尖孢镰刀菌古巴专化型中SIX2和SIX6基因敲除突变体的生物学特性
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Biological Characteristics of SIX2 and SIX6 Gene Knock-out Mutants of Fusarium oxysporum f. sp. cubense
  • 作者:杨腊英 ; 陈平亚 ; 郭立佳 ; 梁昌聪 ; 汪军 ; 刘磊 ; 周游 ; 黄俊生
  • 英文作者:YANG Laying;CHEN Pingya;GUO Lijia;LIANG Changcong;WANG Jun;LIU Lei;ZHOU You;HUANG Junsheng;Environment and Plant Protection Institute, Chinese Academy of Tropical Agricultural Sciences/Key Laboratory of Pests Comprehensive Governance for Tropical Crops, Ministry of Agriculture;Technical Center of Hainan Entry-exit Inspection and Quarantine Bureau;
  • 关键词:香蕉枯萎病菌 ; 基因敲除 ; 生物学特性 ; SIX(secreted ; in ; xylem)蛋白编码基因 ; SIX2 ; SIX6
  • 英文关键词:Fusarium oxysporum f. sp. cubense;;gene knock-out;;biological characteristics;;SIX(Secreted in xylem) protein encoding gene;;SIX2;;SIX6
  • 中文刊名:RDZX
  • 英文刊名:Chinese Journal of Tropical Crops
  • 机构:中国热带农业科学院环境与植物保护研究所农业部热带作物有害生物综合治理重点实验室;海南出入境检验检疫局检验检疫技术中心;
  • 出版日期:2018-04-25
  • 出版单位:热带作物学报
  • 年:2018
  • 期:v.39
  • 基金:国家自然科学基金项目(No.31301629、No.31371900);; 2017年海南省自然科学基金创新团队项目(No.2017CXTD016)
  • 语种:中文;
  • 页:RDZX201804021
  • 页数:9
  • CN:04
  • ISSN:46-1019/S
  • 分类号:127-135
摘要
尖孢镰刀菌古巴专化型(Fusarium oxysporum f. sp. cubense,Foc)依据对寄主易感性分为4个不同的生理小种,其中4号生理小种(Foc4)几乎能危害目前所有栽培品种。为研究其SIX(secreted in xylem)蛋白编码基因SIX2和SIX6在Foc4对寄主差异性选择中的作用,利用PEG介导的原生质体转化法将基于pCT74质粒框架构建的SIX2、SIX6基因敲除质粒分别转入Foc4 B2菌株,分别得到了SIX2和SIX6基因敲除突变体,然后分析敲除突变体与野生型的生物学特性差异。生物学研究结果表明:SIX2、SIX6基因的缺失突变体均呈现菌丝稀疏、生长速率减慢、产孢率降低、菌丝异核率增加,对渗透压、外源氧等外源胁迫更为敏感等特征。致病力分析实验发现ΔFoSIX2和ΔFoSIX6突变体的孢子在香蕉苗的幼嫩根部附着量减少,孢子根部定殖能力降低;ΔFoSIX2菌株基本上丧失了对巴西蕉的致病力,而对粉蕉仍有较强的致病能力;ΔFoSIX6菌株则对粉蕉苗、巴西香蕉苗盆栽致病力均呈极显著下降。依据生物学与致病力测定结果,推测Foc4中SIX6基因决定Foc4对寄主的致病力,而SIX2基因则决定Foc4对寄主的差异性选择能力。
        There are four recognized races of Fusarium oxysporum f. sp. cubense which are separated based on host susceptibility. Race 4 is capable of attacking ‘Cavendish'(AAA) as well as the other varieties of banana affected by races 1 and 2. In order to study the roles of SIX2 and SIX6 genes encoding SIX(Secreted in xylem) protein in host xylem of Foc4 on host diversity selection, SIX2 and SIX6 gene knockout plasmids constructed from pCT74 plasmid framework were transferred into Foc4 B2 strain by PEG-mediated protoplast transformation respectively,SIX2 and SIX6 gene knockout mutants were obtained respectively, then the biological characteristics between knock-out strains and wild-type strains were analyzed. The results of biological studies showed that, compared with wild-type strain, SIX2 and SIX6 gene knock-out mutants had sparse hyphae, slow growth rate, less spores production, increased rate of mycelial heteronuclear, more sensitive to osmotic stress and other exogenous stress.Pathogenicity analysis found that compared with wild-type strain, the spores in both ΔFoSIX2 and ΔFoSIX6 knockout mutants decreased the adhesion ability to the young roots of banana seedlings and had reduced colonization ability in the roots. ΔFoSIX2 knock-out mutants basically lost the pathogenicity to Musa acuminata AAA Cavendish cv. Bax, while still had a strong pathogenic ability to Musa sp ABB Pisang Awak. The pathogenicity of ΔFoSIX6 knock-out mutants were significantly decreased to M. acuminata AAA Cavendish cv. Bax and Musa sp ABB Pisang Awak. Based on the results of biology and pathogenicity, it was speculated that the SIX6 gene determined the pathogenicity of Foc4 to host, while SIX2 gene determined the ability of Foc4 to select wider hosts.
引文
[1]Ploetz R C.Fusarium wilt of banana is caused by several pathogens referred to as Fusarium oxysporum f.sp.cubense[J].Phytopathology,2006,96(6):653-656.
    [2]Rep M,van der Does H C,Meijer M,et al.A small,cysteinerich protein secreted by Fusarium oxysporum during colonization of xylem vessels is required for I-3-mediated resistance in tomato[J].Molecular Microbiology,2004,53(5):1 373-1 383.
    [3]Rep M,Meijer M,Houterman P M,et al.Fusarium oxysporum evades I-3-mediated resistance without altering the matching avirulence gene[J].Molecular Plant-Microbe Interactions,2005,18(1):15-23.
    [4]Houterman P M,Cornelissen B J,Rep M.Suppression of plant resistance gene-based immunity by a fungal effector[J].PLo S Pathog,2008,4(5):e1000061.
    [5]Houterman P M,Ma L,van Ooijen G,et al.The effector protein Avr2 of the xylem-colonizing fungus Fusarium oxysporum activates the tomato resistance protein I-2 intracellularly[J].The Plant Journal,2009,58(6):970-978.
    [6]Ma L,Houterman P M,Gawehns F,et al.The AVR2-SIX5 gene pair is required to activate I-2-mediated immunity in tomato[J].New Phytologist,2015,208(2):507-518.
    [7]Houterman P M,Speijer D,Dekker H L,et al.The mixed xylem sap proteome of Fusarium oxysporum-infected tomato plants[J].Molecular Plant Pathology,2007,8(2):215-221.
    [8]van Der Does H C,Rep M.Virulence genes and the evolution of host specificity in plant-pathogenic fungi[J].Molecular PlantMicrobe Interactions,2007,20(10):1 175–1 182.
    [9]Lievens B,Houterman P M,Rep M.Effector gene screening allows unambiguous identification of Fusarium oxysporum f.sp.lycopersici races and discrimination from other formae speciales[J].FEMS Microbiology Letters,2009,300(2):201-215.
    [10]Ma L J,van der Does H C,Borkovich K A,et al.Comparative genomics reveals mobile pathogenicity chromosomes in Fusarium[J].Nature,2010,464(7 287):367-373.
    [11]Rep M,Kistler H C.The genomic organization of plant pathogenicity in Fusarium species[J].Current Opinion in Plant Biology,2010,13(4):420-426.
    [12]Takken F,Rep M.The arms race between tomato and Fusarium oxysporum[J].Molecular Plant Pathology,2010,11(2):309-314.
    [13]Schmidt S M,Houterman P M,Schreiver I,et al.MITEs in the promoters of effector genes allow prediction of novel virulence genes in Fusarium oxysporum[J].BMC Genomics,2013,14:119.
    [14]Inami K,Yoshioka-Akiyama C,Morita Y,et al.A genetic mechanism for emergence of races in Fusarium oxysporum f.sp.lycopersici:inactivation of avirulence gene AVR1 by transposon insertion[J].PLo S ONE,2012,7(8):e44101.
    [15]Kashiwa T,Suzuki T,Sato A,et al.A new biotype of Fusarium oxysporumf.sp.lycopersici race 2 emerged by a transposon-driven mutation of avirulence gene AVR1[J].FEMS Microbiology Letters,2016,363(14):fnw132.
    [16]Kashiwa T,Inami K,Fujinaga M,et al.An avirulence gene homologue in the tomato wilt fungus Fusarium oxysporum f.sp.lycopersici race 1 functions as a virulence gene in the cabbage yellows fungus F.oxysporum f.sp.conglutinans[J].Journal of General Plant Pathology,2013,79(6):412-421.
    [17]Thatcher L F,Gardiner D M,Kazan K,et al.A highly conserved effector in Fusarium oxysporum is required for full virulence on Arabidopsis[J].Molecular Plant-Microbe Interactions,2012,25(2):180-190.
    [18]Niu X,Zhao X,Ling K S,et al.The Fon SIX6 gene acts as an avirulence effector in the Fusarium oxysporum f.sp.niveum-watermelon pathosystem[J].Scientific Reports,2016,6:28 146.
    [19]Meldrum R A,Fraser-Smith S,Tran-Nguyen L T T,et al.Presence of putative pathogenicity genes in isolates of Fusarium oxysporum f.sp.cubense from Australia[J].Australasian Plant Pathology,2012,41(5):551-557.
    [20]郭立佳,杨腊英,彭军,等.香蕉枯萎病病原菌Six同源基因的鉴定[J].热带作物学报,2013,34(12):2 391-2 396.
    [21]杨腊英,郭立佳,刘磊,等.几种尖孢镰刀菌专化型中SIX1、SIX4、SIX6、SIX8同源基因分析[J].基因组学与应用生物学,2015,34(8):1 739-1 746.
    [22]杨腊英,郭立佳,汪军,等.香蕉枯萎病菌SIX2基因序列及特异性分析[J].植物保护,2016,42(5):118-124.
    [23]杨腊英,郭立佳,刘磊,等.尖孢镰刀菌古巴专化型SIX7基因分析[J].中国农学通报,2016,32(3):100-107.
    [24]罗志兵,金凯,张永军,等.球孢白僵菌高渗适应性相关基因Bbmpd的克隆与表达分析[J].微生物学报,2010,50(6):724-728.
    [25]Yang R,Liu X,Zhao X,et al.Enhanced mycelial biomass production of the hairy bracket mushroom,Trametes hirsuta(Higher Basidiomycetes),by optimizing medium component with PlackettBurman design and response surface methodology[J].International Journal of Medicinal Mushrooms,2013,15(6):595-605.
    [26]方中达.植病研究方法[M].第3版.北京:中国农业出版社,2007:46.
    [27]毛超,陈平亚,戴青冬,等.香蕉枯萎病菌中Hog1 MAPK同源基因Fo Hog1敲除突变体的生物学特性[J].微生物学报,2014,54(11):1 267-1 278.
    [28]Michielse C B,Rep M.Pathogen profile update:Fusarium oxysporum[J].Molecular Plant Pathology,2009,10(3):311-324.
    [29]Fourie G,Steenkamp E T,Ploetz R C,et al.Current status of the taxonomic position of Fusarium oxysporum formae specialis cubense within the Fusarium oxysporum complex[J].Infection,Genetics and Evolution,2011,11(3):533-542.
    [30]Kashiwa T,Kozaki T,Ishii K,et al.Sequencing of individual chromosomes of plant pathogenic Fusarium oxysporum[J].Fungal Genetics and Biology,2017,98:46-51.
NGLC 2004-2010.National Geological Library of China All Rights Reserved.
Add:29 Xueyuan Rd,Haidian District,Beijing,PRC. Mail Add: 8324 mailbox 100083
For exchange or info please contact us via email.