首页> 外文OA文献 >The Arabidopsis ABSCISIC ACID-INSENSITIVE2 (ABI2) and ABI1 genes encode homologous protein phosphatases 2C involved in abscisic acid signal transduction.
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The Arabidopsis ABSCISIC ACID-INSENSITIVE2 (ABI2) and ABI1 genes encode homologous protein phosphatases 2C involved in abscisic acid signal transduction.

机译:拟南芥ABSCISIC ACID-INSENSITIVE2(ABI2)和ABI1基因编码与脱落酸信号转导有关的同源蛋白磷酸酶2C。

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摘要

Abscisic acid (ABA) mediates seed maturation and adaptive responses to environmental stress. In Arabidopsis, the ABA-INSENSITIVE1 (ABI1) protein phosphatase 2C is required for proper ABA responsiveness both in seeds and in vegetative tissues. To determine whether the lack of recessive alleles at the corresponding locus could be explained by the existence of redundant genes, we initiated a search for ABI1 homologs. One such homolog turned out to be the ABI2 locus, whose abi2-1 mutation was previously known to decrease ABA sensitivity. Whereas abi1-1 is (semi)dominant, abi2-1 has been described as recessive and maternally controlled at the germination stage. Unexpectedly, the sequence of the abi2-1 mutation showed that it converts Gly-168 to Asp, which is precisely the same amino acid substitution found in abi1-1 and at the coincidental position within the ABI1 phosphatase domain (Gly-180 to Asp). In vitro assays and functional complementation studies in yeast confirmed that the ABI2 protein is an active protein phosphatase 2C and that the abi2-1 mutation reduced phosphatase activity as well as affinity to Mg2+. Although a number of differences between the two mutants in adaptive responses to stress have been reported, quantitative comparisons of other major phenotypes showed that the effects of both abi1-1 and abi2-1 on these processes are nearly indistinguishable. Thus, the homologous ABI1 and ABI2 phosphatases appear to assume partially redundant functions in ABA signaling, which may provide a mechanism to maintain informational homeostasis.
机译:脱落酸(ABA)介导种子成熟和对环境胁迫的适应性反应。在拟南芥中,ABA-INSENSITIVE1(ABI1)蛋白磷酸酶2C是种子和植物组织中适当的ABA响应所必需的。为了确定是否可以通过冗余基因的存在来解释相应位点隐性等位基因的缺乏,我们开始了对ABI1同源物的搜索。一种这样的同源物竟然是ABI2基因座,先前已知其abi2-1突变会降低ABA敏感性。 abi1-1是(半)显性的,而abi2-1被描述为是隐性的,并且在发芽阶段由母体控制。出乎意料的是,abi2-1突变的序列显示它将Gly-168转换为Asp,这与在abi1-1和ABI1磷酸酶结构域中的巧合位置(从Gly-180到Asp)恰好相同的氨基酸取代。酵母中的体外测定和功能互补研究证实,ABI2蛋白是一种活性蛋白磷酸酶2C,并且abi2-1突变降低了磷酸酶活性以及对Mg2 +的亲和力。尽管已经报道了两个突变体在对压力的适应性反应中的许多差异,但是对其他主要表型的定量比较显示,abi1-1和abi2-1对这些过程的影响几乎无法区分。因此,同源的ABI1和ABI2磷酸酶似乎在ABA信号传导中承担部分冗余功能,这可能提供了维持信息稳态的机制。

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