首页> 外文期刊>The Journal of Experimental Biology >The early life history of tissue oxygenation in crustaceans: the strategy of the myodocopid ostracod Cylindroleberis mariae
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The early life history of tissue oxygenation in crustaceans: the strategy of the myodocopid ostracod Cylindroleberis mariae

机译:甲壳类动物组织充氧的早期生活史:Myodocopid ostracod Cylindroleberis mariae的策略

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摘要

We studied basic principles of respiratory physiology in Cylindroleberididae, Cylindroleberis mariae Baird 1850, which are millimetre-sized crustaceans (myodocop ostracod) having a fossil record dating back to about 425 millions years ago. Facing experimental changes of O(2) partial pressures in the range 2-40 kPa (normoxia is 21 kPa), C. mariae lack any regulatory mechanism to adapt their ventilatory and circulatory activity. Thus, the oxygenation status of their internal milieu must follow, as a dependant variable, the ambient oxygenation. Freely behaving C. mariae exhibit a marked diurnal activity rhythm. They are actively swimming in the water column during night, where they inspire in normoxic-normocapnic water. They are resting in self-made nests during daytime, where they are rebreathing in a confined and hypoxic environment. By analogy to extensive previous literature data, we suggest that these changes of respiratory gas content, and the associated tissue gas status, participate to the shaping of their metabolic activity and behaviour. To conclude, as Cylindroleberididae are early crustaceans exhibiting a remarkable stasis since the Palaeozoic, present data illustrates how principles of tissue oxygenation strategy can cover an impressive time scale.
机译:我们研究了Cylindroleberididae,Cylindroleberis mariae Baird 1850的呼吸生理基本原理,这些原理是毫米大小的甲壳类(myodocop ostracod),其化石记录可以追溯到大约4.25亿年前。面对O(2)分压在2-40 kPa(常氧为21 kPa)范围内的实验变化,海蓝藻缺乏任何调节机制来适应其通气和循环活动。因此,其内部环境的氧合状态必须作为环境变量跟随环境氧合。自由行为的C. mariae表现出明显的昼夜活动节律。他们在夜间积极地在水柱中游泳,从那里吸取高氧-高碳酸血症的水。它们白天白天在自制巢中休息,在狭窄而低氧的环境中呼吸。通过与大量先前文献数据进行类比,我们建议呼吸气体含量的这些变化以及相关的组织气体状态参与其代谢活动和行为的塑造。总的来说,自古生代以来,梭状棘突科是早期甲壳类动物,表现出显着的瘀滞,因此,目前的数据说明了组织充氧策略的原理如何能够涵盖令人印象深刻的时间尺度。

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