Ontogenetic Variation in Ammonia Excretion during the Early Life Stages of the Amazon River Prawn, Macrobrachium amazonicum

被引:0
作者
de Arruda Hayd, Liliam [2 ]
Lemos, Daniel [3 ]
Valenti, Wagner C. [1 ]
机构
[1] Sao Paulo State Univ, UNESP, Dept Biol Aplicada, FCAV,Aquaculture Ctr, BR-14889900 Jaboticabal, SP, Brazil
[2] Mato Grosso Sul State Univ UEMS, BR-79200000 Aquidauana, MS, Brazil
[3] Univ Sao Paulo, Inst Oceanograf, BR-05389900 Sao Paulo, Brazil
基金
巴西圣保罗研究基金会;
关键词
RESPIRATORY METABOLISM; OXYGEN-CONSUMPTION; LARVAL DEVELOPMENT; SALINITY; DECAPODA; TEMPERATURE; ROSENBERGII; CRUSTACEA; WATER; MARINE;
D O I
暂无
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
Dry mass (DM) and total ammonia-N (TAN) excretion were determined in embryos, larvae (ZI-ZIX, Z = zoea ), and postlarvae (PL) at 1, 7, and 14 d after metamorphosis (PL1, PL7, and PL14) of Macrobrachium amazonicum. Animals in postmolt-intermolt (A-C) stages were sorted according to their developmental stages, and placed into incubation chambers (similar to 30 mL) for 2 h to quantify TAN excretion. After this period, analyses were carried out using Koroleff's method for TAN determination. Individual TAN excretion generally increased throughout ontogenetic development and varied from 0.0090 +/- 0.0039 mu g TAN/individual/h in embryo to 1.041 +/- 0.249 mu g TAN/individual/h in PL14. There was no significant difference between embryo-ZIV and ZV-ZIX (P > 0.05), whereas PL1, PL7, and PL14 differed (P < 0.05) from each other. Higher increments in individual ammonia-N excretion were observed between ZIV-ZV, PL1-PL7, and PL7-PL14. Mass-specific excretion rates presented two groups, embryo-ZII (P > 0.05) and ZIII-PL14 (P > 0.05). The lowest value was found in embryo (0.17 +/- 0.07 mu g TAN/mg DM/h) and the maximum values in ZV and PL1 (0.65 +/- 0.25 and 0.64 +/- 0.27 mu g TAN/mg DM/h, respectively). Results indicate that metabolic rate is proportional to the body mass in M. amazonicum, during early life stages. Variations in ammonia excretion during this phase may be associated mainly with body size. Data obtained in the present study may be useful in developing and optimizing rearing techniques of M. amazonicum, such as the proportions between biofilter and rearing tank size, and stocking density in culture tanks or in transport bags.
引用
收藏
页码:107 / 115
页数:9
相关论文
共 39 条
[1]   A four-dimensional response surface analysis of the ontogeny of physiological adaptation to salinity and temperature in larvae of the palaemonid shrimp Macrobrachium rosenbergii (de Man) [J].
Agard, JBR .
JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 1999, 236 (02) :209-233
[2]   Biomass and elemental composition of eggs and larvae of a mangrove crab, Sesarma rectum Randall (Decapoda: Sesarmidae) and comparison to a related species with abbreviated larval development [J].
Anger, K ;
Moreira, GS .
SCIENTIA MARINA, 2004, 68 (01) :117-126
[3]  
Anger K., 2001, CRUSTACEAN ISS, V14, P1
[4]   Patterns of larval growth and chemical composition in the Amazon River prawn, Macrobrachium amazonicum [J].
Anger, Klaus ;
Hayd, Liliam ;
Knott, Jan ;
Nettelmann, Uwe .
AQUACULTURE, 2009, 287 (3-4) :341-348
[5]  
[Anonymous], 1957, Q REV BIOL, DOI DOI 10.1086/401873
[6]  
[Anonymous], 1999, Biostatistical Analysis
[7]  
Araujo M.C., 2005, ACTA SCI-ANIM SCI, V27, P67
[8]  
Bialetzki Andrea, 1997, Revista Brasileira de Zoologia, V14, P379
[9]   EXPERIMENTAL STUDIES ON THE LARVAL DEVELOPMENT OF THE SHRIMPS CRANGON-CRANGON AND CRANGON-ALLMANNI [J].
CRIALES, MM ;
ANGER, K .
HELGOLANDER MEERESUNTERSUCHUNGEN, 1986, 40 (03) :241-265
[10]  
DANIELS W H, 1992, Journal of Shellfish Research, V11, P65