Matsushima S, Sakai Y, Hira Y
Department of Anatomy, Asahikawa Medical College, Japan.
Am J Anat. 1990 Jan;187(1):32-8. doi: 10.1002/aja.1001870105.
Male adult (200-day-old) Chinese hamsters (Cricetulus griseus) raised from weaning under either LD 16:8 or LD 8:16 were used. The pineal gland of the Chinese hamster consists of superficial (major) and deep (minor) components and a continuous, or interrupted, narrow parenchymal stalk interposed between them. The volume of the superficial pineal including the parenchymal stalk is greater under LD 16:8 than under LD 8:16. Under both photoperiods, pinealocytes in the superficial pineal have larger nuclei and more abundant cytoplasm than those in the deep pineal. Nuclei in the superficial pineal appear pale and usually have irregular profiles, whereas those in the deep pineal appear dark and have round profiles. In the superficial pineal, pinealocyte nuclei are larger, paler, and more irregular; and, in addition, nuclear density is lower under LD 16:8 than under LD 8:16. Similar, but less prominent, photoperiod-induced changes occur in the volume of the deep pineal, the size of pinealocytes, and pinealocyte nuclear morphology in the deep pineal. The results indicate that the development and differentiation of pinealocytes in both pineal portions may be advanced under long photoperiods and delayed under short photoperiods, although pinealocytes in the deep pineal may remain not fully differentiated even in adults. Since testicular weights and body weights are similar under both photoperiods, the photoperiod may exert marked influences on the development of the pineal gland without affecting reproductive activity and growth rates of animals.
选用从断奶起就饲养在16:8光照-黑暗周期或8:16光照-黑暗周期下的成年雄性(200日龄)中国仓鼠(黑线仓鼠)。中国仓鼠的松果体由表层(主要)和深层(次要)部分组成,在它们之间有一个连续的或间断的狭窄实质柄。在16:8光照-黑暗周期下,包括实质柄在内的表层松果体的体积比在8:16光照-黑暗周期下更大。在两种光周期下,表层松果体中的松果体细胞比深层松果体中的松果体细胞具有更大的细胞核和更丰富的细胞质。表层松果体中的细胞核显得苍白,通常具有不规则的轮廓,而深层松果体中的细胞核显得暗黑,具有圆形轮廓。在表层松果体中,松果体细胞的细胞核更大、更苍白且更不规则;此外,在16:8光照-黑暗周期下细胞核密度比在8:16光照-黑暗周期下更低。在深层松果体的体积、松果体细胞的大小以及深层松果体中松果体细胞的核形态方面,也出现了类似但不太显著的光周期诱导变化。结果表明,尽管深层松果体中的松果体细胞即使在成年时可能仍未完全分化,但两种松果体部分中松果体细胞的发育和分化在长光周期下可能会提前,而在短光周期下会延迟。由于在两种光周期下睾丸重量和体重相似,光周期可能对松果体的发育产生显著影响,而不影响动物的生殖活动和生长速率。