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- Journal Article
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- open access
A symbiotic plant peroxidase involved in bacterial invasion of the tropical legume Sesbania rostrata
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- Journal Article
- A1
- open access
Gibberellins are involved in nodulation of Sesbania rostrata
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Nodule-enhanced protease inhibitor gene: emerging patterns of gene expression in nodule development on Sesbania rostrata
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Role of reactive oxygen species and ethylene in programmed cell death during nodule initiation on Sesbania rostrata
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Patterns of pectin methylesterase transcripts in developing stem nodules of Sesbania rostrata
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- Journal Article
- A1
- open access
A critical evaluation of differential display as a tool to identify genes involved in legume nodulation : looking back and looking forward
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Srchi24, a chitinase homolog lacking an essential glutamic acid residue for hydrolytic activity, is induced during nodule development on Sesbania rostrata
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Early symbiotic functions of Sesbania rostrata
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Chalcone reductase-homologous transcripts accumulate during development of stem-borne nodules on the tropical legume Sesbania rostrata
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Chitinase gene expression during stem nodulation on Sesbania rostrata
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Chitinase gene expression during stem nodulation on Sesbania rostrata
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Early gene expression during stem nodule formation on Sesbania rostrata
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Early gene expression during stem nodule formation on Sesbania rostrata
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Patterns of ENOD40 gene expression in stem-borne nodules of Sesbania rostrata
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Srchi13, a novel early nodulin from Sesbania rostrata, is related to acidic class III chitinases
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Plant gene expression during stem nodule development on Sesbania rostrata