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小型硬骨鱼食蚊鱼(Poecilia reticulata, 彼得斯)(银汉鱼目,花鳉科)发育过程中的肌肉生长和肌球蛋白同工型转变:一项组织化学、免疫组织化学、超微结构和形态测量学研究

Muscle growth and myosin isoform transitions during development of a small teleost fish, Poecilia reticulata (Peters) (Atheriniformes, Poeciliidae): a histochemical, immunohistochemical, ultrastructural and morphometric study.

作者信息

Veggetti A, Mascarello F, Scapolo P A, Rowlerson A, Carnevali C

机构信息

Istituto di Anatomia degli Animali Domestici, Bologna, Italy.

出版信息

Anat Embryol (Berl). 1993 Apr;187(4):353-61. doi: 10.1007/BF00185893.

Abstract

The myosin composition of lateral muscle in Poecilia reticulata from birth to adult was studied by ATPase histochemistry and immunostaining with myosin isoform-specific antibodies. At birth the muscle consists of two layers containing developmental isoforms of myosin. In deep layer fibres the developmental myosin is replaced by the adult fast-white isoform soon after birth. In the epaxial and hypaxial monolayer fibres the myosin composition present at birth (J1) is replaced within 3 days by another (J2). In some fibres, this J2 composition is retained in the adult, but in others it is slowly replaced by the adult slow-red muscle isoform. Close to the lateral line, all monolayer fibres are already in transition between the J2 myosin and the adult slow-red form at birth, and rapidly complete the transition to slow-red form. These fibres, together with others generated de novo in an underlying hyperplastic zone, form the red muscle layer of the adult. The pink muscle develops during the first month after birth, and by 31 days it consists of an outer, middle and inner layer. A few middle layer fibres are already present at birth, while the outer layer fibres first appear 3 days after birth. The thin inner layer is probably a transitional form between the middle pink and adult white types, and appears at about 31 days. A morphometric analysis showed that growth of the white muscle occurs principally by hypertrophy. Even at the magnification level of the electron microscope, no satellite cells or myoblasts which could give rise to new fibres were found in the white muscle, except in the far epaxial and hypaxial regions and only in the first 10 days. A zone of hyperplastic growth was also found lying just under the superficial monolayer close to the lateral line, and this presumably contributes fibres to the red and pink muscle layers.

摘要

通过ATP酶组织化学以及使用肌球蛋白亚型特异性抗体进行免疫染色,研究了孔雀鱼从出生到成年期侧肌的肌球蛋白组成。出生时,肌肉由两层组成,含有发育中的肌球蛋白亚型。出生后不久,深层纤维中的发育型肌球蛋白被成年快速白色亚型所取代。在轴上和轴下单层纤维中,出生时存在的肌球蛋白组成(J1)在3天内被另一种(J2)所取代。在一些纤维中,这种J2组成在成年期得以保留,但在另一些纤维中,它会逐渐被成年慢速红色肌亚型所取代。靠近侧线处,所有单层纤维在出生时就已处于J2肌球蛋白和成年慢速红色形式之间的转变阶段,并迅速完成向慢速红色形式的转变。这些纤维与在下方增生区新产生的其他纤维一起,构成了成年鱼的红色肌层。粉色肌在出生后的第一个月内发育形成,到31天时,它由外层、中层和内层组成。出生时就已存在少量中层纤维,而外层纤维在出生后3天首次出现。薄的内层可能是中间粉色型和成年白色型之间的过渡形式,大约在31天时出现。形态计量学分析表明,白色肌的生长主要通过肥大实现。即使在电子显微镜的放大倍数下,除了在远轴上和轴下区域且仅在最初的10天内,在白色肌中未发现可产生新纤维的卫星细胞或成肌细胞。在靠近侧线的浅表单层下方还发现了一个增生性生长区域,推测它为红色和粉色肌层提供纤维。

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