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1.
Mol Plant Microbe Interact ; 15(6): 515-21, 2002 Jun.
Article in English | MEDLINE | ID: mdl-12059099

ABSTRACT

Bacterial attack is a serious agricultural problem for growth of rice seedlings in the nursery and field. The thionins purified from seed and etiolated seedlings of barley are known to have antimicrobial activity against necrotrophic pathogens; however, we found that no endogenous rice thionin genes alone are enough for resistance to two major seed-transmitted phytopathogenic bacteria, Burkholderia plantarii and B. glumae, although rice thionin genes constitutively expressed in coleoptile, the target organ of the bacteria. Thus, we isolated thionin genes from oat, one of which was overexpressed in rice. When wild-type rice seed were germinated with these bacteria, all seedlings were wilted with severe blight. In the seedling infected with B. plantarii, bacterial staining was intensively marked around stomata and intercellular spaces. However, transgenic rice seedlings accumulating a high level of oat thionin in cell walls grew almost normally with bacterial staining only on the surface of stomata. These results indicate that the oat thionin effectively works in rice plants against bacterial attack.


Subject(s)
Antimicrobial Cationic Peptides/metabolism , Avena/genetics , Bacteria/growth & development , Carrier Proteins/metabolism , Oryza/microbiology , Plant Diseases/microbiology , Seeds/microbiology , Amino Acid Sequence , Antimicrobial Cationic Peptides/genetics , Avena/metabolism , Bacteria/pathogenicity , Carrier Proteins/genetics , Cell Wall/metabolism , Cloning, Molecular , Immunity, Innate/genetics , Molecular Sequence Data , Oryza/genetics , Plant Leaves/genetics , Plant Leaves/microbiology , Plant Proteins/genetics , Plant Proteins/metabolism , Plants, Genetically Modified , Seeds/genetics , Sequence Homology, Amino Acid
2.
Plant Cell Physiol ; 37(1): 49-59, 1996 Jan.
Article in English | MEDLINE | ID: mdl-8720924

ABSTRACT

A series of chimeric promoters for higher-level expression of foreign genes in plants was constructed as fusions of a gene for beta-glucuronidase (GUS) with the terminator of a gene for nopaline synthase (nos) or of the cauliflower mosaic virus (CaMV) 35S transcript, and the strength of these promoters was assayed in transient and stable expression systems in tobacco and rice. As parts of these promoters, the CaMV 35S core promoter, three different 5'-upstream sequences of the 35S promoter, the first intron of a gene for phaseolin, and a 5'-untranslated sequence (omega sequence) of tobacco mosaic virus were used in various combinations. In tobacco and rice protoplasts, all three fragments of the 35S promoter (-419 to -90, -390 to -90 and -290 to -90, relative to the site of initiation of transcription), the intron, and the omega sequence effectively enhanced GUS activity. Some chimeric promoters allowed levels of GUS activity that were 20- to 70-fold higher than those obtained with the 35S promoter in pBI221. In tobacco protoplasts, the two longer fragments of the 35S promoter were more effective than the shortest fragment. In rice cells, by contrast, the shortest fragment was as effective as the two longer ones. The terminator of the 35S transcript was more effective than that of the nos gene for gene expression. In transgenic tobacco plants, a representative powerful promoter, as compared to the 35S promoter, allowed 10- and 50-fold higher levels of expression on average and at most, respectively, with no clear qualitative differences in tissue- and organ-specific patterns of expression. When the representative promoter was introduced into tobacco with a gene for luciferase, the autofluorescence of detached leaves after a supply of luciferin to petioles was great and was easily detectable by the naked eye in a dark room.


Subject(s)
Gene Expression , Plants, Genetically Modified , Promoter Regions, Genetic , Recombinant Fusion Proteins/biosynthesis , Terminator Regions, Genetic , Amino Acid Oxidoreductases/biosynthesis , Base Sequence , Caulimovirus , DNA Primers , Genetic Vectors , Glucuronidase/biosynthesis , Molecular Sequence Data , Oryza/metabolism , Plants, Toxic , Plasmids , Polymerase Chain Reaction , Protoplasts/metabolism , Species Specificity , Nicotiana/metabolism
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