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胚乳受限的十字花科种子萌发:脱落酸抑制独行菜(水芹)胚诱导的胚乳弱化以及水芹和拟南芥的胚乳破裂。

Endosperm-limited Brassicaceae seed germination: abscisic acid inhibits embryo-induced endosperm weakening of Lepidium sativum (cress) and endosperm rupture of cress and Arabidopsis thaliana.

作者信息

Müller Kerstin, Tintelnot Stefanie, Leubner-Metzger Gerhard

机构信息

Institute for Biology II, Botany/Plant Physiology, Albert-Ludwigs-University Freiburg, Schänzlestr. 1, D-79104 Freiburg i. Br., Germany.

出版信息

Plant Cell Physiol. 2006 Jul;47(7):864-77. doi: 10.1093/pcp/pcj059. Epub 2006 May 16.

Abstract

The endosperm is a barrier for radicle protrusion of many angiosperm seeds. Rupture of the testa (seed coat) and rupture of the endosperm are two sequential events during the germination of Lepidium sativum L. and Arabidopsis thaliana (L.) Heyhn. Abscisic acid (ABA) specifically inhibits the endosperm rupture of these two closely related Brassicaceae species. Lepidium seeds are large enough to allow the direct measurement of endosperm weakening by the puncture force method. We found that the endosperm weakens prior to endosperm rupture and that ABA delays the onset and decreases the rate of this weakening process in a dose-dependent manner. An early embryo signal is required and sufficient to induce endosperm weakening, which afterwards appears to be an organ-autonomous process. Gibberellins can replace this embryo signal; de novo gibberellin biosynthesis occurs in the endosperm and weakening is regulated by the gibberellin/ABA ratio. Our results suggest that the control of radicle protrusion during the germination of Brassicaceae seeds is mediated, at least in part, by endosperm weakening. We propose that Lepidium is an emerging Brassicaceae model system for endosperm weakening and that the complementary advantages of Lepidium and Arabidopsis can be used in parallel experiments to investigate the molecular mechanisms of endosperm weakening.

摘要

胚乳是许多被子植物种子胚根突出的障碍。种皮破裂和胚乳破裂是独行菜和拟南芥种子萌发过程中的两个相继发生的事件。脱落酸(ABA)特异性抑制这两种近缘十字花科植物的胚乳破裂。独行菜种子足够大,可以通过穿刺力法直接测量胚乳弱化情况。我们发现胚乳在破裂前会弱化,并且ABA会以剂量依赖的方式延迟这种弱化过程的开始并降低其速率。早期胚胎信号是诱导胚乳弱化所必需且充分的,之后胚乳弱化似乎是一个器官自主的过程。赤霉素可以替代这种胚胎信号;胚乳中会重新合成赤霉素,弱化过程受赤霉素/ABA比值的调节。我们的结果表明,十字花科种子萌发过程中胚根突出的控制至少部分是由胚乳弱化介导的。我们提出独行菜是研究胚乳弱化的新兴十字花科模式系统,并且独行菜和拟南芥的互补优势可用于平行实验,以研究胚乳弱化的分子机制。

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