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ICE1 和 ZOU 独立于它们在胚乳发育中的作用,决定拟南芥初生种子休眠的深度。

ICE1 and ZOU determine the depth of primary seed dormancy in Arabidopsis independently of their role in endosperm development.

机构信息

Department of Crop Genetics, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.

Department of Plant Biology and Institute for Genetics and Genomics in Geneva (iGE3), University of Geneva, 30, Quai Ernest-Ansermet CH-1211, Geneva, 4, Switzerland.

出版信息

Plant J. 2019 Apr;98(2):277-290. doi: 10.1111/tpj.14211. Epub 2019 Feb 18.

Abstract

Seed dormancy is a widespread and key adaptive trait that is essential for the establishment of soil seed banks and prevention of pre-harvest sprouting. Herein we demonstrate that the endosperm-expressed transcription factors ZHOUPI (ZOU) and INDUCER OF CBF EXPRESSION1 (ICE1) play a role in determining the depth of primary dormancy in Arabidopsis. We show that ice1 or zou increases seed dormancy and the double mutant has an additive phenotype. This increased dormancy is associated with increased ABA levels, and can be separated genetically from any role in endosperm maturation because loss of ABA biosynthesis or DELAY OF GERMINATION 1 reverses the dormancy phenotype without affecting the aberrant seed morphology. Consistent with these results, ice1 endosperms had an increased capacity for preventing embryo greening, a phenotype previously associated with an increase in endospermic ABA levels. Although ice1 changes the expression of many genes, including some in ABA biosynthesis, catabolism and/or signalling, only ABA INSENSITIVE 3 is significantly misregulated in ice1 mutants. We also demonstrate that ICE1 binds to and inhibits expression of ABA INSENSITIVE 3. Our data demonstrate that Arabidopsis ICE1 and ZOU determine the depth of primary dormancy during maturation independently of their effect on endosperm development.

摘要

种子休眠是一种广泛存在且关键的适应特性,对于建立土壤种子库和防止收获前发芽至关重要。本文中,我们证明了胚乳表达的转录因子 ZHOUPI(ZOU)和 CBF 表达诱导因子 1(ICE1)在决定拟南芥初级休眠深度方面发挥作用。我们发现 ice1 或 zou 会增加种子休眠,并且双突变体具有累加表型。这种休眠增加与 ABA 水平升高有关,并且可以从胚乳成熟中的任何作用遗传上分离出来,因为 ABA 生物合成的丧失或萌发延迟 1 逆转了休眠表型,而不影响异常的种子形态。与这些结果一致的是,ice1 胚乳具有增加防止胚胎变绿的能力,这是以前与胚乳 ABA 水平升高相关的表型。尽管 ice1 改变了许多基因的表达,包括一些在 ABA 生物合成、分解代谢和/或信号转导中的基因,但只有 ABA 不敏感 3 在 ice1 突变体中显著失调。我们还证明 ICE1 结合并抑制 ABA 不敏感 3 的表达。我们的数据表明,拟南芥 ICE1 和 ZOU 在成熟过程中独立于它们对胚乳发育的影响来决定初级休眠的深度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a6f/6900779/9d3895b93f44/TPJ-98-277-g001.jpg

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