红鳍笛鲷
- 网络lutjanus erythopterus;lutjanus erythropterus;lutjanus sanguineus
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饥饿过程中,红鳍笛鲷的特定生长率(SGR)呈现负值,表明其出现了负增长;
The SGR of Crimson Snapper was negative during starvation , indicating negative growth in the fish .
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将精子电泳图谱转化为数据,分析得到10%的抗冻剂甘油对军曹鱼与红鳍笛鲷精子的保护效果较好。同时发现,不同的降温方法是造成精子DNA损伤的最大因素。
After turning electrophoresis profiles of sperm into the data , we concluded that 10 % glycerol antifreeze played a better role in protecting Cobia and crimson snapper cryopreservation sperm , and different cooling methods was the biggest factor to sperm DNA damage .
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运用单细胞电泳技术对军曹鱼与红鳍笛鲷超低温冷冻保存的精子进行精子细胞核冷冻损伤分析。
Analyzed frozen damage to Cobia and crimson snapper cryopreservation sperm nuclei , which was used single cell gel electrophoresis .
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说明红鳍笛鲷在饥饿过程中首先动用血糖作为能源物质,随后又动用血脂,而向向几乎不动用血蛋白。
These results indicated that during starvation , Crimson Snapper used plasma glucose at first , then plasma lipid and seldom or didn 't use plasma protein .