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Allometric growth patterns and development in larvae and juveniles of thick-lipped grey mullet Chelon labrosus reared in mesocosm conditions

机译:在中观条件下饲养的厚唇灰鱼Chelon labrosus的幼体和少年异速生长模式和发育

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Allometric growth and ontogeny were studied in thick-lipped grey mullet Chelon labrosus reared in mesocosms from 1 to 71 day post hatching (dph). Multivariate allometric analysis of morphometric growth distinguished three distinct developmental stanzas separated by two morphometric metamorphosis lengths (L-m1=4.46 +/- 0.06mm; L-m2= 28.56 +/- 1.04mm). Body mass growth also showed three distinct episodes separated by two inflections, correlated with morpho-functional changes. First episode concerned pre-flexion larvae and ended around 4.5mm-L-T (14-dph), coinciding with estimated L-m1. It was distinguished by reduced growth, but intense morphogenesis and differentiation processes. Organogenesis and allometric changes indicated that development priorities concerned feeding efficiency, by improving detection ability (sensory system development), ingestion capacity (head growth) and assimilation performance (digestive system differentiation), together with respiration efficiency (gill development). Second episode concerned post-flexion larvae and, ended around 8.6mm-L-T (25-dph). It was distinguished by fast growth of trunk and tail, acquisition of adult axial muscle distribution and completion of gill filament development, improving locomotion and oxygenation performances. It corresponded to transition towards metamorphosing stage as indicated by later isometric growth, musculature maturation and acquisition of juvenile phenotype. Metamorphosis seemed to end at L-m2, suggesting to avoid zootechnic handling before this size.
机译:在孵化后1至71天(dph),在中膜饲养的厚唇灰鱼Chelon labrosus中研究异速生长和个体发育。形态计量生长的多变量同构分析区分了三个截然不同的发育节,这些节被两个形态计量变质长度分开(L-m1 = 4.46 +/- 0.06mm; L-m2 = 28.56 +/- 1.04mm)。体重增长还显示出由两个拐点隔开的三个不同的发作,与形态功能改变相关。首发涉及屈曲前的幼虫,结束于4.5mm-L-T(14-dph),与估计的L-m1相符。它的特点是生长减少,但是形态发生和分化过程很激烈。器官发生和异速变化表明,发展优先重点是通过提高检测能力(感觉系统发育),消化能力(头部生长)和同化性能(消化系统分化)以及呼吸效率(g发育)来提高饲养效率。第二次发作涉及屈曲后的幼虫,结束于8.6mm-L-T(25-dph)。它的特点是躯干和尾巴快速生长,获得成人轴向肌肉分布并完成g丝发育,改善运动和充氧性能。如随后的等距生长,肌肉成熟和幼年表型的获得所表明的,它对应于向变态阶段的过渡。变形似乎在L-m2处结束,这表明应避免在此大小之前进行动物技术处理。

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