Plant Biotechnology Research Laboratories, Department of Biology, Virginia Commonwealth University, 816 Park Avenue, 23284-2012, Richmond, VA, USA.
Plant Cell Rep. 1988 Oct;7(6):430-3. doi: 10.1007/BF00269530.
In the Azolla-Anabaena azollae symbiotic system, Anabaena akinetes get entrapped between the indusium and the apical cap of the megaspore apparatus during megasporocarp development, thus maintaining the continuity of the cyanobacterial association throughout the life cycle of the fern. The entrapped akinetes serve as the source of inoculum for infecting the new sporophyte when it is emerging from the megaspore apparatus. A procedure to generate Anabaena-free Azolla was developed by fertilizing the germinating megasporocarps in which the indusium along with the akinetes were removed by micromanipulation. This method has the advantage of not requiring drastic treatments of Azolla with antibiotics to eliminate the endosymbiotic cyanobacterial cells. Details of this new method and its usefulness in studies aimed at recombination of Azolla with Anabaena azollae are discussed.
在满江红-鱼腥藻共生系统中,鱼腥藻厚壁孢子在大孢子囊发育过程中被夹在孢子囊盖和内种皮之间,从而在蕨类植物的整个生命周期中保持蓝藻共生的连续性。被捕获的厚壁孢子作为接种物的来源,当新的孢子体从大孢子囊中萌发时,就可以感染新的孢子体。通过对萌发的大孢子囊进行施肥,然后通过显微操作去除内种皮和厚壁孢子,从而开发出一种生产无鱼腥藻满江红的方法。与用抗生素处理满江红以消除内共生蓝藻细胞的方法相比,该方法具有优势。本文详细介绍了这种新方法及其在与满江红鱼腥藻重组研究中的应用。