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161.
为了解米碎花(Eurya chinensis)的化学成分及其生物活性,运用多种色谱技术从其乙醇提取物分离得到11个化合物,并对化合物进行体外抗鼻咽癌细胞增殖活性评价。经波谱数据分析,分别为异落新妇苷(1)、3,5,7-三羟基色原酮-3-O-α-L-鼠李糖苷(2)、1-O-反式-桂皮酰基-β-D-葡萄糖(3)、1-O-(4-羟基苯乙基)-6-O-反式-桂皮酰基-β-D-葡萄糖(4)、eutigoside D (5)、1-O-(3,4-二羟基苯乙基)-6-O-反式-香豆酰基-β-D-葡萄糖(6)、eutigoside A (7)、1-O-(4-羟基苯乙基)-6-O-反式-咖啡酰基-β-D-葡萄糖(8)、grayanoside A (9)、1-O-(4-羟基苯乙基)-6-O-(4-羟基苯甲酰基)-β-D-葡萄糖(10)、3-O-β-D-葡萄糖基-4-羟基-苄基苯甲酸酯(11)。其中,化合物4为首次从天然来源获得,化合物2~4和8~11均为首次从该属植物中分离得到。MTT法表明,化合物10具有中等抑制5-8F细胞增殖活性。 相似文献
162.
RICHARD D. ALLEN 《The Journal of eukaryotic microbiology》1984,31(1):1-6
Ten years of research on digestive vacuoles (phagosomes) of Paramecium caudatum have revealed sequential changes both within the vacuole lumen as well as within the surrounding membrane. Four vacuole stages can be recognized by a combination of thin section and freeze-fracture ultrastructural features. Three sets of vesicles (discoidal vesicles, acidosomes, and lysosomes) fuse with the vacuole, each at a predetermined stage, to bring about these membrane and physiological changes. At various times membrane is removed as vesicles from the vacuole surface, which has the effect of regulating vacuole size. Membrane recycling, membrane replacement, and specific membrane to membrane recognition all appear to be operating during the digestive cycle. Details of these events are summarized in this address and a number of unanswered questions suggest areas for future research. 相似文献
163.
Seasonal periodicity in the incidence of cowpea golden mosaic (CGM) and lima bean golden mosaic (LBGM), two whitefly-spread virus-like diseases, corresponded closely with fluctuations in population density of their vector, Bemisia tabaci, at two contrasting sites in southern Nigeria. Peak catches of the vector followed the onset of rains after very high temperatures during the dry season; populations declined abruptly with continuous, heavy rainfall. At Onne, B. tabaci infested legumes at emergence and remained and reproduced on them but at Ibadan infestation was delayed and there was no evidence of reproduction on legumes. B. tabaci preferred LBGM-susceptible lima beans (Phaseolus lunatus) to resistant ones and more pupae of B. tabaci occurred on CGM-susceptible cowpea (Vigna unguiculata) cultivars than on resistant ones but these observations did not relate to the yellow-sensitivity of whiteflies. Resistance to CGM in cowpea, and to LBGM in lima bean, was identified amongst germplasm exposed to natural infection. Resistance was, in each case, associated with lower disease incidence, slower spread and milder expression of symptoms relative to susceptible cultivars. Vector non-preference for resistant cultivars may have contributed to reduced secondary spread. 相似文献
164.
An investigation of developing skeletal muscle necessitatesthe study of three categories; the derivation of muscle cellsor fibers, myofilament synthesis and interactions, assemblyof myofilaments into functional sarcomeres of striated myofibrils.With few exceptions, skeletal muscle cells are of mesodermalorigin, and consist of rounded mononucleated cells which elongateand fuse with one another to become myotubes. Within the sarcoplasm,myofibrillar proteins are synthesized and grouped into interactingthick and thin filaments. Crude, non-striated myofibrils resultfrom linear arrangements of thick and thin filaments which arehorizontally aligned by the invaginating sarcotubular system.After Z-lines form, providing attachment sites for thin filaments,a typical banding pattern follows. The newly formed Z-linespull apart, followed by the attached thin filaments, and repeating"relaxed" sarcomeres are the resulting striated myofibrillarpattern. 相似文献
165.
Patterns of arbuscular mycorrhiza down the profile of a heavy textured soil do not reflect associated colonization potential 总被引:1,自引:0,他引:1
D. B. NEHL P. A. McGEE V. TORRISI G. S. PATTINSON & S. J. ALLEN 《The New phytologist》1999,142(3):495-503
Colonization of roots by arbuscular mycorrhizal (AM) fungi in several annual crops in two consecutive seasons was compared with, in the second season, the density of fungal propagules in the soil with the use of a bioassay. Root density decreased down the soil profile in both years in all crops, and a high proportion of roots were mycorrhizal throughout the profile. AM colonization decreased down the profile in cotton and lablab in the second season only. The bioassay indicated that most propagules of AM fungi in soils under cotton were located near the surface, with virtually no propagules at 1 m. The absence of propagules at depth indicates a lack of mycelium deep in the soil, and suggests that mycorrhizas are primarily initiated in the surface soil and that the fungi colonize the root system mostly through secondary spread down the profile. The use of AM colonization in the field as an indicator of propagule density and symbiotic function should be qualified by an understanding of the depth in the soil from which roots were extracted. 相似文献
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