As a natural yellow pigment,lutein is widely used in the human food and forage.A lot of wastewater is generated in this industry.It is urgent to deal with fermentative marigold wstewater for lutein industry.How to pro...As a natural yellow pigment,lutein is widely used in the human food and forage.A lot of wastewater is generated in this industry.It is urgent to deal with fermentative marigold wstewater for lutein industry.How to process the wastewatwer is more important.Centre on the process of fermentative marigold wstewater,used by polyaluminium chloride to flocculate,active carbon to bleach,then evaporating in the vacuum state and getting lactic acid finally.展开更多
Marigold ( Tagetes erecta) originated in South America is the main raw material of lutein, which plays a vital role in treating maeula lutea retinae, im- proving immunity and delaying aging. Black spot is the main d...Marigold ( Tagetes erecta) originated in South America is the main raw material of lutein, which plays a vital role in treating maeula lutea retinae, im- proving immunity and delaying aging. Black spot is the main disease reducing marigold production. This paper concluded occurrence and damage of black spot, the species and symptoms of pathogens, pathogenic factors, selection of disease-resistant varieties and effective means against black spot, and made a briefly analysis of the existing problems and the corresponding solutions, in order to provide a theoretical basis for disease-resistant breeding of marigold.展开更多
文摘As a natural yellow pigment,lutein is widely used in the human food and forage.A lot of wastewater is generated in this industry.It is urgent to deal with fermentative marigold wstewater for lutein industry.How to process the wastewatwer is more important.Centre on the process of fermentative marigold wstewater,used by polyaluminium chloride to flocculate,active carbon to bleach,then evaporating in the vacuum state and getting lactic acid finally.
基金Supported by Innovation Fund of Beijing Academy of Agriculture and Forestry Science(KJCX20140109,KJCX20140202)Technology Innovation Team Fund of Beijing Academy of Agriculture and Forestry Science(KJCXTD201308)Flower Breeding Innovation Platform Project of Beijing Municipal Bureau of Landscape and Forestry
文摘Marigold ( Tagetes erecta) originated in South America is the main raw material of lutein, which plays a vital role in treating maeula lutea retinae, im- proving immunity and delaying aging. Black spot is the main disease reducing marigold production. This paper concluded occurrence and damage of black spot, the species and symptoms of pathogens, pathogenic factors, selection of disease-resistant varieties and effective means against black spot, and made a briefly analysis of the existing problems and the corresponding solutions, in order to provide a theoretical basis for disease-resistant breeding of marigold.
文摘为解析槲皮万寿菊素、槲皮素与叶黄素单独处理以及联合处理对急性肺损伤的作用机制,以脂多糖诱导构建RAW264.7细胞炎症模型,以一氧化氮(nitric oxide,NO)相对含量为评价指标,采用联合指数法确定槲皮万寿菊素与叶黄素以及槲皮素与叶黄素的最佳复配比例;分析比较槲皮万寿菊素、槲皮素与叶黄素单独及联合处理对RAW264.7细胞中炎症因子(肿瘤坏死因子-α、白细胞介素(interleukin,IL)-1β、IL-6)含量、丙二醛含量、超氧化物歧化酶活性以及谷胱甘肽过氧化物酶活性的影响;采用免疫印迹法测定核因子κB(nuclear factor kappa-B,NF-κB)信号通路中p65、p50以及沉默信息调节因子1(silent information regulator 1,SIRT1)、核因子E2相关因子2(nuclear factor-erythroid 2 related factor 2,Nrf2)和NOD样受体热蛋白结构域相关蛋白3(NOD-like receptor thermal protein domain associated protein 3,NLRP3)的相对表达量。结果表明,槲皮万寿菊素与叶黄素高剂量3∶1(30μg/mL+10μg/mL)复配能够最大程度降低RAW264.7细胞中的NO相对含量。二者单独及联合作用均能通过降低炎症因子、丙二醛含量,提高超氧化物歧化酶和谷胱甘肽还原酶活性,下调NF-κB p65、p50以及NLRP3表达水平并上调SIRT1、Nrf2蛋白相对表达量发挥改善急性肺损伤的作用,且联合处理效果优于单独处理组。