|本期目录/Table of Contents|

[1]付璐璐,王峥,王磊,等.近10年水产动物抗逆育种研究进展[J].江苏农业科学,2020,48(16):52-58.
 Fu Lulu,et al.Research progress of resistance breeding of aquatic animals in recent ten years[J].Jiangsu Agricultural Sciences,2020,48(16):52-58.
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近10年水产动物抗逆育种研究进展(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第48卷
期数:
2020年第16期
页码:
52-58
栏目:
专论与综述
出版日期:
2020-08-20

文章信息/Info

Title:
Research progress of resistance breeding of aquatic animals in recent ten years
作者:
付璐璐 王峥 王磊 李学军
河南师范大学水产学院,河南新乡 453007
Author(s):
Fu Luluet al
关键词:
水产动物抗逆育种养殖研究进展
Keywords:
-
分类号:
S917.4
DOI:
-
文献标志码:
A
摘要:
随着水产养殖业的快速发展,产业对抗逆新品种的需求也在不断增加,然而目前通过审定的水产新品种大多是以生长性状为选育指标,抗逆新品种较少。本文通过对近10年国内外水产动物抗逆育种的研究对象、研究方法和研究结果等进行总结分析,以期为今后的水产动物抗逆育种研究提供一定参考。
Abstract:
-

参考文献/References:

[1]纪春艳. 浅析我国水产养殖业的发展现状[J]. 渔业致富指南,2016(22):14-16.
[2]魏宝振. 水产健康养殖的内涵及发展现状[J]. 中国水产,2012(7):5-7.
[3]李成军. 我国水产养殖安全问题研究现状[J]. 现代农业,2019,2(6):69-70.
[4]沈夏霜,敖秋桅,甘西,等. 吉富罗非鱼抗病品系F5代抗病性能和生长性能的评估[J]. 南方水产科学,2018,14(3):83-90.
[5]郑卫卫,陈松林,李泽宇,等. 牙鲆抗迟缓爱德华氏菌性状的遗传力和育种值分析[J]. 农业生物技术学报,2016,24(8):1181-1189.
[6]李泽宇,陈松林,郭华,等. 牙鲆抗迟缓爱德华氏菌病家系的继代选育与早期速生家系筛选[J]. 渔业科学进展,2018,39(3):36-43.
[7]陈松林. 牙鲆“鲆优2号”[J]. 海洋与渔业,2017(6):32.
[8]王磊,陈松林,张英平,等. 牙鲆连续三代抗鳗弧菌病家系的筛选与分析[J]. 中国水产科学,2013,20(5):990-996.
[9]Shao C,Niu Y,Rastas P,et al. Genome-wide SNP identification for the construction of a high-resolution genetic map of Japanese flounder (Paralichthys olivaceus):applications to QTL mapping of Vibrio anguillarum disease resistance and comparative genomic analysis[J]. DNA Research,2015,22(2):161-170.
[10]白姗姗,贾智英,郎延贺,等. CyHV-3感染镜鲤选育世代免疫基因表达及抗病能力比较[J]. 上海海洋大学学报,2017,26(5):651-657.
[11]Sawayama E,Kitamura S I,Nakayama K,et al. Development of a novel RSIVD-resistant strain of red sea bream (Pagrosomus major) by marker-assisted selection combined with DNA-based family selection[J]. Aquaculture,2019,506:188-192.
[12]Wang W W,Tan S X,Luo J,et al. GWAS analysis indicated importance of NF-kB signaling pathway in host resistance against motile Aeromonas septicemia disease in catfish[J]. Marine Biotechnology,2019,21(3):335-347.
[13]刘宝锁,张天时,杰孔,等. 大菱鲆生长和耐高温性状的遗传参数估计[J]. 水产学报,2011,35(11):1601-1607.
[14]马爱军,黄智慧,王新安,等. 大菱鲆耐高温品系选育及耐温性能评估[C]//中国水产学会. 2012中国水产学会学术年会论文集.北京:海洋出版社,2012:74.
[15]关健,刘梦侠,刘洪军,等. 大菱鲆子二代家系及亲本耐高温能力比较[J]. 渔业科学进展,2013,34(1):103-110.
[16]Anttila K,Dhillon R S,Boulding E G,et al. Variation in temperature tolerance among families of Atlantic salmon (Salmo salar) is associated with hypoxia tolerance,ventricle size and myoglobin level[J]. Journal of Experimental Biology,2013,216(7):1183-1190.
[17]Ineno T,Tamaki K,Yamada K,et al. Thermal tolerance of a thermally selected strain of rainbow trout Oncorhynchus mykiss and the pedigrees of its F1 and F2 generations indicated by their critical thermal maxima[J]. Fisheries Science,2018,84(4):671-679.
[18]何金钊,陈子桂,陈诏,等. 三种品系不同规格红罗非鱼的耐寒性能评价[J]. 淡水渔业,2017,47(3):79-83.
[19]陈柏湘. 团头鲂(Megalobrama amblycephala)低氧相关分子标记的开发及应用[D]. 武汉:华中农业大学,2016:7-12.
[20]Li H L,Gu X H,Li B J,et al. Genome-wide QTL analysis identified significant associations between hypoxia tolerance and mutations in the GPR132 and ABCG4 genes in Nile tilapia[J]. Marine Biotechnology,2017,19(5):441-453.
[21]李福贵,郑国栋,吴成宾,等. 团头鲂耐低氧F3的建立及其在低氧环境下的生长差异[J]. 水产学报,2018,42(2):236-245.
[22]Romano N,Aliff A,Syukri F,et al. Improved performance of lemon fin barb hybrid (Hypsibarbus wetmorei male Barbodes gonionotus female) at elevated salinities[J]. Journal of Environmental Biology,2018,39(5):719-724.
[23]Jiang D L,Gu X H,Li B J,et al. Identifying a long QTL cluster across chrLG18 associated with salt tolerance in tilapia using GWAS and QTL-seq[J]. Marine Biotechnology,2019,21(2):250-261.
[24]李学军,李爱景,李思发,等. 新引进萨罗罗非鱼与其它8种罗非鱼耐盐差异[J]. 水产学报,2010,34(7):1072-1079.
[25]Mallik A,Chakrabarty,Dutta S,et al. Study on the distribution of disease-resistant shrimp identified by DNA markers in respect to WSSV infection in different seasons along the entire East Coast of India aiming to prevent white spot disease in Penaeus monodon[J]. Transboundary and Energing Diseases,2016,63(1):E47-E58.
[26]黄永春,艾华水,殷志新,等. 凡纳滨对虾抗WSSV选育家系的抗病与生长特性[J]. 台湾海峡,2011,30(3):412-418.
[27]李健,刘萍,何玉英,等. 中国对虾快速生长新品种“黄海1号”的人工选育[J]. 水产学报,2005,29(1):1-5.
[28]孔杰,罗坤,栾生,等. 中国对虾新品种“黄海2号”的培育[J]. 水产学报,2012,36(12):1854-1862.
[29]Wu Y Y,Meng X H,Kong J,et al. Screening white spot syndrome virus (WSSV)-resistant molecular markers from Fenneropenaeus chinensis[J]. Journal of Ocean University China,2017,16(1):129-136.
[30]胡志国. 凡纳滨对虾选育基础群体的建立及生长性状遗传参数的估计[D]. 湛江:广东海洋大学,2015:3-7.
[31]李东宇,孟宪红,孔杰,等. 凡纳滨对虾(Litopenaeus vannamei)选育群体与杂交群体遗传多样性差异及其在低温条件下生长性能的比较[J]. 渔业科学进展,2017,38(4):69-77.
[32]Meng X H,Dong L J,Shi X L,et al. Screening of the candidate genes related to low-temperature tolerance of Fenneropenaeus chinensis based on high-throughput transcriptome sequencing[J]. PLoS One,2019,14(4):e211182.
[33]林元烧,曹文清. 斑节对虾仔虾对低盐度海水耐受力的研究[J]. 中山大学学报(自然科学版),2000,39(增刊1):103-106.
[34]Chen J S,Zhou F L,Huang J H,et al. Ammonia and salinity tolerance of Penaeus monodon across eight breeding families[J]. Springerplus,2016,5(1):1-4.
[35]陈劲松,周发林,江世贵,等. 斑节对虾幼虾不同家系的耐低盐能力比较[J]. 水产学报,2017,41(5):687-693.
[36]李健,何玉英,王清印,等. 中国对虾(Fenneropenaeus chinensis)“黄海3号”新品种的培育[J]. 渔业科学进展,2015,36(1):61-66.
[37]邱立国,江秀,周代金,等. 凡纳滨对虾不同家系应答逆境胁迫的比较研究[J]. 黑龙江畜牧兽医,2017(7):240-243.
[38]单保党,胡壮涛,蔡娟,等. 利洋1号和利洋2号南美白对虾仔虾耐低氧能力研究[J]. 当代水产,2018,43(7):87-89.
[39]蒋湘,郑静静,谢妙,等. 日本囊对虾耐高氨氮与生长性状的遗传参数估计[J]. 水产科学,2017,36(6):700-706.
[40]Frank-Lawale A,Allen S K,Degremont L. Breeding and domestication of Eastern Oyster (Crassostrea virginica) lines for culture in the Mid-Atlantic,USA:line development and mass selection for disease resistance[J]. Journal of Shellfish Research,2014,33(1):153-165
[41]LIiang S,Luo X,You W W,et al. Hybridization improved bacteria resistance in abalone:evidence from physiological and molecular responses[J]. Fish & Shellfish Immunology,2018,7(72):679-689.
[42]于瑞海,包振民,王昭萍,等. 栉孔扇贝×虾夷扇贝的杂交技术[J]. 中国海洋大学学报(自然科学版),2006,36(1):85-88.
[43]孙振兴,常林瑞,宋志乐. 皱纹盘鲍与盘鲍杂交效果分析[J]. 水产科学,2005,24(8):1-3.
[44]滕爽爽. 长牡蛎杂交育种的研究[D]. 青岛:中国海洋大学,2009:20-43.
[45]Guo M,Wang H H,Shao Y N,et al. Gene identification and antimicrobial activity analysis of a novel lysozyme from razor clam Sinonovacula constricta[J]. Fish Shellfish Immunol,2019,89:198-206.
[46]Jiang F J,Wang H X,Yue X,et al. Integrating the Vibrio-resistance phenotype and gene expression data for discovery of markers used for resistance evaluation in the clam Meretrix petechialis[J]. Aquaculture,2018,482:130-136.
[47]王金鹏. 牡蛎生长与高温耐受性状的遗传解析[D]. 青岛:中国科学院研究生院(海洋研究所),2016.
[48]Meng Z H,Zhang B,Liu B S,et al. High carotenoids content can enhance resistance of selected Pinctada fucata families to high temperature stress[J]. Fish & Shellfish Immunology,2017,61(24):211-218.
[49]周童. 合浦珠母贝遗传连锁图谱构建、QTL定位及热休克蛋白基因HSP22的克隆与表达研究[D]. 上海:上海海洋大学,2018.
[50]常亚青. 贝类增养殖学[M]. 北京:中国农业出版社,2007.
[51]Powell J A,Ragg N L C,Dunphy B J. Phenotypic biomarkers in selectively-bred families of the Greenshell (TM) mussel (Perna canaliculus):anaerobic enzyme and shell gape behaviour as biomarkers of prolonged emersion tolerance[J]. Aquaculture,2017,479:601-608.
[52]王化敏,丁鉴锋,杨东敏,等. 4种壳色菲律宾蛤仔在低氧胁迫下的耐受能力比较研究[J]. 大连海洋大学学报,2018,33(2):181-189.
[53]蒋湘,刘建勇,赖志服. 九孔鲍(Haliotis diversicolor supertexta)耐低盐与生长性状的遗传参数评估[J]. 海洋与湖沼,2014,45(3):542-547.
[54]丁鉴锋,王锐,闫喜武,等. 菲律宾蛤仔3种壳色群体低盐耐受能力的比较研究[J]. 大连海洋大学学报,2013,28(3):264-268.
[55]She Z C,Li L,Meng J,et al. Population resequencing reveals candidate genes associated with salinity adaptation of the Pacific oyster Crassostrea gigas[J]. Scientific Reports,2018,8(1):8683.
[56]鲁翠云,匡友谊,郑先虎,等. 水产动物分子标记辅助育种研究进展[J]. 水产学报,2019,43(1):36-53.

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备注/Memo

备注/Memo:
收稿日期:2019-09-29
基金项目:国家自然科学基金(编号:31602149);河南省水产动物营养与健康养殖创新型科技团队项目(编号:CXTD2016043);河南省科技攻关项目(编号:192102110083)。
作者简介:付璐璐(1998—),女,河南长垣人,硕士研究生,研究方向为水产动物抗逆育种研究。E-mail:1903598328@qq.com。
通信作者:王磊,博士,讲师,研究方向为鱼类遗传育种。E-mail:hnnuwl@163.com。
更新日期/Last Update: 2020-08-20