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什么是离析木质部薄壁组织?以非洲热带硬木非洲桃花心木(檀香科)为例。

What is disjunctive xylem parenchyma? A case study of the African tropical hardwood Okoubaka aubrevillei (Santalaceae).

机构信息

Laboratory for Wood Biology and Xylarium, Royal Museum for Central Africa, Tervuren B-3080, Belgium.

出版信息

Am J Bot. 2009 Aug;96(8):1399-408. doi: 10.3732/ajb.0800355. Epub 2009 Jul 6.

Abstract

The morphological variation and structure-function relationships of xylem parenchyma still remain open to discussion. We analyzed the three-dimensional structure of a poorly known type of xylem parenchyma with disjunctive walls in the tropical hardwood Okoubaka aubrevillei (Santalaceae). Disjunctive cells occurred among the apotracheal parenchyma cells and at connections between axial and ray parenchyma cells. The disjunctive cells were partly detached one from another, but their tubular structures connected them into a continuous network of axial and ray parenchyma. The connecting tubules had thick secondary walls and simple pits with plasmodesmata at the points where one cell contacted a tubule of another cell. The imperforate tracheary elements of the ground tissue were seven times longer than the axial parenchyma strands, a fact that supports a hypothesis that parenchyma cells develop disjunctive walls because they are pulled apart and partly separated during the intrusive growth of fibers. We discuss unresolved details of the formation of disjunctive cell walls and the possible biomechanical advantage of the wood with disjunctive parenchyma: the proportion of tissue that improves mechanical strength is increased by the intrusive elongation of fibers (thick-walled tracheids), whereas the symplastic continuum of the parenchyma is maintained through formation of disjunctive cells.

摘要

木质部薄壁组织的形态变异和结构-功能关系仍存在争议。我们分析了热带硬木奥克巴凯(安息香科)中具有间断壁的一种鲜为人知的木质部薄壁组织的三维结构。间断细胞出现在离管薄壁组织细胞之间以及轴向薄壁组织细胞与射线薄壁组织细胞之间的连接处。间断细胞部分彼此分离,但它们的管状结构将它们连接成一个连续的轴向和射线薄壁组织网络。连接管具有厚的次生壁和简单的纹孔,在一个细胞接触另一个细胞的管的位置有胞间连丝。基质组织的无穿孔导管比轴向薄壁组织束长七倍,这一事实支持了一个假说,即薄壁细胞形成间断壁是因为它们在纤维的侵入性生长过程中被拉开并部分分离。我们讨论了间断细胞壁形成的未解决细节以及具有间断薄壁组织的木材的可能生物力学优势:通过纤维(厚壁导管)的侵入性伸长增加了改善机械强度的组织比例,而通过形成间断细胞维持了薄壁组织的胞质连续体。

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