|本期目录/Table of Contents|

[1]李海玲,苗红梅,张海洋,等.芝麻枯萎病菌毒素主成分结构与特性分析[J].江苏农业科学,2017,45(08):82-86.
 Li Hailing,et al.Structure and characteristics analysis of main toxin components of Fusarium oxysporum f. sp. Sesami[J].Jiangsu Agricultural Sciences,2017,45(08):82-86.
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芝麻枯萎病菌毒素主成分结构与特性分析(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08期
页码:
82-86
栏目:
植物保护
出版日期:
2017-04-22

文章信息/Info

Title:
Structure and characteristics analysis of main toxin components of Fusarium oxysporum f. sp. Sesami
作者:
李海玲1 苗红梅2 张海洋2 魏其超1 段迎辉2 汪学德1
1.河南工业大学粮油食品学院,河南郑州 450001; 2.河南省农业科学院芝麻研究中心,河南郑州 450002
Author(s):
Li Hailinget al
关键词:
芝麻尖孢镰刀菌芝麻专化型镰刀菌酸910-脱氢镰刀菌酸分离
Keywords:
-
分类号:
S435.653
DOI:
-
文献标志码:
A
摘要:
芝麻枯萎病是芝麻主要病害之一,由尖孢镰刀菌芝麻专化型侵染引起。为探明芝麻枯萎病菌产毒类型,试验采用高效乙酸乙酯萃取法,对尖孢镰刀菌株HSFO07021菌液进行了粗毒素提取;采用中压制备色谱仪,首次成功分离了尖孢镰刀菌芝麻专化型3种主要毒素。结构鉴定显示,尖孢镰刀菌芝麻专化型的3种毒素分别为镰刀菌酸、9,10-脱氢镰刀菌酸和10-羟基镰刀菌酸。种子处理结果表明,尖孢镰刀菌芝麻专化型产生的镰刀菌酸和9,10-脱氢镰刀菌酸均能抑制芝麻幼苗的茎叶生长和根部伸长,对幼苗产生毒害;镰刀菌酸的毒性强于9,10-脱氢镰刀菌酸。
Abstract:
-

参考文献/References:

[1]Zhang H Y,Miao H M,Wang L,et al. Genome sequencing of the important oilseed crop Sesamum indicum L.[J]. Genome Biology,2013,14(1):401.
[2]Ashri A. Sesame breeding:plant breeding reviews[M]. Oxford:Oxford Press,1998:79-228.
[3]Li C,Miao H M,Wei L B,et al. Association mapping of seed oil and protein content in Sesamum indicum L. using SSR markers[J]. PLoS One,2014,9(8):e105757.
[4]李桂华,王瑞雪,王婷婷. 河南省黑芝麻及其油脂组成成分分析研究[J]. 河南工业大学学报(自然科学版),2008,29(5):10-13.
[5]仇存璞,张海洋,常淑娴,等. 芝麻枯萎病病原菌致病力室内鉴定方法[J]. 植物病理学报,2014,44(1):26-35.
[6]苏银玲,苗红梅,魏利斌,等. 芝麻枯萎病病原菌分离和纯化方法研究[J]. 河南农业科学,2012,41(1):92-94.
[7]袁红旭,商鸿生. 棉花枯萎病菌接种及粗毒素处理后棉苗维管束病理特征[J]. 植物病理学报,2002,32(1):16-20.
[8]于莉,黎永坚,李赤,等. 香蕉枯萎病菌毒素的成分分析及其生物测定[C]//中国植物病理学会2008年学术年会论文集. 北京:中国农业科学技术出版社,2008:228-234.
[9]Wu H S,Yin X M,Zhu Y Y,et al. Nitrogen metabolism disorder in watermelon leaf caused by fusaric acid[J]. Physiological and Molecular Plant Pathology,2007,71(1/2/3):69-77.
[10]Smith T K,Sousadias M G. Fusaric acid content of swine feedstuffs[J]. Journal of Agricultural and Food Chemistry,1993,41(12):2296-2298.
[11]朱强宾,张海洋,段迎辉,等. 芝麻枯萎病菌毒素成分分析及其对芝麻幼苗的毒性[J]. 植物保护,2016,42(4):27-33,42.
[12]台莲梅,许艳丽,高凤昌. 尖孢镰刀菌毒素的初步研究[J]. 黑龙江八一农垦大学学报,2004,16(4):9-12.
[13]王纯利,王冬梅,黄炜,等. 西瓜枯萎病菌致病力与镰刀菌酸和β-1,4糖苷酶活性的关系研究[J]. 新疆农业大学学报,2000,23(1):1-6.
[14]Bani M,Rispail N,Evidente A,et al. Identification of the main toxins isolated from Fusarium oxysporum f. sp. pisi race 2 and their relation with isolatespathogenicity[J]. Journal of Agricultural and Food Chemistry,2014,62(12):2574-2580.
[15]徐敬友,张华东,张红,等. 立枯丝核菌菌毒素的产生及致病力的关系[J]. 扬州大学学报,2004,25(2):61-64.
[16]Vidhyasekaran P,Ponmalar T R,Samiyappan R,et al. Host-specific toxin production by Rhizoctonia solani,the rice sheath blight pathogen[J]. Phytopathology,1997,87(12):1258-1263.
[17]Lffler H,Mouris J R. Fusaric acid:phytotoxicity and in vitro production by Fusarium oxysporum f.sp. lilii,the causal agent of basal rot in lilies[J]. Netherlands Journal of Plant Pathology,1992,98(2):107-115.
[18]Amalfitano C,Pengue R,Andolfi A,et al. HPLC analysis of fusaric acid,9,10-dehydrofusaric acid and their methyl esters,toxic metabolites from weed pathogenic Fusarium species[J]. Phytochemical Analysis,2003,13(5):277-282.
[19]Capasso R,Evidente A,Cutignano A,et al. Fusaric and 9,10-dehydrofusaric acids and their methyl esters from Fusarium nygamai[J]. Phytochemistry,1996,41(4):1035-1039.
[20]Stipanovic R D,Puckhaber L S,Liu J,et al. Phytotoxicity of fusaric acid and analogs to cotton[J]. Toxicon,2011,57(1):176-178.

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备注/Memo

备注/Memo:
收稿日期:2016-12-07
基金项目:国家公益行业(农业)专项(编号:201303072-2);国家现代农业(芝麻)产业技术体系(编号:CARS15-1-10、CARS15-1-06、CARS15-1-2);国家自然科学基金(编号:U1304321、31471537、31301653);河南省科技创新杰出人才基金(编号:164100510001);河南省重大科技专项(编号:151100111200)。
作者简介:李海玲(1989—),女,河南商丘人,硕士研究生,研究方向为油脂与植物蛋白工程。E-mail:lym98065@qq.com。
通信作者:苗红梅,博士,研究员,硕士生导师,研究方向为芝麻遗传育种与病害基础研究,Tel:(0371)-65720774,E-mail:miaohongmeichina@yahoo.com;汪学德,博士,教授,硕士生导师,研究方向为粮油与植物蛋白工程研究,E-mail:wangxuede1962@126.com。
更新日期/Last Update: 2017-04-20