[Objective] This study was to obseve the flower bud differentiation process of Gentiana triflora Pall., and to clarify the flower bud development law and the correlation between flower buds differentiation and externa...[Objective] This study was to obseve the flower bud differentiation process of Gentiana triflora Pall., and to clarify the flower bud development law and the correlation between flower buds differentiation and external morphology. [Method] The paraffin section method was used to observe the flower bud of Gentiana triflora un- der microscope. [Result] The flower bud differentiation process of Gentiana triflora could be divided into six stages: the undifferentiated stage, initial differentiation stage, sepal primordia differentiation stage, petal primordia differentiation stage, stamen pri- mordia differentiation stage and the pistil primordia differentiation stage. The flower bud differentiation started from early May, when the plant had 10-11 stem nodes, and completed in early June, lasted about 40 d. The effect of plant height on flower bud differentiation was not significant. [Conclusion] The study provided theoretical basis for the high-yield cultivation, variety selection and flowering regulation of Gentiana triflora.展开更多
Extracts from the dried roots of gentian plant, Gentiana triflora, exhibit an antiproliferative activity against cultured and implanted tumor cells. However, the underlying mechanism has been unclear. In the present s...Extracts from the dried roots of gentian plant, Gentiana triflora, exhibit an antiproliferative activity against cultured and implanted tumor cells. However, the underlying mechanism has been unclear. In the present study, we show that the cell death induced by the extract occurs caspase-independently and depends on metabolic status of mitochondrial respiration. We observed that sensitivity to the extract was considerably lower in HeLa cells, which have a low rate of mitochondrial respiration, in comparison to Y3-Ag1.2.3 cells, which have a higher rate of respiration. Furthermore, sensitivity of HeLa cells to the extract increased significantly when they were forced to switch their energy dependency from glycolysis to mitochondrial respiration. These results indicate that the gentian extract targets on mitochondrial respira-tion. Consequently, different respiratory activities in mitochondria confer cells to have different suscepti-bilities to the extract-induced cell death.展开更多
基金Supported by the Youth Fund of Heilongjiang University,China~~
文摘[Objective] This study was to obseve the flower bud differentiation process of Gentiana triflora Pall., and to clarify the flower bud development law and the correlation between flower buds differentiation and external morphology. [Method] The paraffin section method was used to observe the flower bud of Gentiana triflora un- der microscope. [Result] The flower bud differentiation process of Gentiana triflora could be divided into six stages: the undifferentiated stage, initial differentiation stage, sepal primordia differentiation stage, petal primordia differentiation stage, stamen pri- mordia differentiation stage and the pistil primordia differentiation stage. The flower bud differentiation started from early May, when the plant had 10-11 stem nodes, and completed in early June, lasted about 40 d. The effect of plant height on flower bud differentiation was not significant. [Conclusion] The study provided theoretical basis for the high-yield cultivation, variety selection and flowering regulation of Gentiana triflora.
文摘Extracts from the dried roots of gentian plant, Gentiana triflora, exhibit an antiproliferative activity against cultured and implanted tumor cells. However, the underlying mechanism has been unclear. In the present study, we show that the cell death induced by the extract occurs caspase-independently and depends on metabolic status of mitochondrial respiration. We observed that sensitivity to the extract was considerably lower in HeLa cells, which have a low rate of mitochondrial respiration, in comparison to Y3-Ag1.2.3 cells, which have a higher rate of respiration. Furthermore, sensitivity of HeLa cells to the extract increased significantly when they were forced to switch their energy dependency from glycolysis to mitochondrial respiration. These results indicate that the gentian extract targets on mitochondrial respira-tion. Consequently, different respiratory activities in mitochondria confer cells to have different suscepti-bilities to the extract-induced cell death.