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不定芽的侵入生长并不影响刺槐形成层的周长。

Intrusive growth of initials does not affect cambial circumference in Robinia pseudoacacia.

机构信息

Polish Academy of Sciences Botanical Garden - Centre for Biological Diversity Conservation in Powsin, Prawdziwka 2, 02-973, Warsaw, Poland.

Institute of Biology, University of Opole, Oleska 22, 45-052, Opole, Poland.

出版信息

Sci Rep. 2022 May 6;12(1):7428. doi: 10.1038/s41598-022-11272-y.

Abstract

This study aimed to test the hypothesis whether intrusive growth of initial cells is related to the increase in circumference of Robinia pseudoacacia vascular cambium-both qualitatively and quantitatively. The mode of intrusive growth of cambial initial cells was also studied. Samples collected from tree trunks were examined using series of semi-thin transverse sections. Anatomical reconstructions of radial and tangential planes of analysed fragments of cambial tissue were made. Observations and measurements have shown that the intrusive growth of R. pseudoacacia initial cells does not contribute to an increase in tangential dimension of observed tissue fragments where cell rearrangement occurs. Moreover, initially separated tangential walls of cells (between which cambial initial cell elongates intrusively) are transformed into obliquely oriented walls. These results stand in accordance with a statement that only symplastic growth of initials, not intrusive growth, is responsible for the increase in circumference in all woody plants with the continuous cambial cylinder. Moreover, we managed to capture the moment of transition of initial status from one cell to another for the first time. This phenomenon may be explained on the basis of the system of mechanical stresses operating not only in the secondary meristematic tissue but also in a whole plant organism.

摘要

本研究旨在检验这样一个假设,即初始细胞的侵入性生长是否与刺槐形成层周径的增加有关——无论是定性的还是定量的。还研究了形成层原始细胞侵入性生长的方式。从树干上采集的样本用一系列半薄横切进行了检查。对分析的形成层组织片段的径向和切向平面进行了解剖重建。观察和测量表明,刺槐初始细胞的侵入性生长不会导致观察到的组织片段的切向尺寸增加,而细胞重排发生在这些组织片段中。此外,最初分离的细胞切线壁(在这些切线壁之间,形成层原始细胞侵入性地伸长)转化为斜向壁。这些结果与以下观点一致,即在具有连续形成层柱的所有木本植物中,只有原始细胞的胞质分裂生长,而不是侵入性生长,才是周长增加的原因。此外,我们首次成功地捕捉到了原始状态从一个细胞向另一个细胞转变的瞬间。这种现象可以基于不仅在次生分生组织中而且在整个植物生物体中起作用的力学应力系统来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c254/9076624/aa155f4bcfc9/41598_2022_11272_Fig1_HTML.jpg

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