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鉴定对 ABA3(GIA3)不敏感的生长,这是一个隐性突变,影响 ABA 信号传导,控制拟南芥萌发后的早期生长。

Identification of growth insensitive to ABA3 (gia3), a recessive mutation affecting ABA Signaling for the control of early post-germination growth in Arabidopsis thaliana.

机构信息

Université de Genève, Département de Biologie Végétale, 30, quai Ernest-Ansermet-Sciences III, 1211 Genève 4, Switzerland.

出版信息

Plant Cell Physiol. 2010 Feb;51(2):239-51. doi: 10.1093/pcp/pcp183. Epub 2009 Dec 18.

Abstract

The stress phytohormone ABA inhibits the developmental transition taking the mature embryo in the dry seed towards a young seedling. ABA also induces the accumulation of the basic leucine zipper (bZIP) transcription factor ABA-insensitive 5 (ABI5) which, apart from blocking endosperm rupture, also protects the embryo by stimulating the expression of late embryogenesis abundant (LEA) genes that conferred osmotolerance during seed maturation. It is unknown whether ABA recruits additional embryonic pathways to control early seedling growth and fitness. Here we identify gia3 (growth insensitive to ABA3), a recessive locus in Arabidopsis mediating cotyledon cellular maturation and ABA-dependent repression of cotyledon expansion and greening. Microarray studies showed that expression of the essential mid-embryogenesis gene Maternal Embryo Effect 26 (MEE26) is induced by ABA during early seedling growth in wild-type (WT) or abi5 plants but not in gia3 mutants. However, we also show that the GIA3 locus controls ABA-dependent gene expression responses that partially overlap with those controlled by ABI5. Thus, the gia3 locus identifies an additional arm of ABA signaling, distinct from that controlled by ABI5, which recruits MEE26 expression and maintains cotyledon embryonic identity. Fine mapping localized the gia3 locus within a 1 Mb interval of chromosome 3, containing a large DNA insertion of a duplicated region of chromosome 2. It remains unknown at present whether gia3 phenotypes are the result of single or multiple genetic alterations.

摘要

胁迫激素 ABA 抑制成熟胚胎从干种子向幼苗的发育转变。ABA 还诱导基本亮氨酸拉链 (bZIP) 转录因子 ABA 不敏感 5 (ABI5) 的积累,除了阻止胚乳破裂外,ABI5 还通过刺激晚期胚胎丰富 (LEA) 基因的表达来保护胚胎,这些基因在种子成熟过程中赋予了耐渗性。目前尚不清楚 ABA 是否招募其他胚胎途径来控制早期幼苗的生长和适应性。在这里,我们鉴定了 gia3(对 ABA3 不敏感的生长),这是拟南芥中的一个隐性基因座,介导子叶细胞成熟和 ABA 依赖性抑制子叶扩张和变绿。微阵列研究表明,在野生型 (WT) 或 abi5 植物中,MEE26(母体胚胎效应 26)是胚胎中期发育所必需的基因,在早期幼苗生长过程中,ABA 诱导其表达,但在 gia3 突变体中则不诱导。然而,我们还表明,GIA3 基因座控制与 ABI5 控制的部分重叠的 ABA 依赖性基因表达反应。因此,gia3 基因座确定了与 ABI5 控制的信号不同的 ABA 信号的另一个分支,它招募 MEE26 表达并维持子叶胚胎身份。精细定位将 gia3 基因座定位在包含染色体 2 重复区域的 1 Mb 染色体 3 间隔内。目前尚不清楚 gia3 表型是单一还是多种遗传改变的结果。

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