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植物和真菌中的赤霉素生物合成:趋同进化的一个例子?

Gibberellin Biosynthesis in Plants and Fungi: A Case of Convergent Evolution?

作者信息

Hedden Peter, Phillips Andrew L., Rojas Maria Cecilia, Carrera Esther, Tudzynski Bettina

机构信息

IACR-Long Ashton Research Station, Department of Agricultural Sciences, University of Bristol, Long Ashton, Bristol BS41 9AF, United Kingdom.

出版信息

J Plant Growth Regul. 2001 Dec;20(4):319-331. doi: 10.1007/s003440010037.

Abstract

As well as being phytohormones, gibberellins (GAs) are present in some fungi and bacteria. Indeed, GAs were first discovered in the fungus Gibberella fujikuroi, from which gibberellic acid (GA3) and other GAs are produced commercially. Although higher plants and the fungus produce structurally identical GAs, there are important differences in the pathways and enzymes involved. This has become particularly apparent with the identification of almost all of the genes for GA-biosynthesis in Arabidopsis thaliana and G. fujikuroi, following the sequencing of the Arabidopsis genome and the detection of a GA-biosynthesis gene cluster in the fungus. For example, 3b-hydroxylation occurs early in the pathway in G. fujikuroi and is catalyzed by a cytochrome P450 monooxygenase, whereas it is usually the final step in plants and is catalyzed by 2-oxoglutarate-dependent dioxygenases. Similarly, 20-oxidation is catalyzed by dioxygenases in plants and a cytochrome P450 in the fungus. Even where cytochrome P450s have equivalent functions in plants and Gibberella, they are unrelated in terms of amino acid sequence. These profound differences indicate that higher plants and fungi have evolved their complex biosynthetic pathways to GAs independently and not by horizontal gene transfer.

摘要

赤霉素(GAs)除了作为植物激素外,还存在于一些真菌和细菌中。实际上,赤霉素最初是在藤仓赤霉菌中发现的,赤霉酸(GA3)和其他赤霉素就是从这种真菌中商业化生产出来的。尽管高等植物和这种真菌产生结构相同的赤霉素,但在相关途径和酶方面存在重要差异。随着拟南芥基因组测序以及在该真菌中检测到赤霉素生物合成基因簇后,几乎所有拟南芥和藤仓赤霉菌中赤霉素生物合成基因得以鉴定,这一点变得尤为明显。例如,3β - 羟基化在藤仓赤霉菌的途径中较早发生,由细胞色素P450单加氧酶催化,而在植物中它通常是最后一步,由2 - 酮戊二酸依赖性双加氧酶催化。同样,20 - 氧化在植物中由双加氧酶催化,在真菌中由细胞色素P450催化。即使细胞色素P450在植物和赤霉菌中有等效功能,它们在氨基酸序列方面也没有关联。这些深刻的差异表明高等植物和真菌各自独立进化出了复杂的赤霉素生物合成途径,而非通过水平基因转移。

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