Aquarium of the Bay, The Embarcadero at Beach Street, San Francisco, CA 94133, United States of America.
Loveland Living Planet Aquarium, 12033 South Lone Peak Parkway, Draper, UT 84020, United States of America.
Comp Biochem Physiol A Mol Integr Physiol. 2022 Sep;271:111263. doi: 10.1016/j.cbpa.2022.111263. Epub 2022 Jun 24.
Most species of octopus experience extreme physical decline after a single reproductive bout which extends over a period of days, weeks, or months before eventual death. Although outward indicators of senescence are widely recognized, comparatively little is known about physiological and neural changes accompanying terminal decline in octopuses. Here, we measured changes in behavioral response to nociceptive stimuli across the lifespan in giant Pacific octopus (GPO), Enteroctopus dofleini, held in public aquariums in the USA. Post-euthanasia, tissue was collected from arm tips, and neural and epithelial cell degeneration was quantified and compared with biopsies of arm tips from healthy, pre-reproductive GPOs. Behavioral assays showed significant changes both in low threshold mechanosensory responses and nociceptive behavioral responses beginning early in senescence and extending until euthanasia. Histology data showed that while the ratio of apoptotic cells to total cell number stayed constant between healthy and senescent GPOs, overall neural and epithelial cell density was significantly lower in terminally senescent octopuses compared with healthy controls. Our data provide new insight into the time-course and causes of sensory dysfunction in senescent cephalopods and suggest proactive welfare management should begin early in the senescence phase, well before animals enter terminal decline.
大多数章鱼物种在单次繁殖后会经历极端的身体衰退,这种衰退会持续数天、数周或数月,最终导致死亡。尽管衰老的外在迹象广为人知,但关于章鱼在终末期衰退时伴随的生理和神经变化,人们知之甚少。在这里,我们测量了在美国公共水族馆中饲养的巨型太平洋章鱼(GPO)和 Enteroctopus dofleini 一生中对伤害性刺激的行为反应变化。安乐死后,从臂尖采集组织,并与健康、未繁殖的 GPO 的臂尖活检进行比较,量化和比较神经和上皮细胞退化情况。行为分析表明,低阈值机械感觉反应和伤害性行为反应的变化始于衰老早期,并一直持续到安乐死。组织学数据表明,虽然健康和衰老的 GPO 之间凋亡细胞与总细胞数的比例保持不变,但与健康对照组相比,终末期衰老的章鱼的神经和上皮细胞密度明显较低。我们的数据为衰老头足类动物感觉功能障碍的时间过程和原因提供了新的见解,并表明应在衰老阶段尽早开始积极的福利管理,远在动物进入终末期衰退之前。