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K Van Poucke

Publications and source records attributed to K Van Poucke.

6 recordsLinked to original sources

The cytoskeleton in nematode feeding sites.

Sedentary edoparasitic nematodes induce specialised feeding cells in plant roots. Giant cells induced by root knot nematodes and syncytia generated by cyst nematodes in plant roots are large multinucleated cells containing a dense cytoplasm. To examine the plant cytoskeleton during feeding cell development, transcriptional activity of actin and tubulin genes and organization of the actin filaments and of the microtubules were analyzed in situ. Immunolocalizations of actins and tubulins and in vivo observation of green fluorescent protein decorated actin filaments and microtubules in nematode infected root cells revealed that major rearrangements of the cytoskeleton occur during the formation of nematode induced feeding cells.

Actins↗

Analysis of nematode-responsive promoters in sugar beet hairy roots.

One of the strategies to make crops resistant to the beet cyst nematode Heterodera schachtii is the destruction of the feeding site or syncytium. This can be achieved by local expression of the cytotoxic barnase gene under control of a nematode-inducible plant promoter that is active in the syncytium. Expression of barnase outside the feeding site has to be neutralized by its inhibitor barstar driven from a constitutive promoter that is downregulated in the syncytium. Several promoters that are upregulated in feeding structures were identified using the promoter tagging strategy in Arabidopsis thaliana (Barthels et al., 1997) or by differential cDNA screening in tomato (Van der Eycken et al., 1996). Nematode downregulated promoters in Arabidopsis were described by Goddijn et al. (1993). Five nematode-induced promoters (ARM1, 1164, 728, 25 and Lemmi9) and four downregulated promoters (CaMV35S, the nopaline synthase promoter (nos) and the rooting loci promoters RolC and RolD) fused to the beta-glucuronidase (gus) reporter gene were introduced into sugar beet hairy roots by transformation with Agrobacterium rhizogenes to evaluate their expression pattern. All upregulated promoters were found to be active at the base of lateral roots. The 728 and 25 promoter were as well active in root tips. In the 25-gus lines GUS could also be detected in the vascular tissue, while the ARM1 promoter was also active in sugar beet callus. The Lemmi9 promoter and the 4 constitutive promoters were active in the entire root. The transgenic hairy roots were inoculated with Heterodera schachtii and at different time-points (4, 8, 15, 22 days after inoculation; dpi) GUS analysis was performed on the infected roots. For the ARM1, 1164 and 728 promoter the highest gus expression level in syncytia was observed at 8 dpi. In 4 days old syncytia of the 25-gus lines the intensity of the GUS signal was of the same extent as the non-specific vascular signal. In later stages it even disappeared from the feeding sites. The gus expression level in syncytia of Lemmi9-gus hairy roots was equal to that in control roots. The RolC and 35S promoter were found to be downregulated at 8 dpi, the RolD promoter at 15 dpi and the nos promoter already at 4 dpi.

Animals↗

Molecular characterisation of Arabidopsis lines tagged with a promoterless gus gene.

Promoter trapping has been performed through integration of a T-DNA containing a promoterless beta-glucuronidase (gus) reporter gene into the genome of Arabidopsis thaliana. A collection of T-DNA-tagged Arabidopsis lines has been produced with the vector pdeltagusBin19. Part of this collection was screened for lines with specific gus expression patterns. Here we report on the identification of two lines with gus expression in anthers and seeds. Both lines harbour complex T-DNA inserts. In one line, the integration of the T-DNA causes a male sterility phenotype and gus expression is developmentally regulated in anthers and flower bases. In the other line expression of gus is seen in the anther and seed endosperm.

Arabidopsis↗

A quantitative and dynamic study of endothelial cells and megakaryocytes in human long-term bone marrow cultures.

The quantitative evolution of endothelial cells (ECs) in Dexter-type human long-term bone marrow cultures (HLTBMCs) was investigated. Using monoclonal antibodies directed against von Willebrand factor (vWF) and against membrane antigens (EN-4 and PAL-E), a low percentage--usually less than 1% of stromal cells--of ECs was detected in all confluent cultures established from 11 different bone marrow samples. Generally these cells are not associated directly with the areas of myelopoiesis ("cobblestone areas"). ECs cannot be demonstrated in the adherent layer of most young, non-confluent, and of some old, HLTBMCs. In some instances, morphological features suggestive of dynamic behavior were seen (sprouting, canal formation). In addition, a very low proportion of vWF-positive megakaryocytic cells was found in 4 of 11 cultures, always in direct contact with the stromal fibroblastic cells.

Bone Marrow↗

Comparison of human long-term bone marrow cultures (HLTBMCs) established from fresh and post-cryopreservation bone marrow samples from living and cadaver donors.

Human long-term bone marrow cultures (HLTBMCs) were established from thawed post-cryopreservation, as well as from cadaver donor bone marrow (BM) samples. The longevity was similar in the different series of HLTBMCs examined. CFU-GM could be cultured out of cadaver donor BM. This indicates that previously healthy people, under the conditions generally accepted as suitable for organ donation, could become suitable donors for allogeneic BM transplantation.

Bone Marrow Cells↗