Ruijter J M, Wendelaar Bonga S E
Department of Anatomy and Embryology, Catholic University, Nijmegen, The Netherlands.
Cell Tissue Res. 1987 Sep;249(3):691-9. doi: 10.1007/BF00217341.
An analysis of the allometric relations of the total volumes occupied by prolactin (PRL) and corticotropic (ACTH) cells (PRL volume and ACTH volume, respectively) to body length and a study of the immunocytochemical staining intensity of PRL and ACTH cells were used to determine the differences in activity of PRL and ACTH cells in freshwater-reared and in saltwater-reared Cynolebias whitei during the entire lifespan of this annual cyprinodont fish. An inflection in the allometric relation of PRL volume to body length was observed in fish of one-week old. The relatively large PRL volume in younger fish may be related to PRL cell activity before hatching. No inflections were observed in the allometric relations of PRL volume and ACTH volume to body length at the onset of maturation and the onset of ageing, indicating that the increased pituitary growth in maturing and ageing C. whitei is not the result of changes in PRL or ACTH cells. The slope of the allometric relation of PRL volume to body length in freshwater-reared fish was significantly steeper than the slope in saltwater-reared fish. The PRL volume in adult freshwater-reared fish was eight times larger than that in saltwater-reared fish of the same length. The intensity of immunocytochemical staining of saltwater PRL cells was significantly reduced. These volumetric and staining differences correspond to the low functional demand put upon PRL cells in saltwater-adapted fish. In contrast, the slope of the allometric relation of ACTH volume to body length and the intensity of immunocytochemical staining of ACTH cells were similar in freshwater-reared and in saltwater-reared fish.(ABSTRACT TRUNCATED AT 250 WORDS)
通过分析催乳素(PRL)细胞和促肾上腺皮质激素(ACTH)细胞所占总体积(分别为PRL体积和ACTH体积)与体长的异速生长关系,以及对PRL和ACTH细胞免疫细胞化学染色强度的研究,来确定淡水饲养和海水饲养的惠氏辛氏鳉在其整个生命周期中PRL和ACTH细胞活性的差异。在一周龄的鱼中观察到PRL体积与体长的异速生长关系出现拐点。幼鱼中相对较大的PRL体积可能与孵化前PRL细胞的活性有关。在成熟开始和衰老开始时,未观察到PRL体积和ACTH体积与体长的异速生长关系出现拐点,这表明成熟和衰老的惠氏辛氏鳉垂体生长增加并非PRL或ACTH细胞变化的结果。淡水饲养鱼中PRL体积与体长的异速生长关系斜率明显比海水饲养鱼的斜率更陡。成年淡水饲养鱼的PRL体积比相同长度的海水饲养鱼大八倍。海水PRL细胞的免疫细胞化学染色强度显著降低。这些体积和染色差异与适应海水的鱼对PRL细胞的低功能需求相对应。相比之下,淡水饲养和海水饲养的鱼中ACTH体积与体长的异速生长关系斜率以及ACTH细胞的免疫细胞化学染色强度相似。(摘要截短至250字)