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轴伸长可随着壁微纤丝的净纵向取向而发生。

Axis elongation can occur with net longitudinal orientation of wall microfibrils.

作者信息

Paolillo Dominick J

机构信息

1 Section of Plant Biology, Cornell University, Ithaca, NY 14853, USA (tel +1 607 255 3273; fax +1 607 255 5407; e-mail

出版信息

New Phytol. 2000 Mar;145(3):449-455. doi: 10.1046/j.1469-8137.2000.00601.x.

Abstract

During the initial phases of elongation of pea internodes, oat and rice coleoptiles, oat mesocotyls, soybean hypocotyls and dandelion peduncles, net transverse orientation of cellulose wall microfibrils (Mfs) was found in the outer epidermal wall. This paper demonstrates that in all these axes, with the exception of rice coleoptile, net longitudinal orientation of microfibrils occurs in the outer epidermal wall in portions of the axes that were still elongating at the time of sampling. The timing of the transition to net longitudinal orientation and whether the transition proceeded acropetally or basipetally varied with the type of axis under study. The variability of the relationship between extension and the transition from net transverse to net longitudinal orientation suggests that factors other than extension are important in determining the transition. Layers of longitudinal wall microfibrils may be added to the extending epidermal wall to bolster its tensile strength commensurate with its function during and after extension. Attention is drawn to the parallels between the concept of tissue tension in growing axes and the concept that the epidermis functions as a stressed skin in the support of mature plant parts in primary growth.

摘要

在豌豆节间、燕麦和水稻胚芽鞘、燕麦中胚轴、大豆下胚轴以及蒲公英花茎伸长的初始阶段,在其外表皮细胞壁中发现纤维素壁微纤丝(Mfs)呈净横向排列。本文表明,在所有这些轴器官中,除水稻胚芽鞘外,在取样时仍在伸长的轴器官部分的外表皮细胞壁中,微纤丝呈净纵向排列。向净纵向排列转变的时间以及这种转变是向顶进行还是向基进行,因所研究的轴器官类型而异。伸长与从净横向排列向净纵向排列转变之间关系的变异性表明,除伸长外的其他因素在决定这种转变中也很重要。纵向壁微纤丝层可能会添加到正在伸长的表皮细胞壁中,以增强其拉伸强度,使其与伸长期间及之后的功能相匹配。人们注意到生长轴器官中组织张力的概念与表皮在初生生长中作为支撑成熟植物部分的受力外皮的概念之间存在相似之处。

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