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An Unusual Abscisic Acid and Gibberellic Acid Synergism Increases Somatic Embryogenesis Facilitates Its Genetic Analysis and Improves Transformation in Medicago truncatula

机译:异常的脱落酸和赤霉素协同作用增加体细胞胚发生促进其遗传分析并改善Medi藜的转化

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摘要

Somatic embryogenesis (SE) can be readily induced in leaf explants of the Jemalong 2HA genotype of the model legume Medicago truncatula by auxin and cytokinin, but rarely in wild-type Jemalong. Gibberellic acid (GA), a hormone not included in the medium, appears to act in Arabidopsis as a repressor of the embryonic state such that low ABA (abscisic acid): GA ratios will inhibit SE. It was important to evaluate the GA effect in M. truncatula in order to formulate generic SE mechanisms, given the Arabidopsis information. It was surprising to find that low ABA:GA ratios in M. truncatula acted synergistically to stimulate SE. The unusual synergism between GA and ABA in inducing SE has utility in improving SE for regeneration and transformation in M. truncatula. Expression of genes previously shown to be important in M. truncatula SE was not increased. In investigating genes previously studied in GA investigations of Arabidopsis SE, there was increased expression of GA2ox and decreased expression of PICKLE, a negative regulator of SE in Arabidopsis. We suggest that in M. truncatula there are different ABA:GA ratios required for down-regulating the PICKLE gene, a repressor of the embryonic state. In M. truncatula it is a low ABA:GA ratio while in Arabidopsis it is a high ABA:GA ratio. In different species the expression of key genes is probably related to differences in how the hormone networks optimise their expression.
机译:可以通过生长素和细胞分裂素在豆科植物紫花苜蓿模型的Jemalong 2HA基因型的叶外植体中容易诱导体细胞胚发生(SE),而在野生型Jemalong中很少诱导。赤霉素(GA)是一种不包含在培养基中的激素,在拟南芥中似乎起着抑制胚胎状态的作用,因此低的ABA(脱落酸):GA比率会抑制SE。考虑到拟南芥的信息,重要的是要评估截短分枝杆菌中的GA效应,以制定通用的SE机制。令人惊讶地发现,截叶分枝杆菌中低的ABA:GA比值起协同作用来刺激SE。 GA和ABA之间在诱导SE中的异常协同作用可用于改善SE以促进截枝分枝杆菌的再生和转化。以前被证明在截短支原体SE中很重要的基因的表达没有增加。在对先前在拟南芥SE中进行GA调查的基因进行研究时,GA2ox的表达增加,而拟南芥中SE的负调控子PICKLE的表达则下降。我们建议在M. truncatula中,下调PICKLE基因(一种胚胎状态的阻遏物)需要不同的ABA:GA比。在truncatula中,ABA:GA的比率低,而在拟南芥中,ABA:GA的比率高。在不同物种中,关键基因的表达可能与激素网络优化其表达方式的差异有关。

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