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Regeneration of Freezing-Tolerant Spring Wheat (Triticum aestivum L.) Plants from Cryoselected Callus

机译:低温选择愈伤组织对耐寒性春小麦(Triticum aestivum L.)植物的再生

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摘要

A cryoselection protocol has been developed that provides freezing-tolerant callus that, in turn, can regenerate plants with enhanced cold hardiness. Tolerant calli were selected from spring wheat (Triticum aestivum L.) callus by immersion in liquid nitrogen without addition of cryoprotectants. Less than 15% of the calli survived the initial challenge, whereas 30 to 40% of previously selected calli survived subsequent exposure. Seed progeny from five of 11 regenerant (R2) lines tested exhibited significantly enhanced tolerance to freezing at −12°C. Thus, cryoselection appears to involve at least in part, selection for genetic rather than epigenetic variants. Analysis of one callus line indicated that cryoselection did not induce significant alterations in lipid composition, adenylate energy charge, or freezing point. An increase in the soluble sugar component was detected. Changes were also detected in the protein complement of microsomal membrane and soluble protein extracts of cryoselected callus. In all, seven unique proteins ranging from 79 to 149 kilodaltons were identified. The results demonstrate that freezing tolerant callus can be isolated from a heterogeneous population by cryoselection, and factors that contribute to hardiness at the callus level are biologically stable and can contribute to tolerance at the whole plant level.
机译:已经开发了一种低温选择方案,该方案提供了耐冷冻的愈伤组织,进而可以再生具有增强的耐寒性的植物。通过浸入液氮中而不添加冷冻保护剂来从春小麦(Triticum aestivum L.)愈伤组织中选择耐性愈伤组织。少于15%的愈伤组织在最初的攻击中存活下来,而先前选择的愈伤组织中的30%至40%在随后的暴露后存活了下来。来自11个再生(R2)品系中五个品系的种子后代在-12°C下表现出显着增强的抗冻性。因此,冷冻选择似乎至少部分地涉及对遗传变异而不是表观遗传变异的选择。对一根愈伤组织系的分析表明,冷冻选择不会引起脂质组成,腺苷酸能电荷或冰点的显着改变。检测到可溶性糖组分增加。还检测了微粒体膜的蛋白质补体和冷冻选择的愈伤组织的可溶性蛋白质提取物的变化。总共鉴定出7种独特的蛋白质,范围从79到149道尔顿。结果表明,通过冷冻选择可以从异质群体中分离出耐寒的愈伤组织,并且在愈伤组织水平上有助于坚韧性的因素是生物学稳定的并且可以在整个植物水平上有助于耐受性。

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