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对拟南芥生态型(生态型信息缺失)初生根早期发育过程中后生木质部导管组织发生及导管塌陷现象的评估:过早程序性细胞死亡的结果?

Evaluation of Metaxylem Vessel Histogenesis and the Occurrence of Vessel Collapse during Early Development in Primary Roots of ssp. : A Result of Premature Programmed Cell Death?

作者信息

Saito Susumu, Niki Teruo, Gladish Daniel K

机构信息

Department of Biotechnology, Takushoku University, Tatemachi 815-1, Hachioji, Tokyo 193-0985, Japan.

Department of Biology, Miami University, 1601 University Blvd, Hamilton, OH 45011, USA.

出版信息

Plants (Basel). 2020 Mar 18;9(3):374. doi: 10.3390/plants9030374.

Abstract

Root apical meristem histological organization in has been carefully studied previously. Classical histology describes its system as having a "closed organization" and a development of xylem that conforms to predictable rules. Among the first cell types to begin differentiation are late-maturing metaxylem (LMX) vessels. As part of a larger study comparing domestic maize root development to a wild subspecies of (teosinte), we encountered a metaxylem development abnormality in a small percentage of our specimens that begged further study, as it interrupted normal maturation of LMX. Primary root tips of young seedlings of ssp. were fixed, embedded in appropriate resins, and sectioned for light and transmission electron microscopy. Longitudinal and serial transverse sections were analyzed using computer imaging to determine the position and timing of key xylem developmental events. We observed a severe abnormality of LMX development among 3.5% of the 227 seedlings we screened. All LMX vessel elements in these abnormal roots collapsed and probably became non-functional shortly after differentiation began. Cytoplasm and nucleoplasm in the abnormal LMX elements became condensed and subdivided into irregularly-shaped "macrovesicles" as their cell walls collapsed inward. We propose that these seedlings possibly suffered from a mutation that affected the timing of the programmed cell death (PCD) that is required to produce functional xylem vessels, such that autolysis of the cytoplasm was prematurely executed, i.e., prior to the development and lignification of secondary walls.

摘要

先前已对[具体物种]的根尖分生组织组织学结构进行了仔细研究。经典组织学将其系统描述为具有“封闭组织”以及符合可预测规则的木质部发育过程。最早开始分化的细胞类型之一是晚熟后生木质部(LMX)导管。作为一项将栽培玉米根系发育与[具体物种]的野生亚种(大刍草)进行比较的更大规模研究的一部分,我们在一小部分标本中遇到了后生木质部发育异常的情况,由于它干扰了LMX的正常成熟,因此需要进一步研究。对[具体物种]亚种幼苗的初生根尖进行固定,嵌入适当的树脂中,并进行切片以用于光学显微镜和透射电子显微镜观察。使用计算机成像分析纵向和连续横切片,以确定关键木质部发育事件的位置和时间。在我们筛选的227株[具体物种]幼苗中,有3.5%表现出严重的LMX发育异常。这些异常根中的所有LMX导管分子在分化开始后不久就会塌陷,可能随即失去功能。随着细胞壁向内塌陷,异常LMX分子中的细胞质和核质变得浓缩,并细分为不规则形状的“大泡”。我们推测,这些幼苗可能发生了一种突变,该突变影响了产生功能性木质部导管所需的程序性细胞死亡(PCD)的时间,以至于细胞质的自溶过早发生,即在次生壁发育和木质化之前。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4aea/7154905/1089f47ad53a/plants-09-00374-g001.jpg

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