[1] 于馨恒. 化学诱导剂对雨生红球藻合成虾青素的影响及其机理研究[D]. 天津:天津大学,2015. [2] Zhang Z,Wang B,Hu Q,et al.A new paradigm for producing astaxanthin from the unicellular green alga\r Haematococcus pluvialis[J]. Biotechnology and Bioengineering,2016,113(10):2088-2099. [3] Guerin M,Huntley M E,Olaizola M.Haematococcus astaxanthin: applications for human health and nutrition[J]. Trends in Biotechnology,2003,21(5):210-216. [4] Yuan J P,Peng J,Yin K,et al.Potential health-promoting effects of astaxanthin: a high-value carotenoid mostly from microalgae[J]. Molecular Nutrition & Food Research,2011,55(1):150-165. [5] Jiang X,Zhu K,Xu Q,et al.The antidepressant-like effect of trans-astaxanthin involves the serotonergic system[J]. Oncotarget,2017,8(15):25552-25563. [6] Xue X L,Han X D,Li Y,et al.Astaxanthin attenuates total body irradiation-induced hematopoietic system injury in mice via inhibition of oxidative stress and apoptosis[J]. Stem Cell Research & Therapy,2017,8(1):7. [7] Gwak Y,Hwang Y S,Wang B,et al.Comparative analyses of lipidomes and transcriptomes reveal a concerted action of multiple defensive systems against photooxidative stress in Haematococcus pluvialis[J]. Journal of Experimental Botany,2014,65(15):4317. [8] Boussiba S.Carotenogenesis in the green alga Haematococcus pluvialis : cellular physiology and stress response[J]. Physiologia Plantarum,2010,108(2):111-117. [9] Gao Z,Li Y,Wu G,et al.Transcriptome analysis in Haematococcus pluvialis: astaxanthin induction by Salicylic Acid(SA)and Jasmonic Acid(JA)[J]. Plos One,2015,10(10):e0140609. [10] Chen G,Wang B,Han D,et al.Molecular mechanisms of the coordination between astaxanthin and fatty acid biosynthesis in Haematococcus pluvialis(Chlorophyceae)[J]. Plant Journal,2015,81(1):95-107. [11] 齐安翔. 高产虾青素的雨生红球藻培养基及培养模式的若干研究[D]. 厦门:厦门大学,2006. [12] 才金玲,欧阳泽瑞,陈国兴,等. 光照强度对雨生红球藻细胞生长和虾青素积累的影响[J]. 食品科技,2013,38(1):20-25. [13] Harker M,Young A J.Inhibition of astaxanthin synthesis in the green alga Haematococcus pluvialis[J]. European Journal of Phycology,1995,30(3):179-187. [14] Jiang M X,Liu M H,Shen Z Y.Effects of temperature illumination and salinity on astaxanthin accumulation in Haematococcus pluvialis aberrant species[J]. Journal of Fishery Sciences of China,2005,12(6):714-719. [15] Cordero B,Otero A,Patiño M,et al.Astaxanthin production from the green alga Haematococcus pluvialis with different stress conditions[J]. Biotechnology Letters,1996,18(2):213-218. [16] Boussiba S,Vonshak A.Astaxanthin accumulation in the green alga Haematococcus pluvialis[J]. Plant & Cell Physiology,1991,32(7):1077-1082. [17] Fábregas J,Domínguez A,Álvarez D G,et al.Induction of astaxanthin accumulation by nitrogen and magnesium deficiencies in Haematococcus pluvialis[J]. Biotechnology Letters,1998,20(6):623-626. [18] 张晓丽. 雨生红球藻抗氧化作用及藻粉质量安全性研究[D]. 青岛:中国科学院研究生院(海洋研究所),2006. [19] 王宝贝,张亚敏,蔡舒琳,等. 响应面法优化乙醇提取雨生红球藻中虾青素的工艺[J]. 食品科技,2017(10):239-243. [20] 徐建春,孙翰,张睿钦,等. 响应面分析法优化雨生红球藻产虾青素培养基[J]. 中国酿造,2014,33(12):72-75. [21] 樊晓盼,仇泓博,马俪珍. 响应面法优化牛骨肉蛋白液酶解工艺条件[J]. 天津农学院学报,2017,24(3):73-78. [22] 齐计英,姚依婧,岑琴,等. 响应面法优化雨生红球藻虾青素的超声提取工艺[J]. 食品工业科技,2015,36(6):313-316. [23] 刘晓娟,伍颖华,何凤林,等. 响应面法优化雨生红球藻中虾青素的提取条件[J]. 食品科技,2012(2):233-238. [24] 季晓敏,王亚男,徐嘉杰,等. 扫描电镜和响应面优化雨生红球藻破壁萃取虾青素的工艺研究[J]. 核农学报,2014,28(6):1052-1061. [25] 蒋霞敏,翟兴文,王丽,等. 雨生红球藻对紫外辐射的生理适应及超微结构变化[J]. 水产学报,2003,27(2):11-18. [26] Niizawa I,Espinaco B Y,Leonardi J R,et al.Enhancement of astaxanthin production from Haematococcus pluvialis under autotrophic growth conditions by a sequential stress strategy[J]. Biochemical & Biophysical Research Communications,2018,9:516. [27] Aburai N,Sumida D,Abe K.Effect of light level and salinity on the composition and accumulation of free and ester-type carotenoids in the aerial microalga Scenedesmus sp.(Chlorophyceae)[J]. Algal Research,2015,8:30-36. [28] Saeki K,Aburai N,Aratani S,et al.Salt-stress and plant hormone-like responses for selective reactions of esterified xanthophylls in the aerial microalga Coelastrella sp. KGU-Y002[J]. Journal of Applied Phycology,2017,29(1):115-122. |