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APOPTOSIS AND TAXOL PRODUCTION IN SUSPENSION CULTURES OF Taxus spp.CELLS 被引量:2

APOPTOSIS AND TAXOL PRODUCTION IN SUSPENSION CULTURES OF Taxus spp.CELLS
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摘要 The hallmark of apoptosis, in suspension cultures of Taxus spp. cells induced by fungal extractive or by abiotic means, was studied by total DNA agarose gel electrophoresis and in situ end-labeling. The cleavage of nuclear DNA (nDNA) into oligonucleosomal fragments(DNA laddering) was a characteristic of apoptosis, which involved cell shrinkage, condensation of cytoplasm and tracheary elements differentiation. Terminal deoxynucleotidy transferase-mediated dUTP nick end in situ labeling (TUNEL) assay of Taxus spp. cells showed that fungal extractive or abiotic elicltors (Ce4+, Taxol, H2O2) induced TUNEL positive. Also, the increase of the apoptotic cell ratio was accompanied by the increase of secondary metabolites (especially Taxol). These results suggest that apoptosis may have some coincidence with biosynthesis of Taxol. The implication of apoptosis for the production of secondary metabolites in plant cell cultures is discussed. The hallmark of apoptosis, in suspension cultures of Taxus spp. cells induced by fungal extractive or by abiotic means, was studied by total DNA agarose gel electrophoresis and in situ end-labeling. The cleavage of nuclear DNA (nDNA) into oligonucleosomal fragments(DNA laddering) was a characteristic of apoptosis, which involved cell shrinkage, condensation of cytoplasm and tracheary elements differentiation. Terminal deoxynucleotidy transferase-mediated dUTP nick end in situ labeling (TUNEL) assay of Ta...
出处 《化工学报》 EI CAS CSCD 北大核心 2000年第S1期43-46,共4页 CIESC Journal
关键词 APOPTOSIS TAXOL suspension culture Taxus spp. apoptosis Taxol suspension culture Taxus spp.
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  • 1Havel L,Durzan D.J.Apoptosis during diploid parthenogenesis andearly somatic embyrogenesis of Norway spruce[].International Journal of Plasticity.1996
  • 2Rodi D.J.Janes KW, Sanganee HJ.Holton, R.A.Wallace B.A.Makowski L. Screening of a library of phage-displayed peptides identifies human Bcl-2 as a taxol-binding protein[].Journal of Molecular Biology.1999

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