罗汉果

luó hàn guǒ
  • Siraitia grosvenorii;Momordica grosvenori;Grosvenor momordica;fruit of Grosvenor momordica;kiwi fruit
罗汉果罗汉果
罗汉果 [luó hàn guǒ]
  • (1) [Grosvenor momordica]∶一种多年生藤本植物,卵圆形叶,淡黄色花,圆形果实,入药用于清热止咳

  • (2) [fruit of Grosvenor momordica; kiwi fruit]∶该植物的果实

罗汉果[luó hàn guǒ]
  1. 采用化学方法定性、UV及HPLC法测定罗汉果叶中氨基酸、茶多酚、黄酮含量。

    The contents of amino acids , tea poly-phenols and flavones in Momordica Grosvenori leaf were determined by the chemical qualitative method , UV and HPLC .

  2. 罗汉果是我国的传统植物,可药食两用。

    Momordica grosvenori is a traditional medicinal and edible plant in our country .

  3. 建立了罗汉果皂甙V的高效液相定量分析方法。

    The quantification of Mogroside-V by HPLC was established .

  4. 罗汉果甜甙V在各部位的含量分布

    Study on the content distribution of Mogroside ⅴ in each part of Grosvenor momordica

  5. 薄层扫描法测定罗汉果糖苷(V)含量的研究

    Determination of mogroside V by thin layer scan

  6. 利用HPLC测定罗汉果不同部位苷V的含量。

    The content of Mogroside V in different parts of Momordica grosvenori were measured by HPLC .

  7. 这为罗汉果功能基因组学以及甜苷V生物合成分子机理研究打下了坚实的基础。

    This is a solid foundation for the study of Siraitia grosvenorii functional genomics and mogrosides V molecular mechanism of biosynthesis .

  8. 利用转录组数据发现了罗汉果甜苷V生物合成通路中几乎所有的基因,涉及到20种基因。

    With the usage of transcriptome data , it found that almost all genes are related to the mogrosides V biosynthesis pathway .

  9. 罗汉果皂甙提取物具有抗氧化活性,罗汉果皂甙V是提取物中主要的抗氧化活性成分。

    It is concluded that mogroside extract has antioxidant effects and mogroside V may be the main antioxidant components of the extract .

  10. RP-HPLC法测定罗汉果鲜果及甜甙中总黄酮含量

    RP-HPLC Determination of Total Flavone Glycoside from the Fresh Fruits and Saponin of Siraitia Grosvenori

  11. 傅里叶变换红外光谱法和紫外-可见谱线组法分析广西特产罗汉果红外光谱法与X射线衍射法分析介孔复合材料组分变化机理

    Qualitative Analysis of Dry-Fruit of Siraitia Grosvenorii by FT-IR and UV-Vis Spectrometry Component transformation mechanism of mesoporous composite materials studied by FTIR spectroscopy and X-ray diffraction

  12. 评价了罗汉果的药用安全性,为罗汉果质量标准的制定和GAP栽培提出了建议。

    The article has evaluated the safety of Siraitia grosvenorii , and put forward some advice about the constitution of quality standard and GAP cultivation of Siraitia grosvenorii .

  13. 利用RAPD分子标记对罗汉果(SiraitiaGrosvenorii)种质资源的遗传分析和鉴定

    Genetic Analysis and Identification of Germplasm Resources of Siraitia grosvenorii by Rapd Markers

  14. 罗汉果浓缩汁在食品中被广泛用作甜味剂,罗汉果苷V是其中最重要的甜味成分。

    Momordica grosvenori Swingle juice concentrated is used widely in food industry as a sweet additive , and mogroside V is the most important glucoside that attributes the sweet taste .

  15. 用改良的SDS法能够提取浓度和纯度都较高的罗汉果基因组DNA,且经RAPD扩增后能取得比较理想的扩增效果。

    The genome DNA of S. grosvenorii with high concentration and purity could be obtained with the improved method of SDS , which is good enough for RAPD amplification .

  16. 10、罗汉果预培养4天后进行转化,GUS基因的瞬时表达效果最好。

    10 . When the leaf-fragment of Siraitia grosvenorii pre-cultured for 4 days before being transformed , GUS gene expressed perfectly .

  17. X3砧罗汉果嫁接苗没有开花。

    Seedlings grafted on X3 had not blossomed .

  18. 气调贮藏促使罗汉果幼果的蔗糖分解,抑制了还原糖的下降,但却延缓了甜苷V的积累速度。

    The CA storage for yong fruit of siraitia grosvenorii prompted the decomposition of the sucrose content , inhibit the decline of reducing sugar content , while delayed the accumulation of mogroside V content .

  19. 方法:用罗汉果甜甙给正常和环磷酰胺(CTX)抑制小鼠灌胃,检测小鼠巨噬细胞吞噬功能和T细胞的增殖作用。

    Methods : Mogrosides was administered to normal or CTX-induced immunosuppressive mice , and their macrophage function and T lymphocyte proliferation were detected .

  20. 结果:显示罗汉果甜甙对正常小鼠免疫功能无明显作用,但能显著提高CTX免疫抑制小鼠的巨噬细胞吞噬功能和T细胞的增殖作用。

    Results : Mogrosides could promote phagocytosis and T lymphocyte proliferation significantly in the CTX-induced immunosuppressive mice , but not in the normal mice .

  21. 结果通过对正交实验结果的极差分析及方差分析表明,在4个因子中,对罗汉果茎段增殖系数影响最大的是BA,其次是蔗糖的NAA,IBA的影响最小;

    Results The extreme deviation analysis and the variance analysis of the orthogonal test results showed that BA , NAA , IBA , and sucrose were very considerable .

  22. 罗汉果(SiraitiaGrosvenorii)组培苗花芽分化的生理生化初步研究

    Preliminary Study on the Physiological and Biochemical Changes of Flower Bud Differentiation in Tissue Cultured Seedlings of Siraitia Grosvenorii

  23. 不同罗汉果(MomordicagrosvenoriSwingle)品种生长动态、产量质量性状及其适应性栽培研究

    Study on Dynamic Growth , Yield and Quality Characters of Different Breeds and Ecological Adaptive Planting of Momordica Grosvenori Swingle

  24. 罗汉果[SiraitiaGrosvenorii(Swingle)C.Jeffery]是我国南方特有的药用果树植物。

    Siraitia grosvenorii ( Swingle ) C.Jeffery was a kind of specific medical fruit plant attributed to the south China .

  25. 罗汉果皂甙是罗汉果提取物中抑制红细胞自氧化溶血及丙二醛(MDA)生成的主要的活性成分,它与提取物中其它组分具有清除羟基自由基和O2·的协同作用。

    Mogrosides were the main components that inhibit MDA and hemolysis of red blood cells , and also had synergetic effect with the other components of extracts on scavenging · OH and O · 2 radicals .

  26. 罗汉果(SiraitiaGrosvenorii)是单性、雌雄异株的葫芦科球根多年生植物,是特产于我国南部的重要经济植物。

    Luohanguo ( Siraitia grosvenorii ), a dioecious and perennial cucurbitaceae plant with root tubers , is an economically important species endemic to southern China .

  27. 罗汉果花中黄酮甙类化合物的抗氧化活性研究诺丽(NONI)果与叶中总黄酮的提取工艺

    Antioxidant Activity of Flavonol Glycosides of Siraitia Grosvenorii Flower Study on extracting method of flavonoid from fruit and leaf of morinda citrifolia

  28. 在黄家酒楼(ChefHuang),我们喝了由罗汉果冲泡的苦茶,品尝了孜然牛肉干,还点了牛肉面,酵母发过的面条放上辣子后,通红通红。

    At the Chef Huang restaurant , we drank bitter herbal tea made from the luo han guo gourd , ate beef jerky infused with cumin , and then beef noodle soup , scarlet red and powered by yeast and chillies .

  29. 为改进罗汉果组培技术,以脱毒植株带腋芽茎段作外植体,MS为基本培养基,分别添加LFS、N6-BA和KT进行单因子对比试验。

    The stem explants with one bud of Siraitia grosvenorii ( Swingle ) from the plant without virus were cultured on MS basal medium supplied with LFS or N ~ ( 6 ) - BA or KT , respectively .

  30. 从而得出在罗汉果花芽分化期间大量的可溶性糖、淀粉和可溶性蛋白质,相对较高的POD、PPO和PAL活性水平和相对较低酯酶(EST)活性水平可能对罗汉果组培苗的花芽分化有利。

    From the above , we can draw a conclusion that a large number of solubility sugar , starch and solubility protein , relatively high reactive level of POD , PPO and PAL , and relatively low reactive level of EST might be favorable to the flower bud formation .