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树状藓类植物孟氏拟垂枝藓配子体水螅体中的细胞角中间层显著增厚:对其在机械支撑功能中的作用的推测。

Cell corner middle lamella in hydroids of dendroid moss Hypnodendron menziesii gametophyte is prominently thickened: a proposed role in the mechanical support function.

作者信息

Chavan Ramesh R, Singh Adya P, Turner Adrian P

机构信息

School of Biological Sciences, The University of Auckland, Private Bag 92019, Auckland, New Zealand.

出版信息

Planta. 2023 Mar 14;257(4):82. doi: 10.1007/s00425-023-04101-7.

Abstract

Significantly thickened corner middle lamella of the hydroid cell wall in the stipe of dendroid moss Hypnodendron menziesii has a mechanical support function. The hydroid cell walls of the erect stipe of Hypnodendron menziesii were investigated using light microscopy (LM), transmission electron microscopy (TEM), and TEM-immunogold labeling in support of the proposed biomechanical function for the highly thickened cell corner middle lamellae. The statistical analyses of dimensions of hydroid cell and wall parameters revealed a strong positive correlation between the area of hydroid cell and (i) the hydroid cell walls adhering to thick corner middle lamella, (ii) the area of the thick cell wall at hydroid corners, and (iii) the maximum thickness of cell wall at hydroid corners. The total area of the thick cell wall at the hydroid corners concomitantly increased with the area of the hydroid cell wall adhering to the middle lamella, and with the increased number of hydroids surrounding a reference hydroid. The results suggest that markedly thickened middle lamellae of the hydroid cell wall in Hypnodendron likely function by preventing hydroid cells from collapsing under the tensile forces generated from the transpirational pull on the water column. The specific localization of (1→4)- β-D-galactan and (1,5)-α-L-arabinan in the interface region of the hydroid cell wall and the thick middle lamella is consistent with these cell wall components being involved in the mechanical strengthening of the interface through firm adhesion as well as elasticity, ensuring the structural stability of this cell wall region, which may be prone to delamination/fracturing from the various internal and external pressures imposed. The copious presence of homogalacturonan in the thick middle lamella may further enhance the strength and flexibility of hydroid cell walls.

摘要

树状藓类植物门氏拟垂枝藓(Hypnodendron menziesii)茎中,水母体细胞壁的角部中层显著增厚,具有机械支撑功能。为了支持高度增厚的细胞角部中层拟具有的生物力学功能,我们利用光学显微镜(LM)、透射电子显微镜(TEM)和TEM免疫金标记技术,对门氏拟垂枝藓直立茎的水母体细胞壁进行了研究。对水母体细胞和细胞壁参数尺寸的统计分析表明,水母体细胞面积与以下各项之间存在强正相关:(i)附着于增厚角部中层的水母体细胞壁;(ii)水母体细胞角部厚细胞壁的面积;(iii)水母体细胞角部细胞壁的最大厚度。水母体细胞角部厚细胞壁的总面积随附着于中层的水母体细胞壁面积以及围绕参考水母体的水母体数量增加而增加。结果表明,门氏拟垂枝藓水母体细胞壁显著增厚的中层可能通过防止水母体细胞在水柱蒸腾拉力产生的拉力作用下坍塌而发挥功能。(1→4)-β-D-半乳聚糖和(1,5)-α-L-阿拉伯聚糖在水母体细胞壁与厚中层的界面区域的特定定位,与这些细胞壁成分通过牢固粘附以及弹性参与界面的机械强化作用一致,确保了该细胞壁区域的结构稳定性,该区域可能因施加的各种内部和外部压力而易于分层/断裂。厚中层中大量存在的同型半乳糖醛酸聚糖可能进一步增强水母体细胞壁的强度和柔韧性。

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