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景天科五个属胚柄的发育,特别着重于胞间连丝的分布和超微结构

Development of Embryo Suspensors for Five Genera of Crassulaceae with Special Emphasis on Plasmodesmata Distribution and Ultrastructure.

作者信息

Kozieradzka-Kiszkurno Małgorzata, Majcher Daria, Brzezicka Emilia, Rojek Joanna, Wróbel-Marek Justyna, Kurczyńska Ewa

机构信息

Department of Plant Cytology and Embryology, Faculty of Biology, University of Gdańsk, Wita Stwosza 59, 80-308 Gdańsk, Poland.

Institute of Biology, Biotechnology and Environmental Protection, Faculty of Natural Sciences, University of Silesia, Jagiellońska 28, 40-032 Katowice, Poland.

出版信息

Plants (Basel). 2020 Mar 3;9(3):320. doi: 10.3390/plants9030320.

Abstract

The suspensor in the majority of angiosperms is an evolutionally conserved embryonic structure functioning as a conduit that connects ovule tissues with the embryo proper for nutrients and growth factors flux. This is the first study serving the purpose of investigating the correlation between suspensor types and plasmodesmata (PD), by the ultrastructure of this organ in respect of its full development. The special attention is paid to PD in representatives of Crassulaceae genera: , , , and . The contribution of the suspensor in transporting nutrients to the embryo was confirmed by the basal cell structure of the suspensor which produced, on the micropylar side of all genera investigated, a branched haustorium protruding into the surrounding ovular tissue and with wall ingrowths typically associated with cell transfer. The cytoplasm of the basal cell was rich in endoplasmic reticulum, mitochondria, dictyosomes, specialized plastids, microtubules, microbodies and lipid droplets. The basal cell sustained a symplasmic connection with endosperm and neighboring suspensor cells. Our results indicated the dependence of PD ultrastructure on the type of suspensor development: (i) simple PD are assigned to an uniseriate filamentous suspensor and (ii) PD with an electron-dense material are formed in a multiseriate suspensor. The occurrence of only one or both types of PD seems to be specific for the species but not for the genus. Indeed, in the two tested species of (with the distinct uniseriate/multiseriate suspensors), a diversity in the structure of PD depends on the developmental pattern of the suspensor. In all other genera (with the multiseriate type of development of the suspensor), the one type of electron-dense PD was observed.

摘要

在大多数被子植物中,胚柄是一种进化上保守的胚胎结构,其功能是作为一个管道,将胚珠组织与胚体连接起来,以实现营养物质和生长因子的流动。这是第一项通过对该器官完全发育阶段的超微结构来研究胚柄类型与胞间连丝(PD)之间相关性的研究。特别关注了景天科属的代表植物中的胞间连丝:[此处原文缺失具体属名]。通过胚柄的基部细胞结构证实了胚柄在向胚体运输营养物质方面的作用,在所研究的所有属的珠孔侧,基部细胞都会产生一个分支状的吸器,伸入周围的胚珠组织,并且具有通常与细胞转运相关的细胞壁内突。基部细胞的细胞质富含内质网、线粒体、高尔基体、特化的质体、微管、微体和脂滴。基部细胞与胚乳和相邻的胚柄细胞保持着共质体连接。我们的结果表明胞间连丝超微结构依赖于胚柄发育类型:(i)简单胞间连丝存在于单列丝状胚柄中,(ii)具有电子致密物质的胞间连丝形成于多列胚柄中。仅一种或两种类型胞间连丝的出现似乎是物种特异性的,而非属特异性的。确实,在[此处原文缺失具体属名]的两个测试物种中(具有明显不同的单列/多列胚柄),胞间连丝结构的多样性取决于胚柄的发育模式。在所有其他属中(具有多列型胚柄发育),观察到一种类型的电子致密胞间连丝。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1c7/7154837/027df1513dbc/plants-09-00320-g001.jpg

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