|本期目录/Table of Contents|

[1]郭正兵,韩柏明,郭强.茉莉酸甲酯对高温胁迫、生物蚕食无花果幼苗的影响[J].江苏农业科学,2017,45(20):138-143.
 Guo Zhengbing,et al.Effects of methyl jasmonate on fig seedlings under high temperature and biological encroachment stress[J].Jiangsu Agricultural Sciences,2017,45(20):138-143.
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茉莉酸甲酯对高温胁迫、生物蚕食无花果幼苗的影响(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第45卷
期数:
2017年20期
页码:
138-143
栏目:
园艺与林学
出版日期:
2017-10-20

文章信息/Info

Title:
Effects of methyl jasmonate on fig seedlings under high temperature and biological encroachment stress
作者:
郭正兵1 韩柏明1 郭强2
1.江苏农林职业技术学院,江苏句容 212400; 2.江苏句容虎耳山无花果合作社,江苏句容 212400
Author(s):
Guo Zhengbinget al
关键词:
无花果抗逆茉莉酸甲酯超氧化物歧化酶过氧化物酶多酚氧化酶高温胁迫生物蚕食
Keywords:
-
分类号:
S663.301
DOI:
-
文献标志码:
A
摘要:
以波姬红无花果为试材,40 ℃高温胁迫经茉莉酸甲酯处理的无花果幼苗,分析与抗逆相关的超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)、茉莉酸合成路径中脂氧合酶(LOX)活性变化及丙二醛、脯氨酸、多酚含量,同时,采用黑绒金龟蚕食伤害经茉莉酸甲酯处理的无花果幼苗,分析与生物胁迫相关的多酚氧化酶(PPO)、苯丙氨酸解氨酶(PAL)活性变化及单宁、胰蛋白酶抑制素含量。结果表明,高温胁迫经50 μmol/L茉莉酸甲酯处理的无花果幼苗,其SOD、POD、CAT活性与未用茉莉酸甲酯处理(对照)相比有显著增加,脯氨酸、多酚含量提高,丙二醛含量降低;生物蚕食经50 μmol/L茉莉酸甲酯处理的幼苗叶片,其PPO、PAL活性增加,单宁、胰蛋白酶抑制素含量提高。经茉莉酸甲酯处理的无花果幼苗,高温胁迫、生物蚕食能通过增加SOD、POD、CAT活性抵御非生物逆境的胁迫,通过提高PPO、PAL活性增强对生物胁迫的抗性。
Abstract:
-

参考文献/References:

[1]张华英. 无花果的研究与产业化发展对策[J]. 资源开发与市场,2003,19(5):314-316.
[2]Schilmiller A L,Howe G A. Systemic signaling in the wound response[J]. Current Opinion in Plant Biology,2005,8(4):369-377.
[3]Balbi V,Devoto A. Jasmonate signalling network in Arabidopsis thaliana:crucial regulatory nodes and new physiological scenarios[J]. New Phytologist,2008,177(2):301-318.
[4]Wasternack C,Hause B. Jasmonates:biosynthesis,perception,signal transduction and action in plant stress response,growth and development. [J]. Annals of Botany,2013,111(6):1021-1058.
[5]Rowe M L,Staswick P E. Jasmonic acid-amino acid conjugation enzyme assays[J]. Methods in Molecular Biology,2013,1011:145-157.
[6]孔祥生,易现峰. 植物生理学实验技术[M]. 北京:中国农业出版社,2008:257-259.
[7]李合生. 植物生理生化实验原理和技术[M]. 北京:高等教育出版社,2000:258-260.
[8]卜彦花,周娜娜,王春悦,等. 福林酚试剂法和紫外分光光度法测定冬枣多酚含量的比较研究[J]. 中国农学通报,2012,28(1):212-217.
[9]冉晓刚,江海,陈文强. 秦巴山区橡子和橡子淀粉中单宁及矿质元素含量的测定[J]. 江苏农业科学,2011,39(6):543-546.
[10]宗娜,阎云花,王琛柱. 昆虫对植物蛋白酶抑制素的诱导及适应机制[J]. 昆虫学报,2003,46(4):533-539.
[11]邹志燕,王振中. 茉莉酸诱导水稻幼苗对稻瘟疫病抗性作用的研究[J]. 植物病理学报,2006,36(5):432-438.
[12]宫玉艳,段立清,王爱清. 茉莉酸诱导对枸杞叶片生化物质及酶活性的影响[J]. 植物保护,2010,36(2):61-65.
[13]郑炳松. 现代植物生理生化研究技术[M]. 北京:气象出版社,2006:41-42.
[14]陈昆松,徐昌杰,许文平,等. 猕猴桃和桃果实脂氧合酶活性测定方法的建立[J]. 果树学报,2003,20(6):436-438.
[15]Masood A,Iqbal N,Khan N A. Role of ethylene in alleviation of cadmium-induced photosynthetic capacity inhibition by sulphur in mustard[J]. Plant,Cell and Environment,2012,35(3):524-533.
[16]Khan M I,Iqbal N,Masood A,et al. Salicylic acid alleviates adverse effects of heat stress on photosynthesis through changes in proline production and ethylene formation[J]. Plant Signal Behavior,2013,8(11):263-274.
[17]Takahashi H,Kanayama Y,Zheng M S,et al. Antagonistic interactions between the SA and JA signaling pathways in Arabidopsis modulate expression of defense genes and gene-for-gene resistance to cucumber mosaic virus[J]. Plant and Cell Physiology,2004,45(6):803-809.
[18]Ballaré C L. Jasmonate-induced defenses:a tale of intelligence,collaborators and rascals[J]. Trends in Plant Science,2011,16(5):249-257.
[19]Wasternack C. Action of jasmonates in plant stress responses and development—applied aspects[J]. Biotechnology Advances,2014,32(1):31-39.
[20]Wasternack C,Hause B. Jasmonates and octadecanoids:signals in plant stress responses and development[J]. Progress in Nucleic Acid Research and Molecular Biology,2002,72:165-221.
[21]Reinbothe C,Springer A,Samol I,et al. Plant oxylipins:role of jasmonic acid during programmed cell death,defence and leaf senescence. Febs Journal,2009,276:4666-4681.
[22]Browse J. Jasmonate passes muster:a receptor and targets for the defense hormone[J]. Annual Review of Plant Biology,2009,60(1):183-205.
[23]Browse J,Howe G A. New weapons and a rapid response against insect attack[J]. Plant Physiology,2008,146(3):832-838.
[24]Pedranzani H,Racagni G,Alemano S,et al. Salt tolerant tomato plants show increased levels of jasmonic acid[J]. Plant Growth Regulation,2003,41(2):149-158.
[25]Kramell R,Miersch O,Atzorn R,et al. Octadecanoid-derived alteration of gene expression and the “oxylipin signature” in stressed barley leaves. Implications for different signaling pathways[J]. Plant Physiology,2000,123(1):177-188.
[26]Demkura P V,Abdala G,Baldwin I T,et al. Jasmonate-dependent and-independent pathways mediate specific effects of solar ultraviolet B radiation on leaf phenolics and antiherbivore defense[J]. Plant Physiology,2010,152(2):1084-1095.
[27]Panda S K,Chaudhury I,Khan M H. Heavy metal indunced lipid peroxidation and affects antioxidants in wheat leaves[J]. Biologia Plantarum,2003,46:289-294.
[28]Gill S S,Tuteja N. Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants[J]. Plant Physiology Biochemisty,2010,48:909-930.
[29]Kim O,Bang K,Shin Y,et al. Enhanced production of asiaticoside from hairy root cultures of Centellaasiatica (L.) urban elicited by methyl jasmonate[J]. Plant Cell Report,2007,26:1941-1949.
[30]Chanjirakul K,Wang S Y,Wang C Y,et al. Effect of natural volatile compounds on antioxidant capacity and antioxidant enzymes in raspberries[J]. Postharvest Biology Technology,2006,40:106-115.
[31]Beydler B D,Osadchuk K,Cheng C L,et al. The juvenile phase of maize sees upregulation of stress-response genes and is extended by exogenous JA[J]. Plant Physiology,2016,171(4):2648-2658.
[32]Ghasemnezhad M,Javaherdashti M. Effect of methyl jasmonate treatment on antioxidant capacity:internal quality and postharvest life of raspberry fruit[J]. Caspian Journal of Environment Science,2008,6:73-78.
[33]Halitschke R,Baldwin I T. Jasmonates and related compounds in plant insect interactions[J]. Journal of Plant Growth Regulation,2004,23:238-245.
[34]Thaler J S,Stout M J,Karban R,et al. Jasmonate-mediated induced plant resistance affects a community of herbivores[J]. Ecological Entomology,2001,26:312-324.
[35]Thaler J S,Fidantsef A L,Duffey S S,et al. Trade-offs in plant defense against pathogens and herbivores:a field demonstration of chemical elicitors of induced resistance[J]. Journal of Chemical Ecology,1999,25:1597-1609.
[36]Boughton A J,Hoover K,Felton G W. Impact of chemical elicitor applications on greenhouse tomato plants and population growth of the green peach aphid,Myzuspersicae[J]. Entomologia Experimentalis et Applicata,2006,120:175-188.
[37]Soriano I R,Asenstorfer R E,Schmidt O,et al. Inducible flavone in oats (Avena sativa) is a novel defense against plant-parasitic nematodes[J]. Phytopathology,2004,94:1207-1214.
[38]Rodriguez-Saona C,Crafts-Brandner S J,Pare P W,et al. Exogenous methyl jasmonate induces volatile emissions in cotton plants[J]. Journal of Chemical Ecology,2001,27:679-695.

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备注/Memo

备注/Memo:
收稿日期:2016-06-13
基金项目:江苏农林职业技术学院院级项目(编号:2015KJ030)。
作者简介:郭正兵(1976—),男,江苏高邮人,硕士,副教授,主要从事园艺作物栽培生理研究。E-mail:260626813@qq.com。
更新日期/Last Update: 2017-10-20