|本期目录/Table of Contents|

[1]颜涛,龙治海,赵凤麒,等.养殖密度对长江鲟幼鱼生长的影响[J].江苏农业科学,2021,49(3):152-155.
 Yan Tao,et al.Effect of stocking densities on growth of Acipenser dabryanus juveniles[J].Jiangsu Agricultural Sciences,2021,49(3):152-155.
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养殖密度对长江鲟幼鱼生长的影响(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第49卷
期数:
2021年第3期
页码:
152-155
栏目:
畜牧兽医与水产蚕桑
出版日期:
2021-02-05

文章信息/Info

Title:
Effect of stocking densities on growth of Acipenser dabryanus juveniles
作者:
颜涛龙治海赵凤麒张俊林严俊刚何斌
四川省农业科学院水产研究所,四川成都 611731
Author(s):
Yan Taoet al
关键词:
养殖密度长江鲟特定生长率变异系数饵料转化率
Keywords:
-
分类号:
S965.215
DOI:
-
文献标志码:
A
摘要:
本研究旨在揭示不同养殖密度对长江鲟幼鱼生长情况的影响,为现阶段长江鲟幼鱼的人工饲养密度提供一定的技术指导。设置2.45(D20)、4.96(D40)、7.08(D60)、9.64 kg/m3(D80)等4个初始密度,分析14、28 d后长江鲟幼鱼饵料转化率(FCR)、特定生长率(SGRL和SGRW)、日增质量率(DWG)、肥满度(K)以及变异系数(CVL和CVW)等生长参数差异。D20和D40组饵料转化率、特定生长率、日增质量率均显著高于D60和D80组,而D20组的肥满度显著低于D60和D80组;各密度组的特定生长率、饵料转化率随养殖时间延长而降低,但各组间变异系数却随养殖时间的延长而变大。考虑到产量、收益以及种间均匀度,本阶段长江鲟幼鱼适宜的养殖密度为4.96 kg/m3
Abstract:
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参考文献/References:

[1]Zhang H,Wei Q W,Du H,et al. Present status and risk for extinction of the Dabrys sturgeon (Acipenser dabryanus) in the Yangtze River watershed:a concern for intensified rehabilitation needs[J]. Journal of Applied Ichthyology,2011,27(2):181-185.
[2]Zhang S H,Luo H,Du H,et al. Isolation and characterization of twenty-six microsatellite loci for the tetraploid fish Dabrys sturgeon (Acipenser dabryanus)[J]. Conservation Genetics Resources,2012,5(2):409-412.
[3]鲁雪报,倪勇,饶军,等. 达氏鲟的资源现状及研究进展[J]. 水产科技情报,2012,39(5):251-253,257.
[4]Yang R,Liu Y,Wang Y,et al. Pathogenesis and pathological analysis of Edwardsiella tarda,from Dabrys sturgeon (Acipenser dabryanus) in China[J]. Aquaculture,2018,495:637-642.
[5]Zhang S,Xu Q,Boscari E,et al. Characterization and expression analysis of g-and c-type lysozymes in Dabrys sturgeon (Acipenser dabryanus)[J]. Fish & Shellfish Immunology,2018,76:260-265.
[6]龚全,刘亚,杜军,等. 达氏鲟全人工繁殖技术研究[J]. 西南农业学报,2013,26(4):1710-1714.
[7]Wang X D,Jing H F,Li J X,et al. Development of 26 SNP markers in Dabrys sturgeon (Acipenser dabryanus) based on high-throughput sequencing[J]. Conservation Genetics Resources,2016,9(2):205-207.
[8]Liu J J,Tan C,Xiao K,et al. The complete mitochondrial genome of Dabrys sturgeon (Acipenser dabryanus)[J]. Mitochondrial Dna Part B,2017,2(1):54-55.
[9]MBalaka M,Kassam D ,Rusuwa B. The effect of stocking density on the growth and survival of improved and unimproved strains of Oreochromis shiranus[J]. The Egyptian Journal of Aquatic Research,2012,38(3):205-211.
[10] Grelahin S,Yanar M,Kumlu M. The effects of stocking density,Tubifex feeding and monosex culture on growth performance of guppy (Poecilia reticulata) in a closed indoor recirculation system[J]. Aquaculture,2018,493:153-157.
[11]Refaey M M,Li D,Tian X,et al. High stocking density alters growth performance,blood biochemistry,intestinal histology,and muscle quality of channel catfish,Ictalurus punctatus[J]. Aquaculture,2018,492:73-81.
[12]Tolussi C E,Hilsdorf A S,Caneppele D,et al. The effects of stocking density in physiological parameters and growth of the endangered teleost species piabanha,Brycon insignis (Steindachner,1877)[J]. Aquaculture,2010,310(1/2):221-228.
[13]Hwang H K,Son M H,Myeong J I,et al. Effects of stocking density on the cage culture of Korean rockfish (Sebastes schlegeli)[J]. Aquaculture,2014,434:303-306.
[14]宋志飞,温海深,李吉方,等. 养殖密度对流水养殖系统中俄罗斯鲟幼鱼生长的影响[J]. 水产学报,2014,38(6):835-842.
[15]庄平,李大鹏,王明学,等. 养殖密度对史氏鲟稚鱼生长的影响[J]. 应用生态学报,2002,13(6):735-738.
[16]Costas B,Arago C,Mancera J M,et al. High stocking density induces crowding stress and affects amino acid metabolism in Senegalese sole Solea senegalensis(Kaup 1858)juveniles[J]. Aquaculture Research,2010,39(1):1-9.
[17]Laizcarrión R,Viana I R,Cejas J R,et al. Influence of food deprivation and high stocking density on energetic metabolism and stress response in red porgy,Pagrus pagrus L[J]. Aquaculture International,2012,20(3):585-599.
[18]Heras V D L,Martos-Sitcha J A,Yúfera M,et al. Influence of stocking density on growth,metabolism and stress of thick-lipped grey mullet (Chelon labrosus) juveniles[J]. Aquaculture,2015,448:29-37.
[19]Schram E,Heul J D,Kamstra A,et al. Stocking density-dependent growth of Dover sole (Solea solea)[J]. Aquaculture,2006,252(2/3/4):339-347.
[20]Ali A,Fotedar R.Water quality,growth and stress responses of juvenile barramundi (Lates calcarifer Bloch),reared at four different densities in integrated recirculating aquaculture systems[J]. Aquaculture,2016,458:113-120.
[21]Lupatsch I,Santos G A,Schrama J W,et al. Effect of stocking density and feeding level on energy expenditure and stress responsiveness in European sea bass Dicentrarchus labrax[J]. Aquaculture,2010,298(3/4):245-250.
[22]Teles M,Pacheco M,Santos M A. Endocrine and metabolic responses of Anguilla anguilla L. caged in a freshwater-wetland (Pateira de Fermentelos—Portugal)[J]. The Science of the Total Environment,2007,372(2/3):562-570.
[23]De las Heras V,Martos-Sitcha J A,Yúfera M,et al. Influence of stocking density on growth,metabolism and stress of thick-lipped grey mullet (Chelon labrosus) juveniles[J]. Aquaculture,2015,448:29-37.
[24]Dong S L,Liang M,Gao Q F,et al. Intra-specific effects of sea cucumber (Apostichopus japonicus) with reference to stocking density and body size[J]. Aquaculture Research,2010,41(8):1170-1178.
[25]Liang M,Dong S L,Gao Q F,et al. Individual variation in growth in sea cucumber Apostichopus japonicus(Selenck)housed individually[J]. Journal of Ocean University of China,2010,9(3):291-296.
[26]Lambert Y,Dutil J D. Food intake and growth of adult Atlantic cod (Gadus morhua L.) reared under different conditions of stocking density,feeding frequency and size-grading[J]. Aquaculture,2001,192(2):233-247.
[27]Toko I,Fiogbe E D,Koukpode B,et al. Rearing of African catfish(Clarias gariepinus)and vundu catfish (Heterobranchus longifilis) in traditional fish ponds(whedos):effect of stocking density on growth,production and body composition[J]. Aquaculture,2007,262(1):65-72.
[28]Marco P D,Priori A,Finoia M G,et al. Physiological responses of European sea bass Dicentrarchus labrax to different stocking densities and acute stress challenge[J]. Aquaculture,2008,275(1/2/3/4):319-328.
[29]Merino G E,Piedrahita R H,Conklin D E. The effect of fish stocking density on the growth of California halibut (Paralichthys californicus) juveniles[J]. Aquaculture,2007,265(1/2/3/4):176-186.

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备注/Memo

备注/Memo:
收稿日期:2020-05-09
基金项目:四川省财政创新能力提升专项青年基金(编号:2019QNJJ-013)。
作者简介:颜涛(1991—),男,重庆人,硕士,助理研究员,主要从事鱼类健康养殖研究。E-mail:yt199162@163.com。
通信作者:何斌,硕士,副研究员,主要从事渔业资源与养殖技术方面研究。E-mail:56745206@qq.com。
更新日期/Last Update: 2021-02-05