首页--农业科学论文--园艺论文--茄果类论文--辣椒论文

亏缺灌溉对基质培辣椒生长、产量和品质及辣椒素合成的影响

博士学位论文评阅人、答辩委员会签名表第5-6页
摘要第6-8页
Abstract第8-9页
Abbreviations第15-16页
CHAPTER 1:INTRODUCTION第16-26页
    1.1 Pepper(Capsicum)第16页
    1.2 Classification第16-17页
    1.3 Pepper Production in the World第17页
    1.4 Fruit Contents第17-21页
        1.4.1 Vitamin C第17-18页
        1.4.2 Capsiacinoids第18-19页
        1.4.3 Capsaicinoid Biosynthesis第19-20页
        1.4.4 Applications of Capsaiciniods第20页
        1.4.5 A biotic Stress and Capsaiciniods第20页
        1.4.6 Temperature第20-21页
        1.4.7 Light Density第21页
        1.4.8 Water Deficit第21页
    1.5 Water Management第21-23页
        1.5.1 Deficit Irrigation第21-22页
        1.5.2 Advantages of Deficit Irrigation第22页
        1.5.3 Plant Adaptation to Deficit Irrigation第22-23页
    1.6 Soilless Culture第23-24页
        1.6.1 Categories of Soilless Culture第23页
        1.6.2 Substrate Culture第23页
        1.6.3 Water Culture(Hydroponics)第23-24页
        1.6.4 Advantages of Soilless Culture第24页
    1.7 Significance of the Study第24-25页
    1.8 Objectives of the Study第25-26页
CHAPTER 2:Cotton Stalk Compost:A Perfect Addition to Low-Quality Substrate第26-36页
    2.1 Summary第26页
    2.2 Introduction第26-27页
    2.3 Materials and Methods第27-30页
        2.3.1 Collection of Materials第27-28页
        2.3.2 Treatments and Experimental Design第28页
        2.3.3 Measurements第28页
        2.3.4 Physical properties第28页
        2.3.5 Bulk Density(BD)第28-29页
        2.3.6 Air Space(AS),Water Holding Capacity(WHC)and Total Porosity(TP)第29页
        2.3.7 Chemical properties第29-30页
        2.3.8 Statistical analysis第30页
    2.4 Results第30-33页
        2.4.1 Physical properties第30-31页
        2.4.2 Chemical properties第31-33页
    2.5 Discussion第33-35页
    2.6 Conclusions第35-36页
CHAPTER 3:Deficit Irrigation Affects Growth,Yield,and Irrigation Water Use Efficiency of HotPepper grown in Soilless Culture第36-48页
    3.1 Summary第36页
    3.2 Introduction第36-37页
    3.3 Materials and Methods第37-40页
        3.3.1 Growing Media and Plant Materials第37-38页
        3.3.2 Fertilization第38页
        3.3.3 Irrigation Treatments第38页
        3.3.4 Experimental Design第38页
        3.3.5 Measurements第38页
        3.3.6 Morphological characteristics第38-39页
        3.3.7 Harvesting and Fruit Parameters第39页
        3.3.8 Irrigation Water Use Efficiency第39页
        3.3.9 Water Saving%第39-40页
        3.3.10 Statistical Analysis第40页
    3.4 Results第40-45页
        3.4.1 Morphological Characteristics第40-41页
        3.4.2 Days to Flower set and First Harvesting第41页
        3.4.3 Fruit parameters during periods of harvesting第41-42页
        3.4.4 Fresh fruit Yield and Total Yield第42-43页
        3.4.5 Reduction in yield,Saving water and Irrigation water use efficiency第43-44页
        3.4.6 Root Characteristics第44-45页
    3.5 Discussion第45-47页
    3.6 Conclusion第47-48页
CHAPTER 4:Physiological and Biochemical Responses under Deficit Irrigation in Hot peppergrown in Substrates第48-63页
    4.1 Summary第48页
    4.2 Introduction第48-50页
    4.3 Materials and Methods第50-53页
        4.3.1 Growing Media and Plant Materials第50页
        4.3.2 Fertilization第50页
        4.3.3 Irrigation Treatments and Experimental Design第50页
        4.3.4 Measurements第50页
        4.3.5 Physiological Parameters第50-51页
        4.3.6 Chlorophyll content第51页
        4.3.7 Net Photosynthetic rate第51页
        4.3.8 Biochemical Parameters第51页
        4.3.9 Antioxidant Enzymes Assay第51页
        4.3.10 Superoxide Dismutase(SOD)Activity第51-52页
        4.3.11 Catalase(CAT)Activity第52页
        4.3.12 Peroxidase(POD)Activity第52页
        4.3.13 Lipid Peroxidation第52-53页
        4.3.14 Root Activity第53页
        4.3.15 Statistical Analysis第53页
    4.4 Results第53-60页
        4.4.1 Physiological Parameters第53页
        4.4.2 Chlorophyll content第53-54页
        4.4.3 Net photosynthetic rate第54-55页
        4.4.4 Biochemical Parameters第55页
        4.4.5 Antioxidant Enzyme Activities第55页
        4.4.6 Superoxide Dismutase(SOD)Activity第55-56页
        4.4.7 Catalase(CAT)Activity第56-57页
        4.4.8 Peroxidise(POD)Activity第57-58页
        4.4.9 Malondialdehyde(MDA)contents第58-59页
        4.4.10 Root Activity第59-60页
    4.5 Discussion第60-62页
    4.6 Conclusion第62-63页
CHAPTER 5:Deficit Irrigation Affects Accumulation of Vitamin C,Capsaicinoids and itsSynthesis in fruits of Hot Pepper grown in Soilless Culture第63-91页
    5.1 Summary第63-64页
    5.2 Introduction第64-67页
    5.3 Materials and Methods第67-77页
        5.3.1 Growing Media and Plant Materials第67页
        5.3.2 Irrigation Treatments第67页
        5.3.3 Experimental Design第67页
        5.3.4 Measurements第67页
        5.3.5 Vitamin C content第67-68页
        5.3.6 Measuring Capsaiciniod Contents第68页
        5.3.7 Standard solution of Capsaicin and Dihydrocapsaicin第68-69页
        5.3.8 The Enzymes Activities Assay第69-70页
        5.3.9 Measuring Phenylalanine Ammonia-Lyase(PAL)Activity第70页
        5.3.10 Measuring Cinnamic acid-4-hydroxylase(CA4H)Activity第70-71页
        5.3.11 P-coumaric acid-3-hydroxylase(CA3H)Activity第71-72页
        5.3.12 Caffeic acid-o-methytranferase CAOMT Activity第72-73页
        5.3.13 Measuring Capsaicin Synthase CS Activity第73页
        5.3.14 Measuring Peroxidase Activity第73-74页
        5.3.15 Protein Assay第74-75页
        5.3.16 Expression Analysis of csyl gene by qRT-PCR第75页
        5.3.17 RNA Extraction第75-76页
        5.3.18 Primers Design第76页
        5.3.19 Quantitative RT-PCR第76-77页
        5.3.20 Statistical Analysis第77页
    5.4 Results第77-87页
        5.4.1 Vitamin C content第77-78页
        5.4.2 Capsaiciniod Contents第78页
        5.4.3 Capsaicin content第78-79页
        5.4.4 Dihydrocapsaicin content第79-80页
        5.4.5 Enzymes Activities第80页
        5.4.6 Phenylalanine Ammonia-Lyase(PAL)Activity第80-81页
        5.4.7 Cinnamic acid-4-hydroxylase(CA4H)Activity第81-82页
        5.4.8 P-coumaric acid-3 hydroxylase(CA3H)Activity第82-83页
        5.4.9 Caffeic acid-o-methytranferase(CAOMT)Activity第83-84页
        5.4.10 Capsaicin synthase(CS)Activity第84-85页
        5.4.11 Peroxidase Activity第85-86页
        5.4.12 Expression of csy1gene第86-87页
    5.5 Discussion第87-91页
CONCLUSION第91-93页
REFRENCES第93-110页
ACKNOWLEDGMENTS第110-111页
CURRICULUM VITAE第111-112页

论文共112页,点击 下载论文
上一篇:我国统筹城乡就业的制度创新研究
下一篇:水中高氯酸盐的分析方法及其光催化还原去除的研究