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番茄近缘野生种马铃薯叶番茄原生质体培养早期微管蛋白细胞骨架组织的变化。

Changes in the organization of the tubulin cytoskeleton during the early stages of Solanum lycopersicoides Dun. protoplast culture.

作者信息

Tylicki A, Burza W, Malepszy S, Kuraś M

机构信息

Institute of Biology, University of Białystok, Swierkowa 20 B, 15-950 Białystok, Poland.

出版信息

Plant Cell Rep. 2003 Dec;22(5):312-9. doi: 10.1007/s00299-003-0692-8. Epub 2003 Aug 29.

Abstract

Changes in the tubulin cytoskeleton during protoplast culture and plant regeneration of Solanum lycopersicoides Dun. were analyzed using an immunodetection method. Directly after isolation, four groups of protoplasts were distinguished: (1) mononuclear, (2) polynuclear, (3) homogeneous, (4) anuclear. The tubulin cytoskeleton of the protoplasts underwent rearrangements, correlating to the number and structure of cell nuclei in the protoplast. All protoplast groups with the exception of mononuclear were characterized by perturbations in the organization of the tubulin cytoskeleton. Anuclear and homogeneous protoplasts did not have a tubulin cytoskeleton. Polynuclear protoplasts had cortical microtubules, but were not capable of re-forming their original arrangement and did not possess a radial or perinuclear cytoskeleton. Irregularities in microtubule arrangement of these three groups of protoplasts caused their inability to regenerate a cell wall and to divide. Anuclear, polynuclear and homogeneous protoplasts were eliminated from the culture. Mononuclear protoplasts rearranged their cortical microtubules and reestablished the radial and perinuclear tubulin cytoskeleton. Re-formation of the cell suspension and subsequent regeneration of plants occurred exclusively from mononuclear protoplasts, which were able to regenerate cell walls and to divide.

摘要

利用免疫检测方法分析了野生番茄原生质体培养和植株再生过程中微管细胞骨架的变化。原生质体分离后,可直接区分出四组原生质体:(1)单核的,(2)多核的,(3)均匀的,(4)无核的。原生质体的微管细胞骨架发生了重排,这与原生质体中细胞核的数量和结构相关。除单核原生质体外,所有原生质体组的微管细胞骨架组织均受到干扰。无核和均匀原生质体没有微管细胞骨架。多核原生质体有皮质微管,但无法重新形成其原始排列,也没有径向或核周细胞骨架。这三组原生质体微管排列的不规则性导致它们无法再生细胞壁和进行分裂。无核、多核和均匀原生质体从培养物中被淘汰。单核原生质体重排其皮质微管并重新建立径向和核周微管细胞骨架。细胞悬浮液的重新形成以及随后植株的再生仅发生在能够再生细胞壁并进行分裂的单核原生质体中。

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