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蕨类配子体的早期发育:从光合产物的协同产生和渗透离子吸收角度解读向原叶体结构的转变

Early development in fern gametophytes: interpreting the transition to prothallial architecture in terms of coordinated photosynthate production and osmotic ion uptake.

作者信息

Racusen Richard H

机构信息

Department of Biology, University of Maryland, College Park 20742, USA.

出版信息

Ann Bot. 2002 Feb;89(2):227-40. doi: 10.1093/aob/mcf032.

Abstract

Gametophytes of Onoclea sensiblis L. were grown under various light and media-ion conditions to gain a better understanding of the source/sink relationships between photosynthetic and ion-absorbing cells. There was a clear interdependency between green cell and rhizoid functions, such that the growth and development of the rhizoids was completely dependent on the internal delivery of photosynthates from green cells, and conversion of the one-dimensional filament into the two-dimensional prothallus required monovalent cations that could only be provided by rhizoid uptake. The need for monovalent cations was related to osmotic demands of dividing and expanding cells; prothallial development was blocked by monovalent cation deficiency, and the system resorted to Na+ uptake to support cell expansion when K+ was absent. Surgical excisions of filament cells further demonstrated the high degree of coordinated growth between the light-absorbing and ion-absorbing regions. It was also learned that excised sub-apical cells of the protonemata, like the intensively studied apical cell, were capable of remodelling remnants of the filament into a normal prothallus.

摘要

对敏感鳞毛蕨的配子体在各种光照和培养基离子条件下进行培养,以更好地了解光合细胞与离子吸收细胞之间的源/库关系。绿色细胞和假根功能之间存在明显的相互依存关系,即假根的生长和发育完全依赖于绿色细胞光合产物的内部输送,而将一维丝状体转化为二维原叶体需要单价阳离子,而这些阳离子只能通过假根吸收来提供。对单价阳离子的需求与分裂和扩展细胞的渗透需求有关;原叶体发育因单价阳离子缺乏而受阻,当缺乏钾离子时,该系统会通过吸收钠离子来支持细胞扩展。对丝状体细胞的手术切除进一步证明了光吸收区域和离子吸收区域之间高度协调的生长。还了解到,原丝体切除的亚顶端细胞,就像经过深入研究的顶端细胞一样,能够将丝状体的残余部分重塑为正常的原叶体。

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