Oh Kwangchul, Ivanchenko Maria G, White T J, Lomax Terri L
Department of Botany and Plant Pathology and the Center for Gene Research and Biotechnology, Oregon State University, Corvallis, OR 97331-2902, USA.
Planta. 2006 Jun;224(1):133-44. doi: 10.1007/s00425-005-0202-z. Epub 2006 Jan 4.
The single gene, auxin-resistant diageotropica (dgt) mutant of tomato displays a pleiotropic auxin-related phenotype that includes a slow gravitropic response, lack of lateral roots, reduced apical dominance, altered vascular development, and reduced fruit growth. Some auxin responses are unaltered in dgt plants, however, and the levels, metabolism, and transport of auxin appear normal, indicating that the Dgt gene encodes a component of a specific auxin signaling pathway. By combining map-based cloning with comparative microsynteny, we determined that the Dgt gene encodes a cyclophilin (CYP) (LeCYP1; gi:170439) that has not previously been identified as a component of auxin signaling and plant development. Each of the three known dgt alleles contains a unique mutation in the coding sequence of LeCyp1. Alleles dgt(1-1)and dgt(1-2) contain single nucleotide point mutations that generate an amino acid change (G137R) and a stop codon (W128stop), respectively, while dgt(dp) has an amino acid change (W128CDelta129-133) preceding a 15 bp deletion. Complementation of dgt plants with the wild-type LeCyp1 gene restored the wild-type phenotype. Each dgt mutation reduced or nullified the peptidyl-prolyl isomerase activity of the GST-LeCYP1 fusion proteins in vitro. RT-PCR and immunoblot analyses indicated that the dgt mutations do not affect the expression of LeCyp1 mRNA, but the accumulation of LeCYP1 protein is greatly reduced for all three mutant alleles. The CYP inhibitor, cyclosporin A, partially mimics the effects of the dgt mutation in inhibiting auxin-induced adventitious root initiation in tomato hypocotyl sections and reducing the auxin-induced expression of the early auxin response genes, LeIAA10 and 11. These observations confirm that the PPIase activity of the tomato CYP, LeCYP1, encoded by the Dgt gene is important for specific aspects of auxin regulation of plant growth, development, and environmental responses.
番茄的单基因抗生长素斜生胚轴(dgt)突变体表现出多效性的生长素相关表型,包括重力反应缓慢、缺乏侧根、顶端优势减弱、维管发育改变以及果实生长受抑制。然而,dgt植株中的一些生长素反应未发生改变,并且生长素的水平、代谢和运输看起来正常,这表明Dgt基因编码特定生长素信号通路的一个组分。通过将基于图谱的克隆与比较微同线性相结合,我们确定Dgt基因编码一种亲环素(CYP)(LeCYP1;gi:170439),该亲环素先前未被鉴定为生长素信号传导和植物发育的一个组分。三个已知的dgt等位基因在LeCyp1的编码序列中均含有一个独特的突变。等位基因dgt(1-1)和dgt(1-2)分别含有单核苷酸点突变,这些突变分别导致一个氨基酸变化(G137R)和一个终止密码子(W128stop),而dgt(dp)在一个15 bp缺失之前有一个氨基酸变化(W128CDelta129 - 133)。用野生型LeCyp1基因对dgt植株进行互补恢复了野生型表型。每个dgt突变在体外均降低或消除了GST-LeCYP1融合蛋白的肽基脯氨酰异构酶活性。RT-PCR和免疫印迹分析表明,dgt突变不影响LeCyp1 mRNA的表达,但对于所有三个突变等位基因,LeCYP1蛋白的积累都大大减少。CYP抑制剂环孢菌素A在抑制番茄下胚轴切段中生长素诱导的不定根起始以及降低生长素诱导的早期生长素反应基因LeIAA10和11的表达方面,部分模拟了dgt突变的效应。这些观察结果证实,由Dgt基因编码的番茄CYP即LeCYP1的肽基脯氨酰异构酶活性对于生长素调节植物生长、发育和环境反应的特定方面很重要。