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生态型变异对种子代谢响应昼夜水合-脱水循环的影响及其与种子活力的关系。

Ecotypic variability in the metabolic response of seeds to diurnal hydration-dehydration cycles and its relationship to seed vigor.

机构信息

French Associates Institute for Agriculture & Biotechnology of Drylands, Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Israel.

出版信息

Plant Cell Physiol. 2012 Jan;53(1):38-52. doi: 10.1093/pcp/pcr169. Epub 2011 Dec 12.

Abstract

Seeds in the seed bank experience diurnal cycles of imbibition followed by complete dehydration. These conditions pose a challenge to the regulation of germination. The effect of recurring hydration-dehydration (Hy-Dh) cycles were tested on seeds from four Arabidopsis thaliana accessions [Col-0, Cvi, C24 and Ler]. Diurnal Hy-Dh cycles had a detrimental effect on the germination rate and on the final percentage of germination in Col-0, Cvi and C24 ecotypes, but not in the Ler ecotype, which showed improved vigor following the treatments. Membrane permeability measured by ion conductivity was generally increased following each Hy-Dh cycle and was correlated with changes in the redox status represented by the GSSG/GSH (oxidized/reduced glutathione) ratio. Among the ecotypes, Col-0 seeds displayed the highest membrane permeability, whilst Ler was characterized by the greatest increase in electrical conductivity following Hy-Dh cycles. Following Dh 2 and Dh 3, the respiratory activity of Ler seeds significantly increased, in contrast to the other ecotypes, indicative of a dramatic shift in metabolism. These differences were associated with accession-specific content and patterns of change of (i) cell wall-related laminaribiose and mannose; (ii) fatty acid composition, specifically of the unsaturated oleic acid and α-linoleic acid; and (iii) asparagine, ornithine and the related polyamine putrescine. Furthermore, in the Ler ecotype the content of the tricarboxylic acid (TCA) cycle intermediates fumarate, succinate and malate increased in response to dehydration, in contrast to a decrease in the other three ecotypes. These findings provide a link between seed respiration, energy metabolism, fatty acid β-oxidation, nitrogen mobilization and membrane permeability and the improved germination of Ler seeds following Hy-Dh cycles.

摘要

种子库中的种子经历吸水昼夜循环,随后完全脱水。这些条件对发芽的调控构成了挑战。本研究测试了来自拟南芥四个品系(Col-0、Cvi、C24 和 Ler)种子的反复水合-脱水(Hy-Dh)循环的影响。昼夜 Hy-Dh 循环对 Col-0、Cvi 和 C24 生态型的发芽率和最终发芽率有不利影响,但对 Ler 生态型没有影响,Ler 生态型在处理后表现出活力增强。通过离子电导率测量的膜通透性通常在每个 Hy-Dh 循环后增加,并与氧化还原状态的变化相关,该变化由 GSSG/GSH(氧化/还原谷胱甘肽)比代表。在生态型中,Col-0 种子的膜通透性最高,而 Ler 种子在经历 Hy-Dh 循环后电导率的增加最大。在 Dh2 和 Dh3 之后,与其他生态型相比,Ler 种子的呼吸活性显著增加,表明代谢发生了剧烈变化。这些差异与特定接入点的(i)细胞壁相关的纤维二糖和甘露糖;(ii)脂肪酸组成,特别是不饱和油酸和α-亚麻酸;以及(iii)天冬酰胺、鸟氨酸和相关多胺腐胺的含量和变化模式有关。此外,在 Ler 生态型中,三羧酸(TCA)循环中间产物富马酸、琥珀酸和苹果酸的含量在脱水时增加,而在其他三个生态型中则减少。这些发现为 Ler 种子呼吸、能量代谢、脂肪酸β-氧化、氮动员和膜通透性与 Hy-Dh 循环后发芽率提高之间提供了联系。

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