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Functional characterization of MADS box genes involved in the determination of oil palm flower structure.

机译:油棕榈花结构测定中涉及疯子箱基因的功能表征。

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In order to study the molecular regulation of flower development in the monoecious species oil palm (Elaeis guineensis), cDNAs of 12 MADS box genes from this plant belonging to seven distinct subfamilies were previously isolated and characterized. Here studies carried out on five of these genes, each likely to be involved in floral morphogenesis: EgSQUA1 (SQUAMOSA subfamily); EgAGL2-1 (AGL2 subfamily); EgGLO2 (GLOBOSA subfamily); EgDEF1 (DEFICIENS subfamily); and EgAG2 (AGAMOUS subfamily), are described. In order to determine where and when in the plant these genes are likely to function, their spatial and temporal patterns of expression were studied during the development of male and female inflorescences, either of normal phenotype or displaying a homeotic flowering abnormality known as mantled. In parallel, the phenotypic effects of ectopically expressing these genes in transgenic Arabidopsis thaliana plants were analysed. The data suggest a broad conservation of floral homeotic gene functions between oil palm and previously described model species, although a few minor variations in the zones of activity of certain genes cannot be excluded. The data also indicate distinct molecular identities for the morphologically similar floral organs of whorls 1 and 2. They also reveal reduced expression of putative B, C/D, and E class genes in mantled flowers, which undergo a homeotic transformation comparable to B class mutants of model species..
机译:为了研究单一物种油棕(ELAEISGuineensis)中花发育的分子调控,此前,该植物的12个疯子箱基因的CDNA先前预先分离出并表征。在这里,在这些基因中进行的五项研究,每个可能参与花卉形态发生:EGSQUA1(Squamosa Subfamily); EGAGL2-1(AGL2亚家族); Egglo2(Globosa subfamily); EGDEF1(DEFICIENS SUBFAMILY);描述了EGAG2(嘧料亚家族)。为了确定在植物中的何处和当这些基因中可能起作用,在雄性和雌性花序的发育过程中研究了它们的常规表型或显示称为MANTLED的归属性开花异常的患者的空间和时间表达模式。并行地,分析了异化表达在转基因拟南芥植物中这些基因的表型效应。该数据表明油棕和先前描述的模型物种之间的广泛保护花卉归属性基因功能,尽管某些基因的活性区域的少量变化不能被排除在外。该数据还表明了螺旋1和2的形态学上类似的花卉器官的不同分子标识。它们还揭示了在Mantled花中的推定B,C / D和E类基因的表达减少,这经历了与B级突变体相当的占性转化模型种类..

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