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首页> 外文期刊>Journal of Experimental Botany >Members of the gibberellin receptor gene family GID1 (GIBBERELLIN INSENSITIVE DWARF1) play distinct roles during Lepidium sativum and Arabidopsis thaliana seed germination.
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Members of the gibberellin receptor gene family GID1 (GIBBERELLIN INSENSITIVE DWARF1) play distinct roles during Lepidium sativum and Arabidopsis thaliana seed germination.

机译:赤霉素受体基因家族 GID1 GIBBERELLIN INSENSITIVE DWARF1 )的成员在小鳞草和拟南芥期间起着不同的作用。种子发芽。

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Germination of endospermic seeds is partly regulated by the micropylar endosperm, which acts as constraint to radicle protrusion. Gibberellin (GA) signalling pathways control coat-dormancy release, endosperm weakening, and organ expansion during seed germination. Three GIBBERELLIN INSENSITIVE DWARF1 (GID1) GA receptors are known in Arabidopsis thaliana: GID1a, GID1b, and GID1c. Molecular phylogenetic analysis of angiosperm GID1 s reveals that they cluster into two eudicot (GID1ac, GID1b) groups and one monocot group. Eudicots have at least one gene from each of the two groups, indicating that the different GID1 receptors fulfil distinct roles during plant development. A comparative Brassicaceae approach was used, in which gid1 mutant and whole-seed transcript analyses in Arabidopsis were combined with seed-tissue-specific analyses of its close relative Lepidium sativum (garden cress), for which three GID1 orthologues were cloned. GA signalling via the GID1ac receptors is required for Arabidopsis seed germination, GID1b cannot compensate for the impaired germination of the gid1agid1c mutant. Transcript expression patterns differed temporarily, spatially, and hormonally, with GID1b being distinct from GID1ac in both species. Endosperm weakening is mediated, at least in part, through GA-induced genes encoding cell-wall-modifying proteins. A suppression subtraction hybridization (SSH) cDNA library enriched for sequences that are highly expressed during early germination in the micropylar endosperm contained expansins and xyloglucan endo-transglycosylases/hydrolases (XTHs). Their transcript expression patterns in both species strongly suggest that they are regulated by distinct GID1-mediated GA signalling pathways. The GID1ac and GID1b pathways seem to fulfil distinct regulatory roles during Brassicaceae seed germination and seem to control their downstream targets distinctly.Digital Object Identifier http://dx.doi.org/10.1093/jxb/err214
机译:胚乳种子的萌发部分受小孔胚乳的调控,胚乳胚乳限制胚根突出。赤霉素(GA)信号传导通路控制种子萌发过程中毛被休眠释放,胚乳弱化和器官扩张。在拟南芥中已知三种赤霉素诱导的DWARF1(GID1)GA受体:GID1a,GID1b和GID1c。对被子植物GID1的分子系统发育分析表明,它们被分为两个真双子叶植物(GID1ac,GID1b)组和一个单子叶植物组。真双子叶植物在两组中至少有一个基因,表明不同的GID1受体在植物发育过程中起着不同的作用。使用比较的十字花科方法,其中将拟南芥中的 gid1 突变体和全种子转录物分析与其近缘的 Lepidium的种子组织特异性分析相结合sativum (花园水芹),为其克隆了三个 GID1 直向同源物。拟南芥种子萌发需要通过GID1ac受体进行GA信号传导,GID1b无法补偿 gid1agid1c 突变体发芽受损。转录本表达模式在暂时,空间和激素上都不同,在两个物种中 GID1b 与 GID1ac 不同。胚乳弱化至少部分是通过GA诱导的编码细胞壁修饰蛋白的基因介导的。抑制减法杂交(SSH)cDNA文库,富含在胚珠胚乳早期发芽过程中高度表达的序列,其中包含扩展蛋白和木葡聚糖内转糖基酶/水解酶(XTH)。他们在两个物种中的转录表达模式强烈表明它们受不同的GID1介导的GA信号通路的调节。在十字花科种子萌发过程中,GID1ac和GID1b途径似乎发挥了不同的调节作用,并且似乎可以清楚地控制其下游靶标。数字对象标识符http://dx.doi.org/10.1093/jxb/err214

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