PubMed Health⌕ Search

Biomedical subjects

A F Croes

Publications and source records attributed to A F Croes.

12 recordsLinked to original sources

Purification and cDNA cloning of isochorismate synthase from elicited cell cultures of Catharanthus roseus.

Isochorismate is an important metabolite formed at the end of the shikimate pathway, which is involved in the synthesis of both primary and secondary metabolites. It is synthesized from chorismate in a reaction catalyzed by the enzyme isochorismate synthase (ICS; EC 5.4.99.6). We have purified ICS to homogeneity from elicited Catharanthus roseus cell cultures. Two isoforms with an apparent molecular mass of 64 kD were purified and characterized. The Km values for chorismate were 558 and 319 microM for isoforms I and II, respectively. The isoforms were not inhibited by aromatic amino acids and required Mg2+ for enzyme activity. Polymerase chain reaction on a cDNA library from elicited C. roseus cells with a degenerated primer based on the sequence of an internal peptide from isoform II resulted in an amplification product that was used to screen the cDNA library. This led to the first isolation, to our knowledge, of a plant ICS cDNA. The cDNA encodes a protein of 64 kD with an N-terminal chloroplast-targeting signal. The deduced amino acid sequence shares homology with bacterial ICS and also with anthranilate synthases from plants. Southern analysis indicates the existence of only one ICS gene in C. roseus.

Amino Acid Sequence↗

Role of N-glycosylation of 66 and 69 kDa glycoproteins in wall formation during pollen tube growth in vitro.

Two abundant cell wall glycoproteins (66 and 69 kDa) accumulate during growth in pollen tubes of tobacco. Glycosylation of the proteins was experimentally modified by application of the specific inhibitors tunicamycin and castanospermine to in vitro cultured pollen. Newly synthesized proteins were labeled with a 14C-amino acid mixture supplied to the medium. Modified glycoproteins were extracted from pollen tubes and isolated cell walls, and separated by 1-D and 2-D electrophoresis. The size of the molecules was reduced by tunicamycin and increased by castanospermine, effects which were measurable from the beginning of cultivation. The modification of the glycan moiety did not affect deposition of the proteins in the wall. Cultivation in the continuous presence of either inhibitor led to reduced callose deposition in the secondary cell wall and to inhibition of pollen tube growth. The results suggest that the two proteins play a role in the formation of the callose wall, and that this function depends on proper glycosylation of the molecules. As a consequence, the glycoproteins are essential for growth of the pollen tube.

Amino Acids↗

Inhibition by Ethylene of Auxin-Promotion of Flower Bud Formation in Tobacco Explants Is Absent in Plants Transformed by Agrobacterium rhizogenes.

The in vitro regeneration of flower buds was studied in pedicel explants from tobacco (Nicotiana tabacum L., cv Petit Havana) transformed with Agrobacterium rhizogenes, pRi 1855 (agropine type). At a low concentration (0.1 micromolar) of 1-naphthalene-acetic acid, pedicel strips from phenotypically aberrant plants regenerated two to three times more flower buds than explants from untransformed tobacco. Intermediate bud numbers were observed in transformants with a less extreme phenotype. The results can be explained by an increased sensitivity of the transformed explants to auxin with respect to flower bud regeneration. The effect of transformation on the auxin response is fully accounted for by the absence of a negative interaction of endogenous ethylene with 1-naphthaleneacetic acid, a phenomenon normally encountered in untransformed tissues. Three observations led to this conclusion. Application of 1 micromolar AgNO(3) to untransformed explants increased the number of flower buds to the level observed in transformed tissues but had no effect on transformed pedicel strips; exposure to 10 microliters per liter ethylene strongly reduced the response to auxin at all concentrations in untransformed explants but was almost ineffective in the transformed tissues; and endogenous ethylene synthesis occurred at the same rate in both types of explants.

Journal Article↗

Cytokinins and flower bud formation in vitro in tobacco: role of the metabolites.

Explants from flower stalks of Nicotiana tabacum L. were cultured on different cytokinins to induce flower bud formation. All cytokinins tested except zeatin and zeatin-riboside induced the same maximal number of flower buds. Benzyladenine, benzyladenosine, and dihydrozeatin were the most active compounds whereas isopentenyladenosine and isopentenyladenine acted at a 20-fold higher concentration. These data suggest that the active cytokinins bind to the same receptor with different affinities. The presence of benzyladenine in the medium was necessary only during the first 2 days of culture (initiation period). The equilibrium between benzyladenine and its conjugates (the riboside, glucoside, and nucleotides) after a 4-day pulse was independent of the benzyladenine concentration whether it was inductive or noninductive for bud formation. The level of all derivatives was proportional to the benzyladenine concentration in the medium. Isopentenyladenine was used as a competitive inhibitor of benzyladenine conjugation. Isopentenyladenine concentrations that were too low for bud formation led to a synergistic increase in bud number when applied together with benzyladenine. Isopentenyladenine decreased benzyladenine uptake and conjugation. In spite of the lower uptake, the concentration of free benzyladenine inside the explants was higher in the presence of isopentenyladenine than in its absence whereas the concentration of the 7-glucoside of benzyladenine was lower. It was concluded that the free cytokinin base is the main active compound.

Journal Article↗

Effects of the developmental state of the tissue on the competence for flower bud regeneration in pedicel explants of tobacco.

The competence of pedicel explants of tobacco (Nicotiana tabacum L. cv Samsun) to regenerate flower buds in response to auxin was manipulated by preincubating excised tissues in the absence of auxin. When exposed to 1 micromolar 1-naphthaleneacetic acid, these tissues formed fewer buds than controls that were not preincubated. The number of buds eventually formed correlated with the 1-naphthaleneacetic acid concentration in the tissue 6 hours after the start of hormone application. The internal concentrations in pretreated explants were lower than in tissues that were not pretreated due to diminished uptake per milligram fresh weight and increased hormone conjugation. The change in the developmental state induced by auxin deprivation had a dual effect on bud regeneration: (a) the pretreatment caused fewer buds to be formed at any 1-naphthaleneacetic acid concentration tested, and (b) a higher auxin concentration in the medium was required to get a maximum bud number on precultured explants. An increase of the 1-naphthaleneacetic acid concentration in the medium led to an elevated hormone level in freshly cut as well as in preincubated tissues. It was concluded that the developmental state of the tissue directly affects the maximum number of buds that can be regenerated. Apart from that there is an indirect effect exerted via modulation of the ratio between external and internal auxin concentration. The change in this ratio can be compensated for by an adjustment of the auxin concentration in the medium.

Journal Article↗

Polar transport of 1-naphthaleneacetic Acid determines the distribution of flower buds on explants of tobacco.

Upon addition of 1-naphthaleneacetic acid (1-NAA) and benzylaminopurine, flower buds developed on explants from flower stalks of Nicotiana tabacum L. cv Samsun cultured in vitro. At low concentrations of 1-NAA, buds emerged mainly at the basal edge, whereas at high concentrations they developed on the remaining surface. The optimum concentrations for the two groups of buds were 0.45 micromolar and 2.2 micromolar, respectively, and the shapes of the concentration versus response curves were similar. The level of benzylaminopurine in the medium affected neither the shape nor the optimum concentration of these curves. The distribution of the buds over the explants was shown to be caused by polar auxin transport, leading to accumulation at the basal side. First, in the presence of the inhibitors 2,3,5-triiodobenzoic acid and 1-naphthylphthalamic acid, both groups of buds had the same optimum concentration of 1 micromolar 1-NAA. Second, after 6 hours of culture applied 1-NAA had accumulated in the basal part of the explant. In the presence of 1-naphthylphthalamic acid, no transport or accumulation of applied 1-NAA occurred.

Journal Article↗

Killer-sensitive relationships in yeasts from natural habitats.

Yeast strains (157) belonging to at least 9 genera were isolated from natural habitats and screened for killer-sensitive relationships. Killer and sensitive characteristics were exhibited by 17 and 11% of the isolates, respectively. The strains belong to either one of two mutually exclusive killer-sensitive groups.

Antibiosis↗

Chemotaxis and transport of amino acids in Allomyces arbuscula.

Among a number of amino acids tested, L-lysine and L-arginine are the principal attractants in the chemotaxis of the zygotes of Allomyces arbuscula. The reaction can be stimulated to a greater or lesser extent by a number of compounds chemically related to L-leucine. No relationship between transport of attracting amino acids and their effect on chemotaxis has been found.

Amino Acids↗

Polyribosomes in different stages of the life cycle of the water mold Allomyces arbuscula.

Synchronous gametogenesis in the water mold Allomyces arbuscula is blocked by actinomycin D added at the onset of the process. Formation of the male gametangium can be selectively inhibited by administering actinomycin one hr after the induction of gametogenesis. The polyribosome pattern obtained after density gradient centrifugation remains virtually unchanged throughout gametogenesis until a stage immediately preceding maturation of the gametes. When ribosome from gametes and swarming zygotes are analyzed on gradients, some RNase-sensitive materials is found to band in the heavier portion of the gradient. Its presence suggests that some messenger RNA associated with ribosomes is conserved in the swarming cells. During gametogenesis RNA is de novo synthesized and becomes associated with the polyribosomes.

Cell Fractionation↗

RNA synthesis during zoospore germination in the water mold Allomyces arbuscula.

The major classes of RNA (rRNA, mRNA, tRNA) start to be synthesized simultaneously in the zoospore of Allomyces soon after the onset of germination. Especially during cyst formation and germ tube emergence, the synthesis of mRNA and tRNA is prominent whereas that of rRNA proceeds slowly. The transcription products of these early stages are needed for the subsequent initiation of hypha formation.

Chytridiomycota↗