首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Towards the Identification of New Genes Involved in ABA-Dependent Abiotic Stresses Using Arabidopsis Suppressor Mutants of abh1 Hypersensitivity to ABA during Seed Germination
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Towards the Identification of New Genes Involved in ABA-Dependent Abiotic Stresses Using Arabidopsis Suppressor Mutants of abh1 Hypersensitivity to ABA during Seed Germination

机译:拟南芥种子萌发期间对ABA过敏的拟南芥抑制突变体对涉及ABA依赖性非生物胁迫的新基因的鉴定

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摘要

Abscisic acid plays a pivotal role in the abiotic stress response in plants. Although great progress has been achieved explaining the complexity of the stress and ABA signaling cascade, there are still many questions to answer. Mutants are a valuable tool in the identification of new genes or new alleles of already known genes and in elucidating their role in signaling pathways. We applied a suppressor mutation approach in order to find new components of ABA and abiotic stress signaling in Arabidopsis. Using the abh1 (ABA hypersensitive 1) insertional mutant as a parental line for EMS mutagenesis, we selected several mutants with suppressed hypersensitivity to ABA during seed germination. Here, we present the response to ABA and a wide range of abiotic stresses during the seed germination and young seedling development of two suppressor mutants—soa2 (suppressor of abh1 hypersensitivity to ABA 2) and soa3 (suppressor of abh1 hypersensitivity to ABA 3). Generally, both mutants displayed a suppression of the hypersensitivity of abh1 to ABA, NaCl and mannitol during germination. Both mutants showed a higher level of tolerance than Columbia-0 (Col-0—the parental line of abh1) in high concentrations of glucose. Additionally, soa2 exhibited better root growth than Col-0 in the presence of high ABA concentrations. soa2 and soa3 were drought tolerant and both had about 50% fewer stomata per mm2 than the wild-type but the same number as their parental line—abh1. Taking into account that suppressor mutants had the same genetic background as their parental line—abh1, it was necessary to backcross abh1 with Landsberg erecta four times for the map-based cloning approach. Mapping populations, derived from the cross of abh1 in the Landsberg erecta background with each suppressor mutant, were created. Map based cloning in order to identify the suppressor genes is in progress.
机译:脱落酸在植物的非生物胁迫反应中起关键作用。尽管在解释压力和ABA信号级联的复杂性方面已取得了巨大进展,但仍有许多问题需要解答。突变体是鉴定新基因或已知基因的新等位基因以及阐明其在信号传导途径中的作用的宝贵工具。为了发现拟南芥中ABA和非生物胁迫信号的新组成部分,我们应用了抑制突变方法。使用abh1(ABA超敏1)插入突变体作为EMS诱变的亲本系,我们选择了在种子发芽过程中对ABA超敏性受到抑制的几个突变体。在这里,我们介绍了两个抑制突变体soa2(对ABA 2的abh1超敏性的抑制剂)和soa3(对ABA 3的abh1超敏性的抑制剂)对种子发芽和幼苗生长期间对ABA的响应以及各种非生物胁迫。通常,两个突变体在发芽过程中均显示abh1对ABA,NaCl和甘露醇的超敏性受到抑制。在高浓度的葡萄糖中,这两个突变体均表现出比Columbia-0(Col-0-abh1的亲本系)更高的耐受性。此外,在高ABA浓度下,soa2的根系生长比Col-0更好。 soa2和soa3具有耐旱性,每毫米 2 的气孔数均比野生型少50%,但数量与其亲本abh1相同。考虑到抑制突变体的遗传背景与其亲本系abh1相同,因此有必要将abh1与Landsberg erecta回交四次,以进行基于图的克隆方法。创建了映射种群,该种群是从Landsberg erecta背景中的abh1与每个抑制突变体的杂交获得的。基于图的克隆以鉴定抑制基因正在进行中。

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