Meloidogyne-SP4 effector gene silencing reduces reproduction of root-knot nematodes in rice (Oryza sativa)

被引:0
|
作者
NGUYEN, Phong V. [1 ]
BIEN, Thanh LT. [1 ]
Ton, Linh B. [1 ]
LE, Don D. [1 ]
KATHRYNWRIGHT, M. [2 ]
MANTELIN, Sophie [3 ]
PETITOT, Anne-Sophie [4 ]
FERNANDEZ, Diana [4 ]
BELLAFIORE, Stephane [4 ]
机构
[1] Nong Lam Univ, Fac Biol Sci, Ho Chi Minh City, Vietnam
[2] James Hutton Inst, Dundee, Scotland
[3] Inst Sophia Agrobiotech, INRAE UMR 1355, 400 route Chappes,BP 167, F-06903 Sophia Antipolis, France
[4] Univ Montpellier, PHIM Plant Hlth Inst, IRD, CIRAD,INRAE,Inst Agro, Montpellier, France
关键词
  host-mediated gene silencing by RNAi; Meloidogyne graminicola; Meloidogyne incognita; nematode reproduction; nematode-secreted proteins; virulence effector; PLANT-PARASITIC NEMATODES; DOUBLE-STRANDED-RNA; TRANSCRIPTOME ANALYSIS; EXPRESSION; HOST; GRAMINICOLA; RESISTANCE; INTERFERENCE; DIVERSITY; INCOGNITA;
D O I
10.1163/15685411-bja10152
中图分类号
Q95 [动物学];
学科分类号
071002 ;
摘要
The root-knot nematodes (RKN) Meloidogyne graminicola and M. incognita are responsible for rice yield losses worldwide, particularly in Asia and Africa. Previous studies demonstrated that nematode-secreted proteins are crucial for root invasion and establishment in the host. We present some characteristics of a pioneer effector, M. incognita -secreted protein 4 (Mi-SP4), which is conserved in RKN and required for infection in compatible rice-RKN interactions. In situ hybridisation assays revealed Mi-SP4 expression in the dorsal pharyngeal gland of M. incognita second-stage juveniles (J2). Meloidogyne-SP4 transcripts strongly accumulated in pre-parasitic J2 and decreased in later parasitic stages of M. incognita and M. graminicola. Transient expression of the nematode effector gene in Nicotiana benthamiana leaves and onion cells indicated that GFP-tagged Mi-SP4 was present in the cytoplasm and accumulated in the nucleus of the plant cells. In vitro RNA interference (RNAi) gene silencing, obtained by soaking J2 with small-interfering (si)RNA si4-1, decreased Mi -SP4 expression in J2 by 35% and significantly reduced M. incognita reproduction in rice by at least 30%. Similarly, host-mediated gene silencing of the nematode SP4 effector candidate gene in transgenic rice plants significantly reduced M. graminicola reproduction by 26% to 47%. The data obtained demonstrate that Mi-SP4 is a pioneer virulence effector, which plays an essential role in both M. incognita and M. graminicola pathogenicity on rice.
引用
收藏
页码:571 / 588
页数:18
相关论文
共 50 条
  • [41] Meloidogyne incognita - rice (Oryza sativa) interaction: a new model system to study plant-root-knot nematode interactions in monocotyledons
    Phong Vũ Nguyễn
    Stéphane Bellafiore
    Anne-Sophie Petitot
    Rana Haidar
    Aurélie Bak
    Amina Abed
    Pascal Gantet
    Itamara Mezzalira
    Janice de Almeida Engler
    Diana Fernandez
    Rice, 2014, 7
  • [42] Meloidogyne incognita - rice (Oryza sativa) interaction: a new model system to study plant-root-knot nematode interactions in monocotyledons
    Phong Vu Nguyen
    Bellafiore, Stephane
    Petitot, Anne-Sophie
    Haidar, Rana
    Bak, Aurelie
    Abed, Amina
    Gantet, Pascal
    Mezzalira, Itamara
    Engler, Janice de Almeida
    Fernandez, Diana
    RICE, 2014, 7
  • [43] Molecular Characterization and Virus-Induced Gene Silencing of a Collagen Gene, Me-col-1, in Root-Knot Nematode Meloidogyne enterolobii
    Pei, Ji
    Feng, Tuizi
    Long, Haibo
    Chen, Yuan
    Pei, Yueling
    Sun, Yanfang
    LIFE-BASEL, 2022, 12 (12):
  • [44] Silencing the conserved small nuclear ribonucleoprotein SmD1 target gene alters susceptibility to root-knot nematodes in plants
    Mejias, Joffrey
    Chen, Yongpan
    Bazin, Jeremie
    Truong, Nhat-My
    Mulet, Karine
    Noureddine, Yara
    Jaubert-Possamai, Stephanie
    Ranty-Roby, Sarah
    Soule, Salome
    Abad, Pierre
    Crespi, Martin D.
    Favery, Bruno
    Quentin, Michael
    PLANT PHYSIOLOGY, 2022, 189 (03) : 1741 - 1756
  • [45] QTL-seq reveals a major root-knot nematode resistance locus on chromosome 11 in rice (Oryza sativa L.)
    Lahari, Zobaida
    Ribeiro, Antonio
    Talukdar, Partha
    Martin, Brennan
    Heidari, Zeynab
    Gheysen, Godelieve
    Price, Adam H.
    Shrestha, Roshi
    EUPHYTICA, 2019, 215 (07)
  • [46] QTL-seq reveals a major root-knot nematode resistance locus on chromosome 11 in rice (Oryza sativa L.)
    Zobaida Lahari
    Antonio Ribeiro
    Partha Talukdar
    Brennan Martin
    Zeynab Heidari
    Godelieve Gheysen
    Adam H. Price
    Roshi Shrestha
    Euphytica, 2019, 215
  • [47] Bacillus cereus X5 Enhanced Bio-Organic Fertilizers Effectively Control Root-Knot Nematodes (Meloidogyne sp.)
    Xiao Tong-Jian
    Chen Fang
    Gao Chao
    Zhao Qing-Yun
    Shen Qi-Rong
    Ran Wei
    PEDOSPHERE, 2013, 23 (02) : 160 - 168
  • [48] Bacillus cereus X5 Enhanced Bio-Organic Fertilizers Effectively Control Root-Knot Nematodes(Meloidogyne sp.)
    XIAO Tong-Jian
    CHEN Fang
    GAO Chao
    ZHAO Qing-Yun
    SHEN Qi-Rong
    RAN Wei
    Pedosphere, 2013, (02) : 160 - 168
  • [49] Bacillus cereus X5 Enhanced Bio-Organic Fertilizers Effectively Control Root-Knot Nematodes(Meloidogyne sp.)
    XIAO Tong-Jian
    CHEN Fang
    GAO Chao
    ZHAO Qing-Yun
    SHEN Qi-Rong
    RAN Wei
    Pedosphere, 2013, 23 (02) : 160 - 168
  • [50] The 16S rRNA gene of Pasteuria penetrans provides an early diagnostic of infection of root-knot nematodes (Meloidogyne spp.)
    Rao, Uma
    Mauchline, Tim H.
    Davies, Keith G.
    NEMATOLOGY, 2012, 14 : 799 - 804