[1] 陈瑞楠. 渤海湾卤虫生物学特性及其对环境因子和营养因子的响应[D]. 天津:天津农学院,2015. [2] LAVENS P,SORGELOOS P.The history,present status and prospects of the availability of Artemia cysts for aquaculture[J]. Aquaculture,2000,181:397-403. [3] 侯林,邹向阳,姚锋. 卤虫的生物学研究[J]. 生物学通报,2005(7):7-9,66. [4] 赵素芬,阮俊锋,向志勇. 3种海藻单一或混合投喂对卤虫的饵料效果研究[J]. 海洋湖沼通报,2007(2):121-126. [5] 孙存顿,李青,刘修业,等. 几种藻对卤虫养殖效果的比较研究[J]. 南开大学学报(自然科学),1995,28(1):102-104. [6] 宋雨晴. 海洋单胞藻培养条件优化及对卤虫生长发育的影响[D]. 扬州:扬州大学,2018. [7] 茹文红. 饵料对卤虫生长及消化性能的影响[D]. 上海:上海海洋大学,2018. [8] 陈家鑫. 裂壶藻及其制品在水产苗种培育中的应用[J]. 科学养鱼,2002(6):53. [9] 苏琳. 酵母培养物和蛋氨酸强化卤虫无节幼体及对其生长和体成分的影响[D]. 长春:吉林农业大学,2013. [10] 张跃群,陈爱华,张雨,等. 微藻营养强化对卤虫生长和营养成分的影响[J]. 中国农业大学学报,2018,23(8):77-84. [11] 叶映如. 生物监测在环境监测中的有效运用[J]. 企业技术开发,2015,34(29):57-59. [12] EDISON B,ALINE M Z M,MARCELO B H. Oxygen consumption and ammonia excretion of juvenile pink shrimp(Farfantepenaeus paulensis)in culture:Temperature effects[J]. Marine and Freshwater Behaviour and Physiology,2016,49(1):19-25. [13] AARSET A V,AUNAAS T.Effects of osmotic stress on oxygen consumption and ammonia excretion of the Arctic sympagic amphipod Gammarus wilkitzkii[J]. Marine Ecology Progress Series,1990,58:217-224. [14] CHEN J C,LAI S H.Effects of temperature and salinity on oxygen consumption and ammonia-N excretion of juvenile Penaeus japonicus Bate[J]. Journal of Experiment,1993,165(2):161-170. [15] FREIRE C A,RIOS L P,GIARETA E P,et al.Oxygen consumption remains stable while ammonia excretion is reduced upon short time exposure to high salinity in Macrobrachium acanthurus(Caridae:Palaemonidae),a recent freshwater colonizer[J]. Zoologia(Curitiba),2017,34:1-9. [16] SUI L,DENG Y,WANG J,et al.Impact of brine acidification on hatchability,survival and reproduction of Artemia parthenogenetica and Artemia franciscana in salt ponds,Bohai Bay,China[J]. Chinese Journal of Oceanology and Limnology,2014,32(1):81-87. [17] TAYLOR E W.Control and co-ordination of ventilation and circulation in crustaceans:Responses to hypoxia and exercise[J]. Journal of Experimental Biology,1982,100(1):289-319. [18] 刘伟,王芳,钟大森,等. 光色对中国明对虾(Fenneropenaeus chinensis)稚虾耗氧率昼夜变化节律的影响[J]. 海洋湖沼通报,2011(3):27-31. [19] GONÇALVES A L,SIMÕES M,PIRES J C M. The effect of light supply on microalgal growth,CO2 uptake and nutrient removal from wastewater[J]. Energy Conversion and Management,2014,85:530-536. [20] RAUL M,BENOIT G.Algal-bacterial processes for the treatment of hazardous contaminants:A review[J]. Water Research,2006,40(15):2799-2815. [21] 张文慧,高金伟,姜智飞,等. 海洋微藻保存方法的研究进展[J]. 天津农学院学报,2016,23(4):55-57. [22] 李亚男,辛乃宏. 卤虫养殖技术现状及影响因素[J]. 海湖盐与化工,2003(5):25-28. [23] 蒋湘曹,家辉,文赵明,等. 不同饵料对日本囊对虾的生长与存活的影响[J]. 水产养殖,2018,39(1):8-12. [24] 薄香兰,刘兴,窦勇,等. 小球藻生长因子CGF的研究与应用进展[J]. 天津农学院学报,2018,25(1):86-89. [25] 张登沥,刘其根. 饵料对卤虫生长和生殖的影响[J]. 上海海洋大学学报,2000,9(2):93-96. [26] 潘鲁青,王克行. 中华绒螯蟹幼体消化酶活力与氨基酸组成的研究[J]. 中国水产科学,1997,2(4):13-19. [27] CLEGG J S,CONTE F P.A review of the cellular and developmental biology of Artemia[J]. The Brine Shrimp Artemia,1980,2:11-54. [28] NACEUR H B,JENHANI A B R,ROMDHANE M S. Impacts of salinity,temperature,and pH on the morphology of Artemia salina(branchiopoda:Anostraca)from Tunisia[J]. Zoological Studies,2012,51(4):453-462. [29] 刘爱英,马建新. 盐度,pH及孵化时间对卤虫孵化率的影响[J]. 海洋渔业,2000,22(1):37. [30] 刘亚娟,周胜杰,胡静,等. 水产动物环境胁迫研究进展[J]. 天津农学院学报,2018,25(4):70-76. [31] FRANK H H,TERRY W S.Plankton culture manual[M]. Dade:Florida Aqua Farms,2004. [32] 丁红霞,景素琴,范佩丽,等. 光照、温度及盐度对卤虫(Artemia salina)耗氧率与排氨率的影响[J]. 盐科学与化工,2019,48(1):19-24. [33] WANG J Q,HOU L,YI N,et al.Molecular analysis and its expression of a pou homeobox protein gene during development and in response to salinity stress from brine shrimp,Artemia sinica[J]. Comparative Biochemistry & Physiology Part A:Molecular & Integrative Physiology,2012,161(1):36-43. [34] 李荣超,隋丽英,张波,等. 天津塘沽盐场卤虫种群生态调查[J]. 天津科技大学学报,2018,33(5):57-62. [35] 魏文志,陈立. 光合细菌在卤虫饵料中的应用[J]. 水产科学,2004(7):15-17. [36] 廖永岩,夏营顺,何碧华. 不同投饵密度对卤虫高密度养殖的影响[J]. 安徽农业科学,2011,39(26):16149-16153,16179. [37] 欧阳娟,薛松磊,徐妍,等. 环境因素对丰年虾孵化的影响及孵化条件优化[J]. 中国饲料,2018(18):83-86. |