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Treatment conditions and biochemical processes influencing seed priming effectiveness

机译:影响种子催芽效果的处理条件和生化过程

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摘要

A review of the scientific literature indicates osmotic priming (osmopriming) as the principal method of seed priming and polyethylene glycol (PEG) as the principal osmotic agent. An analysis of the available data across experiments carried out with different species under varying conditions showed an average 11% increase in percent germination and 36% shorter mean germination time (MGT) in primed vs unprimed seeds. Moreover, in primed seeds MGT was less dependent on temperature, which is consistentwith the effects expected from the treatment. Priming effects are mainly influenced by osmotic potential, temperature and time; major biochemical processes (repair of damaged DNA and RNA, preparation for cell division and increased antioxidant activity)are involved in treatment effects to an extent which is not fully ascertained in literature. A reduction of seed storage life is the major disadvantage of priming and the principal constraint to its diffusion, since dehydration to the initial moisture (drying-back) is needed to allow seed storage. Seed behaviour during drying-back, the role of the raffinose family oligosaccharides in cell membrane integrity and the expression of antioxidant enzymes in germinating seeds need to be further elucidated in asufficient number of species, to promote a more reliable use of this technique.
机译:对科学文献的评论指出,渗透引发(osmopriming)是种子引发的主要方法,而聚乙二醇(PEG)是主要渗透剂。对在不同条件下使用不同物种进行的各种实验中的可用数据进行的分析显示,发芽和未发芽种子的平均发芽率提高了11%,平均发芽时间(MGT)缩短了36%。此外,在引发的种子中,MGT对温度的依赖性较小,这与处理预期的效果一致。引发作用主要受渗透势,温度和时间的影响。主要的生化过程(受损的DNA和RNA的修复,细胞分裂的准备和抗氧化活性的提高)在治疗效果中涉及的程度尚未在文献中完全确定。减少种子储存寿命是引发的主要缺点,也是其扩散的主要限制,因为需要脱水至初始水分(回干)才能储存种子。在足够数量的物种中,需要进一步阐明在干燥过程中的种子行为,棉子糖家族寡糖在细胞膜完整性中的作用以及抗氧化剂在发芽种子中的表达,以促进该技术的更可靠使用。

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