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1.
We investigated the metabolism and translocation of two gibberellins(GAs), [3H]GA20 and [3H]GA1, which were applied at low concentrationto the cotyledons of Pharbitis nil (cv. Violet). Seedlings weregrown under three different photoperiodic conditions: continuouslight (CL-CL), continous light followed by short day conditions(CL-DT) and long day conditions followed by short day conditions(DT-DT). Translocation of the applied [3H]GAs from cotyledonsto hypocotyls was promoted by DT for all GAs examined. Whilethe conversion of the translocated [3H]GA1 to [3H]GA8 and itsconjugates was rapid in hypocotyl, the conversion of translocated[3H]GA20 to [3H]GA29 was slow. Radioactivity in epicotyls wasdetected much more rapidly on application of [3H]GA20 than of[3H]GA1, [3H]GA8 and [3H]GA29 and their conjugates. The conversionof [3H]GA20 to [3H]GA1 in the epicotyl was more rapid underCL-CL conditions. This result in consistent with the higherlevel of endogenous GA1 existing in epicotyls under CL-DT thanDT-DT conditions. However, when [3H]GA1 was applied to the cotyledon,only small amounts of [3H]GA8 and its conjugates were detectedin the epicotyl regardless of the photoperiodic conditions.This result may suggest that the translocation and metabolismof [3H]GA20 from cotyledons to epicotyl was faster under CL-CLthan DT-DT conditions and may correlate with the increased epicotylelongation of GA20 treated plants under CL-DT than DT-DT conditions. (Received June 28, 1995; Accepted November 2, 1995)  相似文献   
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We have studied the utility of the yeast protein YCF1, which detoxifies cadmium by transporting it into vacuoles, for the remediation of lead and cadmium contamination. We found that the yeast YCF1-deletion mutant DTY167 was hypersensitive to Pb(II) as compared with wild-type yeast. DTY167 cells overexpressing YCF1 were more resistant to Pb(II) and Cd(II) than were wild-type cells, and accumulated more lead and cadmium. Analysis of transgenic Arabidopsis thaliana plants overexpressing YCF1 showed that YCF1 is functionally active and that the plants have enhanced tolerance of Pb(II) and Cd(II) and accumulated greater amounts of these metals. These results suggest that transgenic plants expressing YCF1 may be useful for phytoremediation of lead and cadmium.  相似文献   
4.
A single pulse of red light (R) given to 4-d-old etiolated high-pigment-1 (hp-1) mutant tomato (Solanum lycopersicum L.) seedlings followed by a 3-d dark period is demonstrated to result in a block of greening in subsequent white light. Wild-type seedlings green normally under this regime. The block of greening in the hp-1 mutant depends on the length of the dark period before and after the R pulse and operates via the low-fluence-response mode of phytochrome action. This block of greening takes place in hp-1 double mutants lacking either phytochrome A or phytochrome B1, but is absent in the hp-1 triple mutant lacking both phytochromes A and B1. These observations enable a screen to be devised for new phytochrome B1 mutants either within the photoreceptor or mutants defective in phytochrome B1-signalling steps which result in loss of capacity to green, by mutagenising the phytochrome A-deficient hp-1, fri double mutant. Received: 20 February 1998 / Accepted: 18 June 1998  相似文献   
5.
Lee J  Bae H  Jeong J  Lee JY  Yang YY  Hwang I  Martinoia E  Lee Y 《Plant physiology》2003,133(2):589-596
Large parts of agricultural soil are contaminated with lead (Pb) and cadmium (Cd). Although most environments are not heavily contaminated, the low levels observed nonetheless pose a high risk of heavy metal accumulation in the food chain. Therefore, approaches to develop plants with reduced heavy metal uptake are important. Recently, many transgenic plants with increased heavy metal resistance and uptake of heavy metals were developed for the purpose of phytoremediation. However, to reduce heavy metal in the food chain, plants that transfer less heavy metals to the shoot are required. We tested whether an Escherichia coli gene, ZntA, which encodes a Pb(II)/Cd(II)/Zn(II) pump, could be useful for developing plants with reduced heavy metal content. Yeast cells transformed with this gene had improved resistance to Pb(II) and Cd(II). In Arabidopsis plants transformed with ZntA, ZntA was localized at the plasma membrane and improved the resistance of the plants to Pb(II) and Cd(II). The shoots of the transgenic plants had decreased Pb and Cd content. Moreover, the transgenic protoplasts showed lower accumulation of Cd and faster release of preloaded Cd than wild-type protoplasts. These results show that a bacterial transporter gene, ZntA, can be functionally expressed in plant cells, and that that it may be useful for the development of crop plants that are safe from heavy metal contamination.  相似文献   
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Application of liquid chromatography-atmospheric pressure chemical ionization-mass spectrometry (LC/APCI-MS) for the analysis of cytokinins was examined. The fragmentation of cytokinins was studied using authentic trans-zeatin (t-Z), trans-zeatin riboside (t-ZR), isopentenyl adenine (i6Ade), isopentenyl adenosine (i6Ado), benzyl adenine (BAde), benzyl adenosine (BAdo), and kinetin. These cytokinins were effectively ionized by APCI in aqueous acetonitrile. t-Z, i6Ade, BAde, and kinetin showed prominent quasi-molecular ions of [M + H]+, and ribosylcytokinins clearly showed both [M + H]+ and a characteristic fragment ion ([M + H-ribose]+), giving some information about their structures. The qualitative and semi-quantitative analyses of cytokinins by LC/APCI-MS were validated in combination with enzyme-linked immunosorbent assay (ELISA) through the analysis of t-ZR in the teratoma of Nicotiana tobacum. t-ZR was conclusively identified and a semi-quantitative estimate of its endogenous levels were provided by the combination of LC/APCI-MS and ELISA. The quantified values obtained by LC/ APCI-MS (single ion detection) and ELISA are in close agreement.  相似文献   
8.
Experiments were carried out to explore the involvement of gibberellins(GAs) in the light-induced germination of Arabidopsis thaliana(L.) Heynh, using wild type (WT) and phytochrome-deficient mutants(phyA, phyB and phyAphyB deficient in phytochrome A, B and Aplus B, respectively). Seed germination of WT and phytochrome-deficientmutants was inhibited by uniconazole (an inhibitor of an earlystep in biosynthesis of GA, the oxidation of ent-kaurene) andprohexadione (an inhibitor of late steps, namely, 2rß-and 3rß-hydroxylation). This inhibition was overcomeby simultaneous application of 10-5 M GA4. The relative activityof GAs for promoting germination of uniconazole-treated seedswas GA4>GA1=GA9>GA20. The wild type and the phyA and phyBmutants had an increased response to a red light pulse in thepresence of GA1, GA4, GA9, GA20 and GA24 but there were no significantdifferences in activity of each GA between the mutants. Therefore,neither phytochrome A nor hytochrome B appears to regulate GAbiosynthesis from GA12 to GA4 during seed germination, sincethe conversion of GA12 to GA9 is regulated by one enzyme (GA20-oxidase). However, GA responsiveness appears to be regulatedby phytochromes other than phytochromes A and B, since the phyAphyBdouble mutant retains the photoreversible increased responseto GAs after a red light pulse. (Received February 13, 1995; Accepted July 11, 1995)  相似文献   
9.
S-Adenosylmethionine (SAM), the major methyl donor in diverse biological processes, was recently found to be involved in the regulation of differentiation in streptomycetes. Exogenous SAM, in a quantity as low as 2muM, enhanced antibiotic production and inhibited morphological development of Streptomyces coelicolor M145. Total protein profiling of S. coelicolor M145 revealed that SAM enhanced the expression of oligopeptide-binding components related to ABC transporters that included BldK, a well-known regulatory factor in S. coelicolor differentiation. A radiolabeled SAM feeding experiment verified that exogenous SAM can be imported into the cell, which is under the control of the bld cascade. This study substantiated that BldK serves as a transducer of the SAM signal and uncovered the possible role of oligopeptide import in the regulation of Streptomyces differentiation, particularly in relation to SAM.  相似文献   
10.
One of the effects of daminozide is to retard shoot growth in certain plant species, but its mode of action is unclear. Prohexadione, an acylcyclohexanedione, also causes retardation of shoot growth, but it is active in all plant systems tested so far. This inhibition has been shown to be a result of competition with the natural co-substrate, 2-oxoglutarate, at the active site of hydroxylases involved in the later stages of the gibberellin (GA) biosynthesis pathway. In order to determine the mode of action of daminozide in relation to prohexadione, the potencies of the two retardants as inhibitors of 3β-hydroxylation of GAs in cell-free systems from pumpkin ( Cucurbita maxima ) endosperm and French bean ( Phaseolus coccineus ) cotyledons were studied. Several compounds, related to or representing structural links between daminozide and prohexadione, were also included in this investigation. Daminozide was found to inhibit only the bean 3β-hydroxylase to a significant degree, whereas prohexadione inhibited both the bean and pumpkin enzymes.
Further information was obtained from the GC-MS analysis of GAs found in the newly formed parts of the shoots of peanut seedlings treated with the two compounds. Both growth retardants inhibited the formation of GA1, whereas its immediate precursor, GA20, accumulated. Furthermore, levels of GA8 (2β-hydroxy GA1) were also reduced, but by a smaller relative amount.
These results clearly indicate for the first time that daminozide has the same mode of action as prohexadione in distinct plant species, namely to inhibit the 3β-hydroxylase and, to a lesser extent, the 2β-hydroxylase. This is probably due to the structural similarity of the two inhibitors with 2-oxoglutarate.  相似文献   
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