥,黄建国.青蒿素对蔬菜种子发芽和幼苗生长的化感效应.生态学报,2013,33(23):7576-7582.
    [39]
    李鑫,张会慧,张秀丽,许楠,胡举伟,逄好胜,滕志远,孙广玉.不同光环境下兴安胡枝子叶片光合和叶绿素荧光参数的光响应特点.草业科学,2016,33(4):706-712.

Catalog

    Article views (1024) PDF downloads (159) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return