...
首页> 外文期刊>The Journal of Experimental Biology >Freshwater environment affects growth rate and muscle fibre recruitment in seawater stages of Atlantic salmon (Salmo salar L.)
【24h】

Freshwater environment affects growth rate and muscle fibre recruitment in seawater stages of Atlantic salmon (Salmo salar L.)

机译:淡水环境影响大西洋鲑(Salmo salar L.)海水阶段的生长速率和肌肉纤维募集。

获取原文
获取原文并翻译 | 示例

摘要

The influence of freshwater environment on muscle growth in seawater was investigated in an inbred population of farmed Atlantic salmon (Salmo salar L.). The offspring from a minimum of 64 families per group were incubated at either ambient temperature (ambient treatment) or in heated water (heated treatment). Growth was investigated using a mixed-effect statistical model with repeated measures, which included terms for treatment effect and random fish effects for individual growth rate (alpha) and the instantaneous growth rate per unit change in temperature (gamma). Prior to seawater transfer, fish were heavier in the heated (61.6+/-1.0 g; N=298) than in the ambient (34.1+/-0.4 g; N=206) treatments, reflecting their greater growth opportunity: 4872 degree-days and 4281 degree-days, respectively. However, the subsequent growth rate of the heated group was lower, such that treatments had a similar body mass (3.7-3.9 kg) after approximately 450 days in seawater. The total cross-sectional area of fast muscle and the number (FN) and size distribution of the fibres was determined in a subset of the fish. We tested the hypothesis that freshwater temperature regime affected the rate of recruitment and hypertrophy of muscle fibres. There were differences in FN between treatments and a significant age x treatment interaction but no significant cage effect (ANOVA). Cessation of fibre recruitment was identified by the absence of fibres of <10 mum diameter. The maximum fibre number was 22.4% more in the ambient (9.3x10(5)+/-2.0x10(4)) than in the heated (7.6x10(5)+/-1.5x10(4)) treatments (N=44 and 40 fish, respectively; P<0.001). For fish that had completed fibre recruitment, there was a significant correlation between FN and individual growth rate, explaining 35% of the total variation. The density of myogenic progenitor cells was quantified using an antibody to c-met and was approximately 2-fold higher in the ambient than in the heated group, equivalent to 2-3% of the total muscle nuclei. The number of myonuclei in isolated fibre segments showed a linear relationship with fibre diameter. On average, there were 20.6% more myonuclei in 200- mum-diameter fibres isolated from the ambient (3734 myonuclei cm(-1)) than from the heated (3097 myonuclei cm(-1)) treatments. The maximum fibre diameter was greater in heated than in ambient groups, whereas the age x treatment interaction was not significantly different (ANCOVA). There were also no consistent differences in the rate of hypertrophy of muscle fibres between treatments. It was concluded that freshwater temperature regime affected fibre number and the nuclear content of fast muscle in seawater but not the rate of fibre hypertrophy. The mechanisms and life history consequences of developmental plasticity in fibre number are discussed. [References: 69]
机译:在养殖的大西洋鲑(Salmo salar L.)近交种群中研究了淡水环境对海水中肌肉生长的影响。每组至少64个家庭的后代在环境温度(环境处理)或热水(加热处理)中孵育。使用具有重复测量的混合效应统计模型来研究生长,其中包括处理效果和个体鱼生长率(α)和单位温度变化的瞬时生长率(γ)的随机鱼效应的术语。在海水转移之前,加热(61.6 +/- 1.0 g; N = 298)的鱼比周围处理(34.1 +/- 0.4 g; N = 206)的鱼重,这反映了它们更大的生长机会:4872度天和4281度日。但是,随后加热组的生长速率较低,因此在海水中放置约450天后,治疗的体重相似(3.7-3.9 kg)。在一条鱼的子集中确定了快速肌肉的总横截面积以及纤维的数量(FN)和大小分布。我们检验了淡水温度状态影响肌肉纤维募集和肥大率的假设。治疗之间的FN差异和年龄x治疗之间的显着相互作用,但无显着的笼效应(ANOVA)。通过不存在直径小于10毫米的纤维来确定纤维募集的停止。在环境(9.3x10(5)+/- 2.0x10(4))中,最大纤维数量比在加热(7.6x10(5)+/- 1.5x10(4))处理中多22.4%(N = 44)和40条鱼; P <0.001)。对于完成纤维募集的鱼,FN与个体生长率之间存在显着相关性,解释了总变异的35%。使用针对c-met的抗体对成肌祖细胞的密度进行了定量,其在环境中的浓度比在加热组中高约2倍,相当于整个肌肉核的2-3%。分离的纤维段中的肌核数目与纤维直径呈线性关系。平均而言,从环境中分离出的200毫米直径纤维(3734肌层cm(-1))比加热处理(3097肌层cm(-1))多出20.6%。加热后的最大纤维直径大于周围组,而年龄×处理相互作用则无显着差异(ANCOVA)。治疗之间的肌肉纤维肥大速率也没有一致的差异。可以得出结论,淡水温度状态会影响海水中纤维的数量和快肌的核含量,而不影响纤维的肥大速率。讨论了纤维数量发育可塑性的机理和寿命史后果。 [参考:69]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号