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在体外培养的拟南芥叶柄中启动去分化和结构变化。

Initiation of dedifferentiation and structural changes in in vitro cultured petiole of Arabidopsis thaliana.

机构信息

School of Life Science and Technology, Tongji University, 200092 Shanghai, China.

出版信息

Protoplasma. 2010 May;241(1-4):75-81. doi: 10.1007/s00709-010-0108-x. Epub 2010 Feb 2.

Abstract

Although the method of tissue culturing has been used widely in practice for a long time, and there are numerous hypotheses to explain the dedifferentiation phenomenon in the tissue culturing, many details of mechanism of dedifferentiation remain unclear. In the study, dedifferentiation process is initiated in the residual procambium, followed by the procambium-derived cells and finally xylem parenchyma cells under the culturing of Arabidopsis thaliana petiole explants. The procambium may induce its derivative cells to undergo dedifferentiation, which in turn induce the xylem parenchyma cells to dedifferentiate. This phenomenon is very similar to the activity of interfascicular cambium induced by intrafascicular cambium in secondary growth of plant stems. In the present study, only the paired procambium-derived cells and xylem parenchyma truly underwent dedifferentiation, whereas the initial changes in the procambium simply recovered the inherent meristematic capacity of those cells. In transverse section of petiole of A. thaliana, parenchyma cells outside the vascular bundle did not participate in dedifferentiation and gradually disintegrated under the culture conditions. Obviously, the time for initiation and difficulty underlain for undergoing dedifferentiation are dependent on the differential degree and location of parenchyma cells in the petiole.

摘要

尽管组织培养方法在实践中已经被广泛应用了很长时间,并且有许多假说可以解释组织培养中的去分化现象,但去分化机制的许多细节仍然不清楚。在本研究中,拟南芥叶柄外植体培养过程中,去分化过程首先发生在残余原形成层中,随后发生在原形成层衍生细胞中,最后发生在木质部薄壁细胞中。原形成层可能诱导其衍生细胞发生去分化,进而诱导木质部薄壁细胞发生去分化。这一现象与茎次生生长中,束内形成层诱导束间形成层的活性非常相似。在本研究中,只有成对的原形成层衍生细胞和木质部薄壁细胞真正发生了去分化,而原形成层最初的变化只是恢复了这些细胞固有的分生能力。在拟南芥叶柄的横切面上,维管束外的薄壁细胞没有参与去分化,在培养条件下逐渐解体。显然,去分化的起始时间和难度取决于叶柄中薄壁细胞的分化程度和位置。

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