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Functional Characterization of Mi, a Root-knot Nematode Resistance Gene from Tomato ( Lycopersicon esculentum L.) 被引量:3

Functional Characterization of Mi, a Root-knot Nematode Resistance Gene from Tomato ( Lycopersicon esculentum L.)
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摘要 Root-knot nematodes (Meloidogyne spp.) cause major economic damage to numerous crop species around the world. Plant resistance is the most important attribute that is able to suppress invasion by the rootknot nematodes. In the present study, a candidate root-knot nematode resistance gene (Mi) was isolated from the resistant tomato (Lycopersicon esculentum L.) line RN-1. Expression profiling analysis revealed that this gene was expressed specifically in the roots, stems, and leaves, but not in the flowers or fruits. To verify the real function of this candidate gene, both sense and inteference RNA (RNAi) vectors were constructed. We obtained 31 transgenic plants with between one and seven copies of T-DNA inserts of sense Mi from two nematode-susceptible tomato cultivars as assayed by polymerase chain reaction (PCR) and Southern blotting analysis. Reverse transcription-PCR analysis revealed that expression levels of the Mi gene varied in different transgenic plants. Nematode assays showed that the resistance to root-knot nematodes was significantly improved in some transgenic lines compared with untransformed susceptible controls and that the resistance was heritable in selfed progeny. Loss of function via RNAi further confirmed the role of the Mi gene and the original resistant lines became susceptible to root-knot nematodes. Root-knot nematodes (Meloidogyne spp.) cause major economic damage to numerous crop species around the world. Plant resistance is the most important attribute that is able to suppress invasion by the rootknot nematodes. In the present study, a candidate root-knot nematode resistance gene (Mi) was isolated from the resistant tomato (Lycopersicon esculentum L.) line RN-1. Expression profiling analysis revealed that this gene was expressed specifically in the roots, stems, and leaves, but not in the flowers or fruits. To verify the real function of this candidate gene, both sense and inteference RNA (RNAi) vectors were constructed. We obtained 31 transgenic plants with between one and seven copies of T-DNA inserts of sense Mi from two nematode-susceptible tomato cultivars as assayed by polymerase chain reaction (PCR) and Southern blotting analysis. Reverse transcription-PCR analysis revealed that expression levels of the Mi gene varied in different transgenic plants. Nematode assays showed that the resistance to root-knot nematodes was significantly improved in some transgenic lines compared with untransformed susceptible controls and that the resistance was heritable in selfed progeny. Loss of function via RNAi further confirmed the role of the Mi gene and the original resistant lines became susceptible to root-knot nematodes.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2006年第12期1458-1465,共8页 植物学报(英文版)
基金 Supported by the National Natural Science Foundation of China (30370980), Doctorate Program of University of Ministry of Education (20050504028), and National Advanced Technology Research and Development Plan of China (AA212221).
关键词 Mi gene OVEREXPRESSION RNAI root-knot nematode TOMATO Mi gene overexpression RNAi root-knot nematode tomato
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  • 1Ammiraju JSS,Veremis JC,Huang X,Roberts PA,Laloshian I(2003).The heat-stable root-knot nematode resistance gene Mi-9 from Lycopersicon peruvianum is localized on the short arm of chromosome 6.Theor Appl Genet 106,478-484.
  • 2Cai D,Kleine M,Kifle S,Harloff HJ,Sandal NN,Marcker KA et al.(1997).Positional cloning of a gene for nematode resistance in sugar beet.Science 275,832-834.
  • 3Dropkin VH (1969).The necrotic reaction of tomatoes and other hosts resistant to Meloidigyne:Reversal by temperature.Phytopathology 59,1632-1637.
  • 4Fillatti JJ,Kiser J,Rose R,Comai L (1987).Efficient transfer of a glyphosate tolerance gene into tomato using a binary Agrobacterium tumefaciens vectors.Biotechnology 5,736-740.
  • 5Fulton TM,Chunwongse J,Tanksley SD (1995).Microprep protocol for extraction of DNA from tomato and other herbaceous plants.Plant Mol Biol Rep 13,207-209.
  • 6Goggin FL,Shan G,Williamson VW,Ullnan DE (2004).Instability of Mi-mediated nematode resistance in transgenic tomato plants.Mol Breeding 13,357-364.
  • 7Holliday P (1989).A Dictionary of Plant Pathology.Cambridge University Press,Cambridge.
  • 8Lambert KN,Tedford EC,Caswell EP,Williamson VM (1992).A system for continuous production of root-knot nematode juveniles in hydroponic culture.Phylopathology 82,512-515.
  • 9Messeguer R,Ganal M,Vicente MC,Young ND,Bolkan H,Tanksley SD (1991).High resolution map around the root-knot nematode resistance gene (Mi) in tomato.Theor Appl Genet 82,529-536.
  • 10Milligan SB,Bodeau J,Yaghoobi J,Kaloshian I,Zabel P,Williamson VM (1998).The root-knot nematode resistance gene Mi from tomato is a member of the leucine zipper,nucleotide binding,leucine-rich repeat family of plant genes.Plant Cell10,1307-1319.

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