Publications by authors named "Frank C Lanfermeijer"

In this study, we introduce the Micro-Electrode Ion Flux Estimation technique as a sensitive and accurate technique to study systemin-induced changes in ion fluxes from isolated nearly intact plant tissues. Our results demonstrate the effectiveness and value of the Micro-Electrode Ion Flux Estimation technique to monitor and characterize those elicitor-induced ion flux changes from intact tissues. We used the method to monitor the systemin-induced changes in ion fluxes from leaf tissue of various plant species, including wild-type and cu3 mutant tomato (Solanum pimpinellifolium) plants, and confirm previous observations, but now in intact leaf tissue.

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To gain an insight into the processes underlying disease resistance and its durability, the durable Tm-2(2) resistance gene was compared with the broken Tm-2 resistance gene. The Tm-2 gene of tomato could be isolated via PCR with primers based on the Tm-2(2) sequence. The Tm-2 gene, like the Tm-2(2) gene, encodes an 861 amino acid polypeptide, which belongs to the coiled coil/nucleotide binding site/leucine-rich repeat class of resistance proteins.

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In previous studies, it has been shown that inactivation of opp or even oppA abolishes the capacity of Lactococcus lactis to utilize oligopeptides. We now show that the opp operon has been duplicated in L. lactis MG1363.

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In tomato, infections by tomato mosaic virus are controlled by durable Tm-2(2) resistance. In order to gain insight into the processes underlying disease resistance and its durability, we cloned and analysed the Tm-2(2) resistance gene and the susceptible allele, tm-2. The Tm-2(20 gene was isolated by transposon tagging using a screen in which plants with a destroyed Tm-2(2) gene survive.

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Synopsis of recent research by authors named "Frank C Lanfermeijer"

  • - Frank C. Lanfermeijer specializes in plant molecular biology, with a focus on understanding disease resistance mechanisms in crops, particularly tomatoes, through genetic analysis and functional studies.
  • - His research has utilized innovative techniques, such as the Micro-Electrode Ion Flux Estimation, to investigate plant responses to elicitors like systemin, confirming that specific tomato mutants retain the ability to respond to these signaling molecules.
  • - Moreover, Lanfermeijer has contributed to the knowledge of resistance genes, comparing the Tm-2 resistance gene's differences with its durable counterpart Tm-2(2), highlighting genetic factors that could influence disease resilience in tomato plants.