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高温时期坛紫菜纯系育苗的对策 被引量:2

Effects of High Temperature on Seedling Conchocelis of Porphyra haitanensis
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摘要 针对坛紫菜贝壳丝状体在高温时期的培育方法进行了探索 .贝壳丝状体的培育是紫菜栽培的重要基础 ,不同纯系的贝壳丝状体生长有一定的差异 .遇到高温胁迫的情况 ,采用 10 0~ 30 0段 /cm2密度均匀撒播的接种方法比较适宜 ,控制光幅照度和温度的升高以及适当地减少缩光时间有利于优质苗育成率的提高 ,少施肥。 Culture conchocelis of Porphyra haitanensis can improve seedling quality. Different strains have different growth. The suitable density was 100~300 branch/cm 2. It is important to control the light intensity, temperature and the time of exposure. It is also helpful to control the apply of fertilizer and seawater rocycle.
出处 《宁波大学学报(理工版)》 CAS 2004年第4期393-396,共4页 Journal of Ningbo University:Natural Science and Engineering Edition
基金 宁波市科技局项目 (2 0 0 4C10 0 0 2 2 ) 宁波市海洋与渔业局项目 (2 0 0 4-1-92 )
关键词 坛紫莱 育苗 贝壳丝状体 Porphyra haitanensis seedling conchocelis
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  • 1裴鲁青,骆其君,费志清,马斌.浙江海区条斑紫菜养成适宜时期的研究[J].宁波大学学报(理工版),1996,9(3):141-148. 被引量:6
  • 2中科院海洋所藻类实验生态组.条斑紫菜的人工采苗养殖[J].中国科学,1976,(2):212-216.
  • 3李世英 崔广法.条斑紫英单孢子和壳孢子幼苗生长发育的初步观察[J].海洋与湖沼,1980,11(4):370-374.
  • 4中科海洋所藻类实验生态组 藻类分类形态组.条班紫菜的人工养殖[M].北京:科学出版社,1978..
  • 51,Williams J G K,et al.DNA polymorphism amplified by arbit rary primers are useful as genetic markers. [J] Nucleic Acids Research,1990,18 (22):6531~6535
  • 62,Welsh J,et al.Fingerprinting genomic using PCR with arbitrary primers. [J ] Nucleic Acids Research,1990,18(24):7213~7218
  • 73,Mixukami Y, et al. Diserimination of laver cultivar with RAPD markers. [J ] Fisheries Science,1996,62:547~551
  • 84,Ji Won Park,et al.RAPD identification of genetic variation in seaweed Hi zikia fusiformis (Fucales,Phaeophyta). [J] Journal of Marine Biotechnology, 1998, 6:62~64
  • 95,Patway M U,MacKay R M,et al.Revealing genetic markers in Gelidium vagum (Rhodophyta) through the random amplified polymorphic DNA (RAPD) technique. [J ] Journal of Phycology,1993,29:216~222
  • 106,Dutcher J A,Kapraun D F.Random amplified polymorphic DNA(RAPD) identificati on of genetic variation in three species of Porphyra (Bangiales,Rhodophyta). [J] Journal of Applied Phycology,1994,6:267~273

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  • 1宫曼丽,任南琪,邢德峰.DGGE/TGGE技术及其在微生物分子生态学中的应用[J].微生物学报,2004,44(6):845-848. 被引量:92
  • 2佘跃惠,张凡,向廷生,刘彬彬,赵立平,周玲革,舒肤昌.PCR-DGGE方法分析原油储层微生物群落结构及种群多样性[J].生态学报,2005,25(2):237-242. 被引量:51
  • 3孙雪,骆其君,杨锐,裴鲁青.紫菜(Porphyra)遗传差异的ISSR分析[J].海洋与湖沼,2007,38(2):141-145. 被引量:9
  • 4钱丽君,张德民,徐小红.应用DGGE分析三疣梭子蟹养殖塘底泥细菌的多样性[J].水产学报,2007,31(2):204-210. 被引量:21
  • 5孙庆海 吴伯合 温丛涨.西湾开敞性滩涂坛紫菜产业化的探讨.浙江渔业,2009,:38-40.
  • 6Sutherland JE, Lindstrom SC, Nelson WA, Brodie J, Lynch MDJ, Hwang MS, Choi HG, Miyata M, Kikuchi N, Oliveira MC, Farr T, Neefus C, Mols-Mortensen A, Milstein D, Muller KM. A new look at an ancient order: generic revision of the Bangiales (Rhodophyta). Journal of Phycology, 2011, 47(5) : 1131-1151.
  • 7陈马马,于义德,杨肇惠.栽培紫菜叶状体绿烂病因的研究//中国藻类学会.第一届中国藻类学术讨论会论文集.北京:科学出版社,1983:3544.
  • 8Takahashi M, lchitani T, Sasaki M. Pythium porphyrae Takahashi et Sasaki, sp. nov. causing red rot of marine red algae Porphyra spp.. Transactions of the Mycological Society of Japan, 1977,18(3) : 279-285.
  • 9Sekimoto S, Yokoo K, Kawamura Y, Honda D. Taxonomy, molecular phylogeny, and uhrastruetural morphology of Olpidiopsis porphyrae sp. nov. ( Oomycetes, straminipiles ) , a unicellular obligate endoparasite of Bangia and Porphyra spp. (Bangiales, Rhodophyta). Mycological Research, 2008, 112 ( 3 ) : 361-374.
  • 10Klochkova TA, Shim JB, Hwang MS, Kim GH. Host- parasite interactions and host species susceptibility of the marine oomycete parasite, Olpidiopsis sp., from Korea that infects red algae. Journal of Applied Phycology, 2012, 24(1) :135-144.

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