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年龄对下胚轴力学的影响。

Age Effects on Hypocotyl Mechanics.

作者信息

Saxe Friederike, Weichold Susann, Reinecke Antje, Lisec Jan, Döring Anett, Neumetzler Lutz, Burgert Ingo, Eder Michaela

机构信息

Department of Biomaterials, Max-Planck-Institute of Colloids and Interfaces, Potsdam, Germany.

Cluster of Excellence »Image Knowledge Gestaltung«, Humboldt University, Berlin, Germany.

出版信息

PLoS One. 2016 Dec 15;11(12):e0167808. doi: 10.1371/journal.pone.0167808. eCollection 2016.

Abstract

Numerous studies deal with composition and molecular processes involved in primary cell wall formation and alteration in Arabidopsis. However, it still remains difficult to assess the relation between physiological properties and mechanical function at the cell wall level. The thin and fragile structure of primary cell walls and their large biological variability, partly related to structural changes during growth, make mechanical experiments challenging. Since, to the best of our knowledge, there is no reliable data in the literature about how the properties of the fully elongated zone of hypocotyls change with age. We studied in a series of experiments on two different seed batches the tensile properties the region below the growth zone of 4 to 7 day old etiolated Arabidopsis hypocotyls. Additionally, we analysed geometrical parameters, hypocotyl density and cellulose content as individual traits and their relation to tissue mechanics. No significant differences of the mechanical parameters of the non-growing region between 5-7 day old plants could be found whereas in 4 day old plants both tensile stiffness and ultimate tensile stress were significantly lower than in the older plants. Furthermore hypocotyl diameters and densities remain almost the same for 5, 6 and 7 day old seedlings. Naturally, hypocotyl lengths increase with age. The evaluation whether the choice-age or length-influences the mechanical properties showed that both are equally applicable sampling parameters. Additionally, our detailed study allows for the estimation of biological variability, connections between mechanics and hypocotyl age could be established and complement the knowledge on biochemistry and genetics affecting primary plant cell wall growth. The application of two different micromechanical devices for testing living Arabidopsis hypocotyls allows for emphasizing and discussing experimental limitations and for presenting a wide range of possibilities to address current and future questions related to plant cell wall mechanics, synthesis and growth in combination with molecular biology methodologies.

摘要

许多研究涉及拟南芥初生细胞壁形成和改变过程中的组成及分子过程。然而,在细胞壁层面评估生理特性与机械功能之间的关系仍然困难重重。初生细胞壁薄且易碎,以及其较大的生物学变异性(部分与生长过程中的结构变化有关),使得力学实验颇具挑战性。据我们所知,文献中尚无关于下胚轴完全伸长区的特性如何随年龄变化的可靠数据。我们在一系列实验中,对两批不同种子培育出的4至7日龄黄化拟南芥下胚轴生长区下方区域的拉伸特性进行了研究。此外,我们分析了几何参数、下胚轴密度和纤维素含量等个体特征及其与组织力学的关系。在5至7日龄的植株中,未发现非生长区力学参数有显著差异,而在4日龄的植株中,拉伸刚度和极限拉伸应力均显著低于 older plants(此处原文有误,结合前文推测应为“older plants”,即 older plants 应为“较老的植株”)。此外,5、6和7日龄幼苗的下胚轴直径和密度几乎保持不变。自然地,下胚轴长度会随着年龄增长。对选择年龄或长度是否影响力学特性的评估表明,两者都是同样适用的采样参数。此外,我们的详细研究能够估计生物学变异性,建立力学与下胚轴年龄之间的联系,并补充关于影响植物初生细胞壁生长的生物化学和遗传学方面的知识。应用两种不同的微机械装置来测试活体拟南芥下胚轴,有助于强调和讨论实验局限性,并展示一系列广泛的可能性,以结合分子生物学方法解决当前和未来与植物细胞壁力学、合成及生长相关的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2728/5158002/1e7c0ccee697/pone.0167808.g001.jpg

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