|本期目录/Table of Contents|

[1]章琼,蒋高中,李冰.水产动物对氨氮胁迫响应的转录组分析研究进展[J].江苏农业科学,2015,43(03):227-230.
 Zhang Qiong,et al.Research progress on transcriptome analyses of aquatic animals in response to ammonia-N stress[J].Jiangsu Agricultural Sciences,2015,43(03):227-230.
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水产动物对氨氮胁迫响应的转录组分析研究进展(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第43卷
期数:
2015年03期
页码:
227-230
栏目:
水产养殖·特种种养
出版日期:
2015-03-25

文章信息/Info

Title:
Research progress on transcriptome analyses of aquatic animals in response to ammonia-N stress
作者:
章琼1 蒋高中2 李冰2
1.南京农业大学无锡渔业学院,江苏无锡 214081; 2.南京农业大学无锡渔业学院/中国水产科学研究院淡水渔业研究中心/
农业部淡水渔业和种质资源利用重点实验室,江苏无锡 214081
Author(s):
Zhang Qionget al
关键词:
水产动物氨氮胁迫代谢调控机制转录组转录组测序
Keywords:
-
分类号:
S917.4
DOI:
-
文献标志码:
A
摘要:
氨氮胁迫是影响水产养殖和生态环境的重要非生物胁迫之一;而转录组学是一个新兴的研究细胞表型和功能的重要手段,在研究基因结构、表达和功能上开拓了一个新型的研究方向。简述了水产养殖中氨氮的危害以及氨氮胁迫而引起的生理和生化反应,同时介绍了常见的转录组学平台技术及其在一些胁迫反应代谢调控机制及分子机制研究中的应用,认为水产动物氨氮胁迫的转录组分析将为水产动物的毒理学效应提供重要的理论依据和线索,也将在水产动物分子育种中发挥重要作用。
Abstract:
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参考文献/References:

[1]Herbert R A. Nitrogen cycling in coastal Marine ecosystems[J]. FEMS Microbiology Reviews,1999,23(5):563-590.
[2]Koo J G,Kim S G,Jee J H,et al. Effects of ammonia and nitrite on survival,growth and moulting in juvenile tiger crab,Orithyia sinica (Linnaeus)[J]. Aquaculture Research,2005,36(1):79-85.
[3]De Freitas R M,Rodriguez E M,Santos E A,et al. Histopathological changes in gills of the estuarine crab Chasmagnathus granulate (Crustacea-Decapoda) following acute exposure to ammonia[J]. Comparative Biochemistry and Physiology Part C Toxicology & Pharmacology,2000,125(2):157-164.
[4]Wicks B J,Joensen R,Tang Q,et al. Swimming and ammonia toxicity in salmonids:the effect of sub lethal ammonia exposure on the swimming performance of coho salmon and the acute toxicity of ammonia in swimming and resting rainbow trout[J]. Aquatic Toxicology,2002,59(1/2):55-69.
[5]姜令绪,潘鲁青,肖国强. 氨氮对凡纳对虾免疫指标的影响[J]. 中国水产科学,2005,11(6):537-541.
[6]Tietge J E,Johnson R D,Bergman H L. Morphometric changes in gill secondary lamellae of brook trou (Salvelinus fontinalis) after long-term exposure to acid and aluminum[J]. Canadian Journal of Fisheries and Aquatic Sciences,1988,45(9):1643-1648.
[7]卢健民,卢玲,蔺玉华,等. 低pH水平对鲤鱼生长及血糖浓度影响的研究[J]. 水产学杂志,2001,14(1):51-53.
[8]Peyghan R,Takamy G A. Histopathological,serum enzyme,cholesterol and urea changes in experimental acute toxicity of ammonia in common carp Cyprinus carpio and use of natural zeolite for prevention[J]. Aquaculture International,2002,10(4):317-325.
[9]王金叶,李华,巩华,等. 氨氮、亚硝态氮亚急性毒性对鲤红细胞膜流动性和过氧化脂质的影响[J]. 水产学报,2004,28(增刊1):135-140.
[10]吴若菁,陈宜秋,林霞,等. 利用泥鳅红细胞核的遗传损伤监测福州市内河水质[J]. 应用与环境生物学报,2005,11(1):59-63.
[11]乔顺风.水体氨氮转化形式与调控利用的研究[J]. 饲料工业,2005,26(12):44-46.
[12]Randall D J,Tsui T K N. Ammonia toxicity in fish[J]. Marine Pollution Bulletin,2002,45(1/2):17-23.
[13]黄鹤忠,李义,宋学宏,等. 氨氮胁迫对中华绒螯蟹(Eriocheir sinensis) 免疫功能的影响[J]. 海洋与湖沼,2006,37(3):198-205.
[14]金珊,程岩雄,杨玉姣,等. 铵氮胁迫对拟穴青蟹Scylla paramamosain免疫力的影响[J]. 浙江农业学报,2008,20(6):402-407.
[15]张亚娟,刘存歧,王军霞,等. 氨态氮和亚硝态氮对日本沼虾血细胞数量及血蓝蛋白含量的影响[J]. 四川动物,2008,27(5):853-854.
[16]Chantal M,Etienne Z,Cyrille G,et al. Combined effect of exposure to ammonia and hypoxia on the blue shrimp Litopenaeus stylirostris survival and physiological response in relation to molt stage[J]. Aquaculture,2008,274(2/4):398-407.
[17]邱德全,周鲜娇,邱明生. 氨氮胁迫下凡纳滨对虾抗病力和副溶血弧菌噬菌体防病效果研究[J]. 水生生物学报,2008,32(4):455-461.
[18]彭自然,臧维玲,高杨,等. 氨和亚硝酸盐对凡纳滨对虾幼虾的毒性影响[J]. 上海水产大学学报,2004,13(3):274-278.
[19]Racotta I S,Hernández-Herrera R. Metabolic responses of the white shrimp,Penaeus vannamei,to ambient ammonia[J]. Comparative Biochemistry and Physiology Part A:Molecular & Integrative Physiology,2000,125(4):437-443.
[20]韩力强,康现江,李双石,等. 氨氮对斑马鱼2种代谢酶类的影响[J]. 河北大学学报:自然科学版,2005,25(2):179-184.
[21]Costa V,Angelini C,De Feis I,et al. Uncovering the complexity of transcriptomes with RNA-Seq[J]. Journal of Biomedicine and Biotechnology,2010:853916.
[22]Wang Z,Gerstein M,Snyder M. RNA-Seq:a revolutionary tool for transcriptomics[J]. Nature Reviews Genetics,2009,10(1):57-63.
[23]祁云霞,刘永斌,荣威恒. 转录组研究新技术:RNA-Seq及其应用[J]. 遗传,2011,33(11):1191-1202.
[24]张春兰,秦孜娟,王桂芝,等. 转录组与RNA-Seq技术[J]. 生物技术通报,2012(12):51-56.
[25]严东辉. 胡杨干旱响应转录组及NF-YB基因表达谱[D]. 北京:北京林业大学,2013.
[26]霍达,张恒,戴绍军. 盐生植物盐碱胁迫应答转录组学分析[J]. 现代农业科技,2011(5):11-12.
[27]Wang Y C,Yang C P,Liu G F,et al. Development of a cDNA microarray to identify gene expression of Puccinellia tenuiflora under saline-alkali stress[J]. Plant Physiology and Biochemistry,2007,45(8):567-576.
[28]Jha B,Agarwal P K,Reddy P S,et al. Identification of salt-induced genes from Salicornia brachiata,an extreme halophyte through expressed sequence tags analysis[J]. Genes & Genetic Systems,2009,84(2):111-120.
[29]Wong C E,Li Y,Labbe A,et al. Transcriptional profiling implicates novel interactions between abiotic stress and hormonal responses in Thellungiella,a close relative of Arabidopsis[J]. Plant Physiology,2006,140(4):1437-1450.
[30]Diédhiou C J,Popova O V,Golldack D. Transcript profiling of the salt-tolerant Festuca rubra ssp. litoralis reveals a regulatory network controlling salt acclimatization[J]. Journal of Plant Physiology,2009,166(7):697-711.
[31]Gao C Q,Wang Y C,Liu G F,et al. Expression profiling of salinity-alkali stress responses by large-scale expressed sequence tag analysis in Tamarix hispid[J]. Plant Molecular Biology,2008,66(3):245-258.
[32]许长征. 玉米根系对低磷胁迫响应的转录组分析[D]. 济南:山东大学,2009.
[33]曾地刚,陈秀荔,谢达祥,等. 基于高通量测序的凡纳滨对虾的转录组分析[J]. 基因组学与应用生物学,2013,32(3):308-313.
[34]许宝红. 感病草鱼脾脏的比较转录组分析[D]. 长沙:湖南农业大学,2012.
[35]董迎辉. 泥蚶高通量转录组分析及生长相关基因的克隆与表达研究[D]. 青岛:中国海洋大学,2012.
[36]Deyholos M K. Making the most of drought and salinity transcriptomics[J]. Plant Cell and Environment,2010,33(4):648-654.

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备注/Memo

备注/Memo:
收稿日期:2014-04-13
基金项目:国家科技支撑计划(编号:2012BAD25B07);中央级公益性科研院所基本科研业务费专项资金(编号:2013JBFC08)。
作者简介:章琼(1989—),女,湖北孝感人,硕士研究生,研究方向为水产动物健康养殖。E-mail:819153429@qq.com。
通信作者:蒋高中,博士,研究员,从事渔业文化与科技发展、渔业科技史等方面的研究。Tel:(0510)85550702;E-mail:jianggz@ffrc.cn。
更新日期/Last Update: 2015-03-25