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首页> 外文期刊>Plant Physiology >The hpa1 Mutant of Arabidopsis Reveals a Crucial Role of Histidine Homeostasis in Root Meristem Maintenance1
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The hpa1 Mutant of Arabidopsis Reveals a Crucial Role of Histidine Homeostasis in Root Meristem Maintenance1

机译:hpa1拟南芥突变体揭示了组氨酸稳态在根分生组织维持中的重要作用1

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摘要

Histidine (His) is an essential ingredient for protein synthesis and is required by all living organisms. In higher plants, although there is considerable evidence that His is essential for plant growth and survival, there is very little information as to whether it plays any specific role in plant development. Here, we present evidence for such a role of this amino acid in root development in Arabidopsis (Arabidopsis thaliana) from the characterization of a novel Arabidopsis mutant, hpa1, which has a very short root system and carries a mutation in one of the two Arabidopsis histidinol-phosphate aminotransferase (HPA) genes, AtHPA1. We have established that AtHPA1 encodes a functional HPA and that its complete knockout is embryo lethal. Biochemical analysis shows that the mutation in hpa1 only resulted in a 30% reduction in free His content and had no significant impact on the total His content. It did not cause any known symptoms of His starvation. However, the mutant displayed a specific developmental defect in root meristem maintenance and was unable to sustain primary root growth 2 d after germination. We have demonstrated that the root meristem failure in the mutant is tightly linked to the reduction in free His content and could be rescued by either exogenous His supplementation or AtHPA1 overexpression. Our results therefore reveal an important role of His homeostasis in plant development.
机译:组氨酸(His)是蛋白质合成的必需成分,并且是所有活生物体所必需的。在高等植物中,尽管有大量证据表明,His对于植物的生长和存活至关重要,但是关于它在植物发育中是否起任何特定作用的信息很少。在这里,我们提供了这种氨基酸在拟南芥(Arabidopsis thaliana)根发育中如此作用的证据,其特征是新型拟南芥突变体hpa1的特征,该突变体的根系非常短,并且在两个拟南芥之一中携带一个突变组蛋白磷酸磷酸氨基转移酶(HPA)基因AtHPA1。我们已经确定AtHPA1编码功能性HPA,并且其完全敲除对胚胎致死。生化分析表明,hpa1中的突变仅导致游离His含量降低30%,并且对总His含量没有显着影响。它没有引起他饥饿的任何已知症状。然而,该突变体在根分生组织维持中显示出特定的发育缺陷,并且在发芽后2 d不能维持初级根的生长。我们已经证明,突变体中的根分生组织失败与游离His含量的减少紧密相关,并且可以通过外源His补充或AtHPA1过表达来挽救。因此,我们的结果揭示了他的体内平衡在植物发育中的重要作用。

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  • 来源
    《Plant Physiology》 |2006年第4期|p.1425-1435|共11页
  • 作者单位

    State Key Laboratory of Plant Physiology and Biochemistry, College of Life Science, Zhejiang University, Hangzhou, 310029, People's Republic of China (X.M., Q. Zhu, X.L., J.L., Q. Zeng, P.W.);

    and Institute of Integrative and Comparative Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, United Kingdom (H.R., H.Z.);

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