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研究了苔藓植物拟南芥原质体的生长和发育及其对光的控制。

Studies on the growth and development of protoplasts of the moss, Physcomitrella patens, and its control by light.

机构信息

John Innes Institute, Colney Lane, NR4 7UH, Norwich, UK.

出版信息

Planta. 1981 Apr;151(4):331-8. doi: 10.1007/BF00393287.

Abstract

Protoplasts prepared from protonemal cultures of the moss Physcomitrella patens begin to regenerate a new cell wall within 1 h of removal from cellulase. The wall is seen as a gradually thickening mat of fibres when examined by scanning electron microscopy. Development of filaments from protoplasts takes place in the majority of cases only after one or more cell divisions have occurred. The direction of emergence of filaments is random in uniform light, but strongly negatively phototropic in bright unidirectional horizotal light. Filament growth is also strongly negatively phototropic. The influence of unidirectional light can be destroyed by incubating protoplasts in the presence of colchicine. Filaments growing in unidirectional light have cytoplasmic microtubules running along their long axes and in close association with large organelles. These results are discussed in terms of the potential for this system for the study of polarity in plants.

摘要

从藓类植物Physcomitrella patens 的原丝体培养物中制备的原生质体在从纤维素酶中去除后 1 小时内开始重新生成新的细胞壁。通过扫描电子显微镜检查,细胞壁被视为逐渐变厚的纤维垫。在大多数情况下,只有在发生一次或多次细胞分裂之后,原生质体才会发育成丝状体。在均匀光下,丝状体的出现方向是随机的,但在明亮的单向水平光下强烈负向向光性。丝状体的生长也强烈负向向光性。单向光的影响可以通过在秋水仙素存在下孵育原生质体来破坏。在单向光中生长的丝状体具有沿其长轴延伸并与大细胞器紧密相关的细胞质微管。这些结果是根据该系统在植物极性研究中的潜力进行讨论的。

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