首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Cloning and functional analysis of two gibberellin 3β-hydroxylase genes that are differently expressed during the growth of rice
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Cloning and functional analysis of two gibberellin 3β-hydroxylase genes that are differently expressed during the growth of rice

机译:水稻生长过程中表达差异的两个赤霉素3β-羟化酶基因的克隆和功能分析

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摘要

We have cloned two gibberellin (GA) 3β-hydroxylase genes, OsGA3ox1 and OsGA3ox2, from rice by screening a genomic library with a DNA fragment obtained by PCR using degenerate primers. We have used full-scan GC-MS and Kovats retention indices to show function for the two encoded recombinant fusion proteins. Both proteins show 3β-hydroxylase activity for the steps GA20 to GA1, GA5 to GA3, GA44 to GA38, and GA9 to GA4. In addition, indirect evidence suggests that the OsGA3ox1 protein also has 2,3-desaturase activity, which catalyzes the steps GA9 to 2,3-dehydro-GA9 and GA20 to GA5 (2,3-dehydro GA20), and 2β-hydroxylase activity, which catalyzes the steps GA1 to GA8 and GA4 to GA34. Molecular and linkage analysis maps the OsGA3ox1 gene to the distal end of the short arm of chromosome 5; the OsGA3ox2 gene maps to the distal end of the short arm of chromosome 1 that corresponds to the D18 locus. The association of the OsGA3ox2 gene with the d18 locus is confirmed by sequence and complementation analysis of three d18 alleles. Complementation of the d18-AD allele with the OxGA3ox2 gene results in transgenic plants with a normal phenotype. Although both genes show transient expression, the highest level for OsGA3ox1 is from unopened flower. The highest level for OsGA3ox2 is from elongating leaves.
机译:通过使用简并引物通过PCR获得的DNA片段筛选基因组文库,我们从水稻中克隆了两个赤霉素(GA)3β-羟化酶基因OsGA3ox1和OsGA3ox2。我们使用了全扫描GC-MS和Kovats保留指数来显示两种编码的重组融合蛋白的功能。两种蛋白质在步骤GA20至GA1,GA5至GA3,GA44至GA38和GA9至GA4中均显示3β-羟化酶活性。此外,间接证据表明OsGA3ox1蛋白还具有2,3-去饱和酶活性,该酶催化GA9至2,3-dehydro-GA9和GA20至GA5(2,3-dehydro GA20)和2β-羟化酶活性,它催化了GA1至GA8和GA4至GA 34 的步骤。分子和连锁分析将OsGA3ox1基因定位到5号染色体短臂的末端; OsGA3ox2基因定位于1号染色体短臂的远端,该短臂对应于D18基因座。 OsGA3ox2基因与d18基因座的关联通过三个d18等位基因的序列和互补分析得到证实。 d18-AD等位基因与OxGA3ox2基因的互补产生具有正常表型的转基因植物。尽管两个基因都显示瞬时表达,但OsGA3ox1的最高水平来自未打开的花。 OsGA3ox2的最高含量来自于叶片伸长。

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