Vidal Ana M, Ben-Cheikh Waddi, Talón Manuel, García-Martínez José L
Instituto de Biología Molecular y Celular de Plantas, Universidad Politécnica de Valencia-CSIC, Avda de los Naranjos s/n, 46022 Valencia, Spain.
Planta. 2003 Jul;217(3):442-8. doi: 10.1007/s00425-003-0999-2. Epub 2003 Feb 15.
A cDNA clone coding for a gibberellin (GA) 20-oxidase ( CcGA20ox1), an enzyme of GA biosynthesis, which when expressed in vitro catalyzed the conversion of GA(12) to GA(9) and of GA(53) to GA(20), was isolated from the citrus hybrid Carrizo citrange (C itrus sinensis x Poncirus trifoliata). Transcripts of CcGA20ox1 were abundant in the apex and leaves and much less abundant in internodes, nodes and roots. Seedlings of Carrizo citrange cultured under a 32 degrees C/27 degrees C (day/night) regime elongated more than seedlings growing under 17 degrees C/12 degrees C conditions. The effect of higher temperature was associated with more CcGA20ox1 transcripts and with higher content of GA(1), the main active GA in citrus, in the shoot. The infection of Etrog citron ( Citrus medica) plants with citrus exocortis viroid (CEVd), which produces a stunted phenotype, reduced the levels of transcripts in the apical shoot hybridizing to the gene CcGA20ox1 of Carrizo citrange and the content of GA(1). Thus GA(1) content correlated with CcGA20ox1 transcript levels. In contrast, results for gibberellic acid (GA(3)) and paclobutrazol applications to Carrizo citrange showed that CcGA20ox1 expression was subject to feed-back regulation. These observations indicate that the feed-back regulation of GA20ox operates mostly when the levels of active GAs have been dramatically altered. The results also show that the growth reduction induced by environmental (temperature) and biotic (CEVd) factors may be partially due to the modulation of the expression of GA20ox genes.
从柑橘杂交种卡里佐枳橙(Citrus sinensis × Poncirus trifoliata)中分离出一个编码赤霉素(GA)20-氧化酶(CcGA20ox1)的cDNA克隆,GA20-氧化酶是GA生物合成中的一种酶,其在体外表达时可催化GA(12)转化为GA(9)以及GA(53)转化为GA(20)。CcGA20ox1的转录本在顶端和叶片中丰富,而在节间、节和根中则少得多。在32℃/27℃(昼/夜)条件下培养的卡里佐枳橙幼苗比在17℃/12℃条件下生长的幼苗伸长更多。较高温度的影响与更多的CcGA20ox1转录本以及茎中GA(1)(柑橘中的主要活性GA)的较高含量相关。用柑橘裂皮类病毒(CEVd)感染佛手柑(Citrus medica)植株会产生矮化表型,降低顶端茎中与卡里佐枳橙的CcGA20ox1基因杂交的转录本水平以及GA(1)的含量。因此,GA(1)含量与CcGA20ox1转录本水平相关。相反,对卡里佐枳橙施用赤霉酸(GA(3))和多效唑的结果表明,CcGA20ox1的表达受到反馈调节。这些观察结果表明,GA20ox的反馈调节主要在活性GA水平发生显著变化时起作用。结果还表明,环境(温度)和生物(CEVd)因素诱导的生长减少可能部分归因于GA20ox基因表达的调节。