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Gibberellin Biosynthetic Deficiency Is Responsible for Maize Dominant Dwarf11 (D11) Mutant Phenotype: Physiological and Transcriptomic Evidence

机译:赤霉素生物合成不足是玉米主要矮化11(D11)突变表型的责任:生理和转录组证据。

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Dwarf stature is introduced to improve lodging resistance and harvest index in crop production. In many crops including maize, mining and application of novel dwarf genes are urgent to overcome genetic bottleneck and vulnerability during breeding improvement. Here we report the characterization and expression profiling analysis of a newly identified maize dwarf mutant Dwarf11 (D11). The D11 displays severely developmental abnormalities and is controlled by a dominant Mendelian factor. The D11 seedlings responds to both GA3 and paclobutrazol (PAC) application, suggesting that dwarf phenotype of D11 is caused by GA biosynthesis instead of GA signaling deficiency. In contrast, two well-characterized maize dominant dwarf plants D8 and D9 are all insensitive to exogenous GA3 stimulation. Additionally, sequence variation of D8 and D9 genes was not identified in the D11 mutant. Microarray and qRT-PCR analysis results demonstrated that transcripts encoding GA biosynthetic and catabolic enzymes ent-kaurenoic acid oxidase (KAO), GA 20-oxidase (GA20ox), and GA 2-oxidase (GA2ox) are up-regulated in D11. Our results lay a foundation for the following D11 gene cloning and functional characterization. Moreover, results presented here may aid in crops molecular improvement and breeding, especially breeding of crops with plant height ideotypes.
机译:矮矮的身材被引入以改善作物生产中的抗倒伏性和收获指数。在包括玉米在内的许多农作物中,新的矮化基因的挖掘和应用迫切需要克服育种改良过程中的遗传瓶颈和脆弱性。在这里,我们报告了新鉴定的玉米矮化突变体Dwarf11(D11)的表征和表达谱分析。 D11表现出严重的发育异常,并受占主导地位的孟德尔因素控制。 D11幼苗对GA3和多效唑(PAC)的施用都有反应,表明D11的矮表型是由GA生物合成引起的,而不是由GA信号缺乏引起的。相反,两个特征明确的玉米显性矮化植物D8和D9均对外源GA3刺激不敏感。此外,在D11突变体中未鉴定出D8和D9基因的序列变异。芯片和qRT-PCR分析结果表明,编码GA生物合成酶和分解代谢酶的氨基酸转录物为脲醛酸氧化酶(KAO),GA 20氧化酶(GA20ox)和GA 2-氧化酶(GA2ox)在D11中上调。我们的结果为后续的D11基因克隆和功能表征奠定了基础。此外,此处介绍的结果可能有助于作物分子的改良和育种,特别是具有植物高度型的作物的育种。

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