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愈伤组织     
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  callus
     Study on Genetics of Callus Induction,And Plant Regeneration from Immature Inflorescences among Chinese Wheat(Triticum aestivum L.)Varieties
     小麦(Triticum aestivum L.)幼穗愈伤组织形成和植株再生能力的基因型变异及其遗传基础的研究
短句来源
     Studies on the Granule Callus Suspension Culture System and Biosynthesis,Regulation and Biotransformation of Resveratrol in Polygonum Cuspidatum
     虎杖颗粒愈伤组织悬浮培养体系建立与白藜芦醇的生物合成、调控及生物转化研究
短句来源
     STUDIES ON TISSUE CULTURE OF MEDICINAL PLANTS——Ⅰ.CALLUS CULTURES OF SCOPOLIA ACUTANGULA FOR THE PRODUCTION OF HYOSCYAMINE AND SCOPOLAMINE
     药用植物组织培养的研究 Ⅰ.三分三(Scopolia acutangula)愈伤组织的培养及莨菪碱、东莨菪碱的产生
短句来源
     Studies on Callus Formation and Plantlet Regeneration of the Pith Tissue in Lettuce (Lactuca Sativa L.)
     莴苣(Lactuca sativa L.)髓组织的愈伤组织形成和植株再生的研究
短句来源
     LYSINE-ANALOG-RESISTANT MUTANT INDUCED FROM TOBACCO CALLUS
     抗赖氨酸类似物的烟草愈伤组织突变体
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  calli
     DNA Content Variation of Calli, Somatic Embryogenesis and Induction of Autotetraploid in Citrus
     柑橘愈伤组织DNA含量变异、体细胞胚胎发生及同源四倍体的诱导研究
短句来源
     Plant Regeneration from Hypocotyl and Pollen Calli in Octoploid Rape "Victory
     八倍体胜利油菜下胚轴和花粉愈伤组织的植株再生
短句来源
     VARIATION OF MAIZE PLANT REGENERATED FROM CALLI OF IMMATURE EMBRYOS
     玉米幼胚愈伤组织再生植株的变异
短句来源
     The Effect of γ Ray and Early Blight Fungitoxin on the Growth of Tomato Calli
     γ射线和早疫病菌毒素对番茄愈伤组织生长的影响
短句来源
     For-mation and Differentiation of Calli in the Grafted Seedling of Masson Pine
     马尾松嫁接愈伤组织的形成与分化
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  callus tissue
     The findings show that MS+6-BA 0.25 mg/L+NAA 0.5 mg/L is the best culture medium in the callus tissue forming;
     结果表明:诱导愈伤组织形成的以MS+6-BA0.25mg/L+NAA0.5mg/L培养基最好;
短句来源
     This article discusses the inducing of callus tissue and regenerating of the plant in Pinellia ternata. Callus tissue could be induced in the MS medium with 2,4—D 1.5mg/L and ZEN 0.1mg/L and seedling could be differentiated in the MS medium with 6—BA 2mg/L and NAA. 0.1mg/L.
     本文对半夏愈伤组织的诱导及植株再生进行了研究,结果在加有2,4-D1.5mg/L和ZEA0.1mg/L的MS培养基上诱导出愈伤组织,在加有6-BA 2mg/L和NAA 0.1mg/L的MS培养基上分化出小苗。
短句来源
     (2) Establishing the optimization induction medium of callus tissue II: MS+4mg/L 2.4-D+750mg/L L-Pro+250mg/LCH+250mg/L L-Glu+1 Omg/L AgNO3,30g/L sucrose, 0.8%agar.
     (2)确定了最佳Ⅱ型愈伤组织诱导培养基为:MS+4mg/L 2,4-D+750mg/l L-脯氨酸+250mg/L水解酪蛋白+250mg/L谷氨酰胺+10mg/L AgNO_3,30g/L蔗糖,0.8%琼东北农业大学理学硕l一学位论文
短句来源
     Added 1.0-1.5mg/L 2,4-D or 1.5-2.0mg/L KT, the inductive rates of callus tissue was highest, and the growth was well.
     在MS培养基上添加1.0-1.5mg/L的2,4-D或1.5-2.0mg/L KT,愈伤组织诱导率高,生长好。
短句来源
     Leaf explants cultured on half strength MS medium with 6-BA0.5mg/L plus IBA1.0mg/L or NAA 0.5mg/L for 4 weeks can induced callus tissue effectively,and adventitious buds can be induced from these callus tissue on half strength MS medium with 6-BA1.0mg/L and NAA0.1mg/L.
     研究发现,以桉树叶片为材料,在1/2MS+6-BA0.5mg/L+IBA1.0mg/L或NAA0.5mg/L培养基上进行愈伤组织诱导,愈伤率在90%以上;
短句来源
更多       
  callus induction
     Study on Genetics of Callus Induction,And Plant Regeneration from Immature Inflorescences among Chinese Wheat(Triticum aestivum L.)Varieties
     小麦(Triticum aestivum L.)幼穗愈伤组织形成和植株再生能力的基因型变异及其遗传基础的研究
短句来源
     CALLUS INDUCTION AND ORGAN FORMATION FROM YOUNG LEAF OF WHEAT (TRITICUM AESTIVUM)
     小麦(Triticum aestivum)幼叶愈伤组织的诱导及器官的形成
短句来源
     EMBRYO CULTURE,CALLUS INDUCTION AND BUD FORMATION ON CALLUS OF CATHAYA ARGYROPHYLLA
     银杉(Cathaya argyrophylla)的胚培养,愈伤组织诱导和愈伤组织上芽的分化
短句来源
     CALLUS INDUCTION AND PLANTLET REGENERATION FROM YOUNG STEM SEGMENTS OF POTATO (SOLANUM TUBEROSUM L.)
     马铃薯(Solanum tuberosum L.)幼茎(芽)愈伤组织的诱导和植株再生(简报)
短句来源
     CALLUS INDUCTION AND PLANT REGENERATION IN TISSUE CULTURE OF FRITILLARIAE PALLIDIFLORAE
     伊贝母(Fritillariae pallidiflorae)愈伤组织的诱导和植株再生的研究
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  callus
Two biologically active compounds, the enzyme superoxide dismutase (EC 1.15.1.1) and the anti-arhythmic indole alkaloid ajmaline, were isolated from a callus culture of Rauwolfia serpentinaBenth.
      
The contents of macroelements and microelements in ginseng roots and callus cultures was determined by atom absorption spectroscopy.
      
The content of six of the eleven mineral components studied (K, Ca, Na, Mo, Mn, and Cr) in callus cultures was higher than that in roots of agricultural ginseng plants.
      
The accumulation of intracellular protein by the callus culture of Rauwolfia serpentinaBenth.
      
Isolation of Polysaccharides from the Callus Culture of Lemna minor L.
      
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  calli
Wheat Androgenic Embryoids and Calli: Data of Scanning Electron Microscopy
      
The surface of wheat androgenic embryoids and calli at different developmental stages was studied using SEM.
      
The embryoids were already characterized by regular cell divisions at the early developmental stages, while the calli were represented by irregular cell conglomerates.
      
Polypeptide Composition of Tatary Buckwheat (Fagopyrum tataricum(L.) Gaertn.) Calli Differing in Their Morphogenic Potential
      
Glycosylated Proteins of Tatar Buckwheat Calli with Different Morphogenic Potential
      
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  callus tissue
The optimal combination of phytohormones for the growth of callus tissue was 1 mg/l 2,4-dichlorophenoxyacetic acid and 0.5 mg/l BAP.
      
It was demonstrated that subcultivated callus tissue contained red pigments of flavonoid nature.
      
Polynucleate Cells in the Callus Tissue of Taxus baccataL.
      
A comparative morphological study was conducted ofNostoc muscorum CALU 304 grown either as a pure culture on standard media or as a mixed culture withRauwolfia callus tissue on a medium for plant tissue cultivation.
      
Changes have also been found in Stachysplants regenerating from the callus tissue.
      
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  callus induction
The Murashige and Skoog medium complemented with myoinositol and casein hydrolysate is suitable for embryogenic callus induction.
      
The Effect of Rye Chromosomes on Callus Induction and Regeneration in Callus Cultures of Immature Embryos of Wheat-Rye Substitut
      
98% of callus induction occurred in nondormant corm bud explants.
      
The addition of AgNO3 significantly improved embryogenic callus frequency and callus growth, but reduced the necroses and almost did not affect callus induction frequencies.
      
Strong genotypic effects on callus induction, embryogenic callus formation, and necrosis frequency were observed.
      
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