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水稻中内根-贝壳杉烯二磷酸合酶和顺式-贝壳杉烯二磷酸合酶的生物学功能:赤霉素和植保素生物合成分支点的关键酶

Biological functions of ent- and syn-copalyl diphosphate synthases in rice: key enzymes for the branch point of gibberellin and phytoalexin biosynthesis.

作者信息

Otomo Kazuko, Kenmoku Hiromichi, Oikawa Hideaki, König Wilfried A, Toshima Hiroaki, Mitsuhashi Wataru, Yamane Hisakazu, Sassa Takeshi, Toyomasu Tomonobu

机构信息

Course of the Science of Bioresources, The United Graduate School of Agricultural Science, Iwate University (Yamagata University), Tsuruoka, Yamagata 997-8555, Japan.

出版信息

Plant J. 2004 Sep;39(6):886-93. doi: 10.1111/j.1365-313X.2004.02175.x.

Abstract

Rice (Oryza sativa L.) produces ent-copalyl diphosphate (ent-CDP) and syn-CDP as precursors for several classes of phytoalexins and the phytohormones, gibberellins (GAs). It has recently been shown that a loss-of-function mutation of OsCPS1, a gene encoding a putative ent-CDP synthase, results in a severely GA-deficient dwarf phenotype in rice. To clarify the biological functions of the ent- and syn-CDP synthases involved in the biosynthesis of phytoalexins and/or GAs, we isolated two cDNAs, OsCyc1 and OsCyc2, encoding putative diterpene cyclases from ultraviolet (UV)-irradiated rice leaves (cv. Nipponbare). The production of phytoalexins in rice leaves is known to be highly induced by UV treatment. Using a bacterial expression system, we demonstrated that OsCyc1 encodes syn-CDP synthase and that OsCyc2 and OsCPS1 encode ent-CDP synthase. The level of expression of the OsCyc1 and OsCyc2 transcripts in rice leaves increased drastically in response to UV treatment, whereas expression of the OsCPS1 transcript was not induced by UV light. These results suggest that OsCyc1, OsCyc2 and OsCPS1 are responsible for the biosynthesis of momilactones A and B and oryzalexin S, oryzalexins A-F and phytocassanes A-E, and GAs, respectively. Our results strongly suggest the presence of two ent-CDP synthase isoforms in rice, one that participates in the biosynthesis of GAs and a second that is involved in the biosynthesis of phytoalexins.

摘要

水稻(Oryza sativa L.)产生内贝壳杉烯二磷酸(ent-CDP)和异贝壳杉烯二磷酸(syn-CDP),作为几类植物抗毒素和植物激素赤霉素(GAs)的前体。最近研究表明,编码假定内贝壳杉烯二磷酸合酶的基因OsCPS1功能缺失突变会导致水稻出现严重的赤霉素缺乏型矮化表型。为阐明参与植物抗毒素和/或赤霉素生物合成的内贝壳杉烯二磷酸合酶和异贝壳杉烯二磷酸合酶的生物学功能,我们从紫外线(UV)照射的水稻叶片(品种:日本晴)中分离出两个编码假定二萜环化酶的cDNA,即OsCyc1和OsCyc2。已知紫外线处理能高度诱导水稻叶片中植物抗毒素的产生。利用细菌表达系统,我们证明OsCyc1编码异贝壳杉烯二磷酸合酶,OsCyc2和OsCPS1编码内贝壳杉烯二磷酸合酶。紫外线处理后,水稻叶片中OsCyc1和OsCyc2转录本的表达水平急剧增加,而OsCPS1转录本的表达不受紫外线诱导。这些结果表明,OsCyc1、OsCyc2和OsCPS1分别负责莫米菌素A和B、稻瘟菌素S、稻瘟菌素A-F以及植二苯并呋喃A-E和赤霉素的生物合成。我们的结果有力地表明,水稻中存在两种内贝壳杉烯二磷酸合酶同工型,一种参与赤霉素的生物合成,另一种参与植物抗毒素的生物合成。

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