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拟南芥中的etr1-2突变在种子休眠维持、湿冷处理和萌发过程中影响脱落酸、生长素、细胞分裂素和赤霉素代谢途径。

The etr1-2 mutation in Arabidopsis thaliana affects the abscisic acid, auxin, cytokinin and gibberellin metabolic pathways during maintenance of seed dormancy, moist-chilling and germination.

作者信息

Chiwocha Sheila D S, Cutler Adrian J, Abrams Suzanne R, Ambrose Stephen J, Yang Jenny, Ross Andrew R S, Kermode Allison R

机构信息

Department of Biological Sciences, Simon Fraser University, Burnaby, BC, Canada V5A 1S6.

出版信息

Plant J. 2005 Apr;42(1):35-48. doi: 10.1111/j.1365-313X.2005.02359.x.

Abstract

In Arabidopsis thaliana, the etr1-2 mutation confers dominant ethylene insensitivity and results in a greater proportion of mature seeds that exhibit dormancy compared with mature seeds of the wild-type. We investigated the impact of the etr1-2 mutation on other plant hormones by analyzing the profiles of four classes of plant hormones and their metabolites by HPLC-ESI/MS/MS in mature seeds of wild-type and etr1-2 plants. Hormone metabolites were analyzed in seeds imbibed immediately under germination conditions, in seeds subjected to a 7-day moist-chilling (stratification) period, and during germination/early post-germinative growth. Higher than wild-type levels of abscisic acid (ABA) appeared to contribute, at least in part, to the greater incidence of dormancy in mature seeds of etr1-2. The lower levels of abscisic acid glucose ester (ABA-GE) in etr1-2 seeds compared with wild-type seeds under germination conditions (with and without moist-chilling treatments) suggest that reduced metabolism of ABA to ABA-GE likely contributed to the accumulation of ABA during germination in the mutant. The mutant seeds exhibited generally higher auxin levels and a large build-up of indole-3-aspartate when placed in germination conditions following moist-chilling. The mutant manifested increased levels of cytokinin glucosides through zeatin-O-glucosylation (Z-O-Glu). The resulting increase in Z-O-Glu was the largest and most consistent change associated with the ETR1 gene mutation. There were more gibberellins (GA) and at higher concentrations in the mutant than in wild-type. Our results suggest that ethylene signaling modulates the metabolism of all the other plant hormone pathways in seeds. Additionally, the hormone profiles of etr1-2 seed during germination suggest a requirement for higher than wild-type levels of GA to promote germination in the absence of a functional ethylene signaling pathway.

摘要

在拟南芥中,etr1 - 2突变赋予显性乙烯不敏感性,与野生型成熟种子相比,导致更大比例的成熟种子表现出休眠。我们通过高效液相色谱 - 电喷雾串联质谱(HPLC - ESI/MS/MS)分析野生型和etr1 - 2植株成熟种子中四类植物激素及其代谢物的谱图,研究了etr1 - 2突变对其他植物激素的影响。在萌发条件下立即吸水的种子、经过7天湿冷(分层)处理的种子以及萌发/萌发后早期生长过程中,对激素代谢物进行了分析。脱落酸(ABA)水平高于野生型似乎至少部分导致了etr1 - 2成熟种子中休眠发生率更高。在萌发条件下(有或没有湿冷处理),etr1 - 2种子中脱落酸葡萄糖酯(ABA - GE)水平低于野生型种子,这表明ABA向ABA - GE的代谢减少可能导致了突变体萌发过程中ABA的积累。经过湿冷处理后置于萌发条件下时,突变体种子通常表现出较高的生长素水平和大量吲哚 - 3 - 天冬氨酸的积累。通过玉米素 - O - 葡萄糖基化(Z - O - Glu),突变体中细胞分裂素葡萄糖苷水平升高。由此导致的Z - O - Glu增加是与ETR1基因突变相关的最大且最一致的变化。突变体中的赤霉素(GA)比野生型更多且浓度更高。我们的结果表明,乙烯信号传导调节种子中所有其他植物激素途径的代谢。此外,etr1 - 2种子在萌发过程中的激素谱表明,在缺乏功能性乙烯信号传导途径的情况下,需要高于野生型水平的GA来促进萌发。

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