[Gibberellins. XLIII. Part. Fractionation of gibberellins, gibberellin conjugates and other plant hormones through DEAE-Sephadex chromatography].
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Two minor radioactive products in cultures of G. fujikuroi strain ACC917 supplemented with labeled gibberellin A4 have been identified as the 2alpha-hydroxy derivative, gibberellin A47, and the hydrate, gibberellin A2. In addition, evidence was obtained by combined gas chromatography--mass spectrometry for the formation of 3-O-acetylgibberellin A1,3-O-acetylgibberellin A3, and gibberellin A20 by the culture. The time course of gibberellin synthesis in defined and complex media, as well as changes in the relative amounts of radioactive gibberellins formed when [4C]gibberellin A4 was added to cultures at different ages, suggest that the composition of the gibberellin mixture produced is determined by the balance between synthesis and decay of key enzymes in the branching pathway.
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Gibberellin-like substances were found to be produced by fungi isolated from mycorrhizae of pine. Among the isolates studied gibberellin-like substances producers were most numerous among the Basidiomycetes forming ectotrophic mycorrhiza and among non-sporulating fungi forming no mycorrhiza. In most strains the gibberellin-like subtances were elaborated after 10--20 days of incubation. The Rf values of the gibberellin-like compounds were different in various strains, but in most of them substances showing gibberellin activity appeared on the chromatograms run with benzene, acetic acid (10:3 v/v) at Rf 0.2--0.6.
Fifty cultures of Fusarium moniliforme were isolated from different hosts and were studied morphologically and physiologically for gibberellin production. Gibberellin production is not limited to rice isolates, since isolates from other host plants revealed also production. These isolates were highly utilizing sucrose, fructose, glucose, sorbose, maltose, mannose, xylose, and arabinose, more than lactose; also ammonium nitrate, ammonium sulphate, and ammonium tartrate were better utilized as nitrogen source than soybean, dry yeast, and corn steep liquor.
While plant stumping can break apical dominance, promote lateral branching, and thereby increase yield, a significant technical challenge remains in further enhancing the coppicing regrowth capacity after stumping. This study used one-year-old Pinus yunnanensis Franch seedlings as subjects. Through exogenous application of gibberellin 3 (GA3) and Paclobutrazol (PAC), it investigated the regulatory role of gibberellin (GA) in sprouting and identified TCP genes related to branching within the GA pathway. Results indicate that exogenous hormone treatments altered endogenous hormone levels in P. yunnanensis seedlings. Exogenous GA3 treatment significantly increased endogenous IPA, ABA, GA3, GA1, SA, and SAG content. Correlation analysis with sprout number revealed a positive relationship between endogenous hormones and sprout number, indicating that exogenous GA3 significantly influenced sprout number. After hormone application, the cumulative number of sprouts increased with seedling age across all treatments. Therefore, to further investigate whether changes in sprout number were caused by gene alterations in the GA signaling pathway, this study analyzed the GA signaling pathway and its associated transcription factors. Fifteen TCP family members were screened from the P. yunnanensis transcriptome, phylogenetically classified into Class I and Class II subfamilies. Conserved motif sites within the Class II family co-occurred, exhibiting high conservation. Genes from the Class II subfamily were cloned, and their differential expression across various tissues was analyzed via real-time quantitative PCR. Expression patterns under different hormone treatments were also examined. Our results reveal that PyTCP4, PyTCP6, and PyTCP20 are significantly upregulated by PAC (a GA synthesis inhibitor) and show strong negative correlations with sprouts number, while GA3 treatment partially alleviates this effect. These findings provide direct evidence that TCP transcription factors act as repressors of shoot branching, linking their hormone-responsive expression to the regulation of sprouts formation in P. yunnanensis. These results indicate that TCP transcription factors play a crucial role in shoot and root emergence, with their expression influenced by exogenous hormones, thereby affecting the growth and development of emerging shoots and roots. This provides a reference and basis for analyzing the expression patterns and functions of TCP genes in P. yunnanensis, facilitating further research into their functions.
The production of gibberellin-like substances by bacteria and fungi was investigated. A considerable number of the microorganisms studied produced these substances (55 and 86% of bacterial and fungal isolates respectively). Most of the organisms tested synthesized biologically active substances located on the chromatograms with the solvent system benzene, acetic acid (10:3 v/v) at Rf 0.05--0.3. The ammount of gibberellin-like substances produced varied in the range 0.00007--0.00065 GA3 equivalents mug/ml in bacteria and 0.00014--0.00118 mug/ml in fungi.
Solanum torvum, a superior vegetable grafting rootstock and medicinal Solanaceae plant, exhibits strong seed dormancy, which limits its commercial cultivation. Among various strategies explored to improve the germination rate of S. torvum, exogenous application of gibberellin (GA) has been shown to be effective. In this study, a GA concentration of 2.5 mM was established as the optimal for breaking dormancy in S. torvum seeds. Transcriptome analysis of dry, water-soaked, GA-soaked, and GA-induced germinated seeds was conducted to investigate the molecular mechanism of GA-mediated dormancy release. During the soaking period, GA application significantly induced transcriptome changes in processes including protein processing, translation, and peptide biosynthesis. Concurrently, GA treatment promoted plant hormone signal transduction, enhanced DNA-binding transcription factor activity, and activated monocarboxylic acid biosynthetic process, all of which facilitated seed water absorption. Furthermore, the differentially expressed genes (DEGs) induced by GA during soaking primarily functioned in signal transduction or activation. While most of these DEGs returned to their pre-treatment expression levels before subsequent recovery, a subset persisted until seed germination. During radicle protrusion, the persistent DEGs were associated with energy metabolism and cell structure establishment. Notably, heat shock protein (HSP) genes showed dynamic expression across all stages (soaking, germination, and radicle penetration). Furthermore, by adjusting germination conditions, temperature was confirmed to be a necessary but not sufficient condition for GA-induced S. torvum seed germination. However, functional validation (e.g., using HSP inhibitors or genetic approaches) is still required to confirm the causal role of HSPs. Collectively, these findings not only clarify the molecular basis of GA-regulated seed dormancy breaking in S. torvum but also provide practical guidance for optimizing its commercial propagation protocols.
Gibberellin (GA) promotes seed germination, but sustained or excessive GA signaling after germination can lead to aberrant root and shoot elongation. How GA homeostasis is transcriptionally restrained during post-germinative seedling development remains unclear. Using overexpression and gene-edited maize materials, we demonstrate that ZmMYB59 inhibits root and shoot elongation during post-germinative growth. Integrated RNA-Seq and CUT&Tag analyses identified the GA catabolism genes ZmGA2ox3 and ZmGA2ox10 as candidate direct targets of ZmMYB59. Hormone profiling analysis showed elevated bioactive GA1 and GA4 levels in the scutellum and aleurone layer cells of zmmyb59 mutants. Dual-luciferase assays, electrophoretic mobility shift assays, and ChIP-qPCR further confirmed that ZmMYB59 directly binds AC8 cis-elements in the ZmGA2ox3/10 promoters and activates their transcription. The zmga2ox3/10 double mutant, but neither single mutant, exhibited enhanced root and shoot elongation, accompanied by GA4 accumulation. This phenotype was suppressed by exogenous application of the GA biosynthesis inhibitor uniconazole. Transcriptomic and biochemical analyses further revealed enhanced starch degradation, reduced starch content, and increased soluble sugar accumulation in the double mutant. Taken together, these findings reveal that the ZmMYB59-ZmGA2ox3/10 module restrains GA accumulation and starch mobilization after germination, thereby coordinating reserve utilization with post-germinative root and shoot growth in maize.
Break in bud dormancy in virus-infected stem cuttings of Euphorbia pulcherrima occurs because of the higher quantity of gibberellins present in them than in healthy cuttings in the dormant period of the plant.
Treatment of neonatal rats with a single does of gibberellin had a notable influence on certain endocrine indices in adulthood. It accelerated the growth rate of the animals and produced weight increase of thyroid, ovary and adrenals as well as of the blood Ca-level, but reduced the weight of the testis.
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