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Semidwarf (sd-1) green revolution rice contains a defective gibberellin 20-oxidase gene

机译:半矮人(sd-1)绿色革命水稻含有有缺陷的赤霉素20氧化酶基因

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摘要

The introduction of semidwarf rice (Oryza sativa L.) led to record yield increases throughout Asia in the 1960s. The major semidwarfing allele, sd-1, is still extensively used in modern rice cultivars. The phenotype of sd-1 is consistent with dwarfism that results from a deficiency in gibberellin (GA) plant growth hormones. We propose that the semidwarf (sd-1) phenotype is the result of a deficiency of active GAs in the elongating stem arising from a defective 20-oxidase GA biosynthetic enzyme. Sequence data from the rice genome was combined with previous mapping studies to locate a putative GA 20-oxidase gene (Os20ox2) at the predicted map location of sd-1 on chromosome 1. Two independent sd-1 alleles contained alterations within Os20ox2: a deletion of 280 bp within the coding region of Os20ox2 was predicted to encode a nonfunctional protein in an indica type semidwarf (Doongara), whereas a substitution in an amino acid residue (Leu-266) that is highly conserved among dioxygenases could explain loss of function of Os20ox2 in a japonica semidwarf (Calrose76). The quantification of GAs in elongating stems by GC-MS showed that the initial substrate of GA 20-oxidase activity (GA53) accumulated, whereas the content of the major product (GA20) and of bioactive GA1 was lower in semidwarf compared with tall lines. We propose that the Os20ox2 gene corresponds to the sd-1 locus.
机译:半矮稻(Oryza sativa L.)的引入导致整个亚洲在1960年代创纪录的增产。主要的半矮等位基因sd-1仍广泛用于现代水稻品种中。 sd-1的表型与由赤霉素(GA)植物生长激素缺乏引起的侏儒症相一致。我们建议半矮(sd-1)表型是由有缺陷的20-氧化酶GA生物合成酶引起的伸长茎中活性GA缺乏的结果。水稻基因组的序列数据与以前的作图研究相结合,以在一个染色体1的sd-1预测图上定位一个假定的GA 20-氧化酶基因(Os20ox2)。两个独立的sd-1等位基因包含Os20ox2内的改变:一个缺失Os20ox2编码区内280 bp的片段预计会编码was型半矮麦(Doongara)中的非功能蛋白,而在双加氧酶中高度保守的氨基酸残基(Leu-266)取代则可能解释了Os20ox2的功能丧失粳稻半矮中的Os20ox2(Calrose76)。 GC-MS定量分析了伸长茎中的GAs,表明GA 20氧化酶活性(GA53)的初始底物积累了,而半矮秆中的主要产物(GA20)和生物活性GA1的含量比高株系要低。我们建议Os20ox2基因对应于sd-1基因座。

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