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Auxin binding protein 1 (ABP1) is not required for either auxin signaling or Arabidopsis development

机译:生长素信号传导或拟南芥发育不需要生长素结合蛋白1(ABP1)

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摘要

Auxin binding protein 1 (ABP1) has been studied for decades. It has been suggested that ABP1 functions as an auxin receptor and has an essential role in many developmental processes. Here we present our unexpected findings that ABP1 is neither required for auxin signaling nor necessary for plant development under normal growth conditions. We used our ribozyme-based CRISPR technology to generate an Arabidopsis abp1 mutant that contains a 5-bp deletion in the first exon of ABP1, which resulted in a frameshift and introduction of early stop codons. We also identified a T-DNA insertion abp1 allele that harbors a T-DNA insertion located 27 bp downstream of the ATG start codon in the first exon. We show that the two new abp1 mutants are null alleles. Surprisingly, our new abp1 mutant plants do not display any obvious developmental defects. In fact, the mutant plants are indistinguishable from wild-type plants at every developmental stage analyzed. Furthermore, the abp1 plants are not resistant to exogenous auxin. At the molecular level, we find that the induction of known auxin-regulated genes is similar in both wild-type and abp1 plants in response to auxin treatments. We conclude that ABP1 is not a key component in auxin signaling or Arabidopsis development.
机译:生长素结合蛋白1(ABP1)已经研究了数十年。已经有人提出,ABP1起生长素受体的作用,并在许多发育过程中起着至关重要的作用。在这里,我们提出了意想不到的发现,即生长素信号传导既不需要ABP1,也不需要正常生长条件下植物的生长。我们使用基于核酶的CRISPR技术产生了一个拟南芥abp1突变体,该突变体在ABP1的第一个外显子中含有一个5 bp的缺失,这导致了移码和早期终止密码子的引入。我们还确定了一个T-DNA插入abp1等位基因,该等位基因位于第一个外显子中ATG起始密码子下游27 bp处的T-DNA插入。我们显示两个新的abp1突变体是无效等位基因。令人惊讶的是,我们的新abp1突变植物没有显示任何明显的发育缺陷。实际上,在所分析的每个发育阶段,突变植物都无法与野生型植物区分开。此外,abp1植物对外源生长素不具有抗性。在分子水平上,我们发现响应生长素处理,野生型和abp1植物中已知的生长素调节基因的诱导都相似。我们得出结论,ABP1不是生长素信号传导或拟南芥发育中的关键成分。

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