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LED光源对非洲菊离体培养及光响应基因表达的影响

ABBREVIATIONS第8-11页
ABSTRACT第11-14页
摘要第15-22页
CHAPTER 1 INTRODUCTION第22-33页
    1.1 Gerbera第23-24页
    1.2 Effects of light on plant growth第24-33页
        1.2.1 Light emitting diodes第24-27页
        1.2.2 Photomorphogenesis第27页
        1.2.3 Photoreceptor第27-33页
CHAPTER 2 EFFECTS OF LED LIGHT ON IN VITRO CULTURE OF GERBERA第33-53页
    2.1 Effects of LED light on Callus induction of gerbera第33-41页
        2.1.1 Materials and Methods第33-34页
        2.1.2 Results第34-41页
    2.2 Effects of LED light on shoot proliferation of gerbera plantlets第41-46页
        2.2.1 Materials and Methods第41-42页
        2.2.2 Results第42-45页
        2.2.3 Discussion第45-46页
    2.3 Effects of LED light on root formation of gerbera plantlets第46-53页
        2.3.1 Materials and Methods第46-47页
        2.3.2 Results第47-51页
        2.3.3 Discussion第51-53页
CHAPTER 3 EFFECTS OF LED LIGHT ON PHYSIOLOGICAL ANDBIOCHEMICAL CHANGES OF GERBERA PLANTLETS第53-68页
    3.1 Materials and Methods第53-55页
        3.1.1 Culture medium and conditions第53-54页
        3.1.2 Chlorophyll fluorescence第54页
        3.1.3 Chlorophyll content第54页
        3.1.4 Stomatal density第54-55页
        3.1.5 Soluble sugar contents第55页
    3.2 Results第55-64页
        3.2.1 Effects of LED on chlorophyll fluorescence of gerbera plantlets第55-58页
        3.2.2 Effects of LED on chlorophyll content of gerbera plantlets第58-60页
        3.2.3 Effects of LED on stomatal density of gerbera plantlets第60-62页
        3.2.4 Effects of LED on soluble sugars of gerbera plantlets第62-64页
    3.3 Discussion第64-68页
        3.3.1 Effects of LED on chlorophyll fluorescence of gerbera plantlets第64-65页
        3.3.2 Effects of LED on chlorophyll content of gerbera plantlets第65-66页
        3.3.3 Effects of LED on stomatal density of gerbera plantlets第66-67页
        3.3.4 Effects of LED on soluble sugars of gerbera plantlets第67-68页
CHAPTER 4 GENE CLONING AND BIOINFORMATICS ANALYSIS OF LIGHTRESPONSIVE GENES IN GERBERA第68-93页
    4.1 Materials and Methods第68-74页
        4.1.1 Designing primers第69-70页
        4.1.2 RNA isolation and cDNA synthesis第70-71页
        4.1.3 Primer optimization using PCR第71-72页
        4.1.4 Gel electrophoresis第72-73页
        4.1.5 Gel extraction第73页
        4.1.6 TA Cloning第73-74页
    4.2 RESULTS第74-92页
        4.2.1 PCR cloning第74-75页
        4.2.2 Analysis of CRY1, CRY2 and PHYA in transcription data第75-76页
        4.2.3 Homologous analysis of CRY1,CRY2 and PHYA第76-79页
        4.2.4 Phylogenetic analysis第79-80页
        4.2.5 The basic physical and chemical properties of protein analysis第80-81页
        4.2.6 Protein hydrophobicity/hydrophilicity prediction and analysis第81-82页
        4.2.7 Protein signal peptide prediction analysis第82-84页
        4.2.8 Protein subcellular localization analysis第84页
        4.2.9 Protein transmembrane structure analysis第84-86页
        4.2.10 Protein conserved domain prediction第86-87页
        4.2.11 Analysis of coiled coil structure of protein第87-88页
        4.2.12 Protein secondary structure prediction第88-90页
        4.2.13 Protein three-dimensional structure prediction第90-92页
    4.3 Discussion第92-93页
CHAPTER 5 EXPRESSION OF LIGHT RESPONSIVE GENES IN GERBERA第93-103页
    5.1 Materials and Methods第93-96页
        5.1.1 Designing primers第93-94页
        5.1.2 RNA isolation第94页
        5.1.3 RNA extraction and reverse transcription第94-95页
        5.1.4 Quantitative Polymerase Chain Reaction (qPCR) analysis第95-96页
    5.2 RESULTS第96-101页
        5.2.1 Gene expression analysis of CRY1 and CRY2 using quantitative PolymeraseChain Reaction第96-98页
        5.2.2 Effects of LED on the expression of PHYA, CRY1 and CRY2第98-101页
    5.3 Discussion第101-103页
CHAPTER 6 CONCLUSION AND OUTLOOK第103-105页
REFERENCES第105-116页
APPENDIX第116-122页
PAPER PUBLICATION第122-123页
ACKNOWLEDGEMENTS第123页

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