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首页> 外文期刊>Plant and Cell Physiology >Temporal Expression Patterns of Hormone Metabolism Genes during Imbibition of Arabidopsis thaliana Seeds: A Comparative Study on Dormant and Non-Dormant Accessions
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Temporal Expression Patterns of Hormone Metabolism Genes during Imbibition of Arabidopsis thaliana Seeds: A Comparative Study on Dormant and Non-Dormant Accessions

机译:拟南芥种子吸入过程中激素代谢基因的时间表达模式:休眠和非休眠种的比较研究。

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Seed imbibition is a prerequisite for subsequent dormancy and germination control. Here, we investigated imbibition responses of Arabidopsis seeds by transcriptomic and hormone profile analyses using dormant [Cape Verde Islands (Cvi)] and non-dormant [Columbia (Col)] accessions. Once imbibed, seeds of both accessions swelled most up to 3 h, reflecting water uptake. Microarray analysis showed that in both accessions, seeds imbibed for 15 min, 30 min and 1 h were less active in gene expression than at 3 h. More than 2,000 genes were either up-regulated or down-regulated in seeds imbibed for 3 h. Some genes up-regulated at 3 h were already induced in seeds imbibed for 1 h, suggestive of genome reprogramming early after the onset of imbibition. Imbibition-induced genes in seeds imbibed for 3 h included those up-regulated in both Col and Cvi (common) or unique to either accession (accession specific). Up-regulated genes that were both common and Cvi-specific were over-represented for sugar metabolism and the pentose phosphate pathway, whereas Col-specific genes were over-represented for ribosomal protein genes. Quantification of plant hormones showed that ABA and salicylic acid (SA) contents were higher, but gibberellin A4 (GA4), N6-(Δ2-isopentenyl)adenine (iP), jasmonic acid (JA), JA–isoleucine (JA-Ile) and IAA were lower in imbibed seeds of Cvi compared with Col. In addition, changes in IAA and JA were initiated before 1 h, whereas ABA and JA-Ile declined 3 h after the onset of imbibition. An increase in GA4 and iP appeared to be correlated temporally with the initiation of secondary water uptake, which marks the completion of germination.
机译:吸收种子是随后休眠和控制发芽的先决条件。在这里,我们通过转录组和激素谱分析使用休眠的[Cape Verde Islands(Cvi)]和非休眠的[Columbia(Col)]来研究拟南芥种子的吸水反应。一旦被吸收,两个种的种子最多膨胀3小时,反映出水分的吸收。基因芯片分析表明,在两个种质中,吸水15分钟,30分钟和1小时的种子的基因表达活性均低于3小时。吸收了3 h的种子中有2,000多个基因被上调或下调。在吸收了1 h的种子中已经诱导了3 h上调的一些基因,这表明在吸收开始后很早就进行了基因组重编程。吸吮了3 h的种子中的诱导诱导基因包括在Col和Cvi中均上调的基因(常见),或者对于任一登录都是独特的(登录特定)。糖代谢和戊糖磷酸途径的共同上位基因和Cvi特异的上调基因被过度代表,而核糖体蛋白基因则被过度表达了Col特异基因。植物激素的定量分析表明,ABA和水杨酸(SA)含量较高,但赤霉素A 4 (GA 4 ),N 6 -吸取的Cvi种子中的(Δ 2 -异戊烯基)腺嘌呤(iP),茉莉酸(JA),JA-异亮氨酸(JA-Ile)和IAA低于Col.。 IAA和JA在吸水开始后3小时开始,而ABA和JA-Ile在吸水开始后3小时下降。 GA 4 和iP的增加似乎与次级吸水的开始在时间上相关,这标志着发芽的完成。

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