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Alteration of rice growth and development via antisense expression of OsGA20ox2 gene

机译:通过OsGA20ox2基因反义表达改变水稻生长发育

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GA 20-oxidase is a key enzyme involved in gibberellin (GA) biosynthesis. To investigate the roles of?OsGA20ox2?in regulating plant growth and development, we used reverse genomic approach to generate dwarf transgenic rice plants with antisense technology.?OsGA20ox2?nucleic acid sequence includes three exons and two introns. We constructed three antisense vectors named pA1CK, pA2CK, pACK, respectively, major containing the first exon, the second exon, and the whole cDNA sequence of?OsGA20ox2?gene. Through?Agrobacterium-mediated transformation of rice, six dwarf lines were obtained from antisense vector pACK. Three dwarf lines (5101 to 5103) in T1?generation displayed severe dwarf in height (12.31 cm, 11.4% of wild type plants), fewer tiller numbers (4.87, 35.3% of wild type plants), smaller dark green leaves, shorter internode length (7.05 cm, 10.9% of wild type plants), and seed abortion compared to the wild type plants. Other three dwarf lines in T2?generation (5104 to 5106) showed dwarf (56.18 to 60.64 cm, 52.0 to 56.1% of wild type plants), late flowering, few tiller numbers (11.60 to 12.60, 84.1 to 91.3% of wild type plants), short internode length (34.69 to 35.37 cm, 53.4 to 54.5% of wild type plants), 100-seed weight reduction (1.53 to 1.57 g, 74.9 to 75.8% of wild type plants), and reduced seeds reproductive. The results indicate that dwarf lines decreased expression ofOsGA20ox2?gene in stem and panicle but no change in root. These results show that the antisense?OsGA20ox2?gene restricted rice architecture, suggesting thatOsGA20ox2?was required for panicles and stem development. We further showed that the antisense dwarf lines could be restored to normal plant height by applying exogenous GA3. Results also demonstrate that?antisense expression of?OsGA20ox2affected plant stature and?development.
机译:GA 20-氧化酶是参与赤霉素(GA)生物合成的关键酶。为了研究“ OsGA20ox2”在调控植物生长和发育中的作用,我们采用反基因组学方法通过反义技术产生了矮化转基因水稻。OsGA20ox2“核酸”序列包括三个外显子和两个内含子。我们构建了三个分别名为pA1CK,pA2CK,pACK的反义载体,它们分别含有第一个外显子,第二个外显子和完整的?OsGA20ox2?基因的cDNA序列。通过农杆菌介导的水稻转化,从反义载体pACK中获得了六个矮株。 T1代中的三个矮系(5101至5103)显示出严重的矮化高度(12.31 cm,占野生型植物的11.4%),分till数较少(4.87,占野生型植物的35.3%),深绿色的叶子较小,节间较短长度(7.05厘米,占野生型植物的10.9%),与野生型植物相比种子流产。 T2代的其他三个矮系(5104至5106)显示矮化(56.18至60.64 cm,占野生型植物的52.0%至56.1%),开花较晚,分till数少(野生型植物的11.60至12.60、84.1至91.3%) ),较短的节间长度(34.69至35.37厘米,占野生型植物的53.4至54.5%),减少100种种子的重量(1.53至1.57 g,占野生型植物的74.9至75.8%),并降低了种子繁殖能力。结果表明,矮化系降低了茎和穗中OsGA20ox2α基因的表达,但根系没有改变。这些结果表明,反义的“ OsGA20ox2”基因限制了水稻的构型,表明穗和茎发育需要OsGA20ox2”。我们进一步表明,通过应用外源GA3,反义矮系可以恢复到正常株高。结果还证明了OsGA20ox2的反义表达影响了植物的生长发育。

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