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Maize DELLA Proteins dwarf plant8 and dwarf plant9 as Modulators of Plant Development

机译:玉米DELLA蛋白使矮化植物8和矮化植物9作为植物发育的调节剂

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DELLA proteins are nuclear-localized negative regulators of gibberellin signaling found ubiquitously throughout higher plants. Dominant dwarfing mutations of DELLA proteins have been primarily responsible for the dramatic increases in harvest index of the ‘green revolution’. Maize contains two genetic loci encoding DELLA proteins, dwarf plant8 (d8) and dwarf plant 9 (d9). The d8 gene and three of its dominant dwarfing alleles have been previously characterized at the molecular level. Almost 20 years after the initial description of the mutant, this investigation represents the first molecular characterization of d9 and its gibberellin-insensitive mutant, D9-1. We have molecularly, subcellularly and phenotypically characterized the gene products of five maize DELLA alleles in transgenic Arabidopsis. In dissecting the molecular differences in D9-1, a critical residue for normal DELLA function has been uncovered, corresponding to E600 of the D9 protein. The gibberellin-insensitive D9-1 was found to produce dwarfing and, notably, earlier flowering in Arabidopsis. Conversely, overexpression of the D9-1 allele delayed flowering in transgenic maize, while overexpression of the d9 allele led to earlier flowering. These results corroborate findings that DELLA proteins are at the crux of many plant developmental pathways and suggest differing mechanisms of flowering time control by DELLAs in maize and Arabidopsis.
机译:DELLA蛋白是赤霉素信号传导的核定位负调节剂,遍及整个高等植物。 DELLA蛋白的显着矮化突变是造成“绿色革命”收获指数急剧增加的主要原因。玉米包含两个编码DELLA蛋白的遗传基因座,矮化植物8(d8)和矮化植物9(d9)。 d8基因及其三个主要的矮化等位基因先前已在分子水平进行了表征。对突变体的最初描述将近20年之后,这项研究代表了d9及其对赤霉素不敏感的突变体D9-1的首次分子表征。我们已经在分子,亚细胞和表型上表征了转基因拟南芥中五个玉米DELLA等位基因的基因产物。在剖析D9-1中的分子差异时,发现了正常DELLA功能的关键残基,对应于D9蛋白的E600。发现对赤霉素不敏感的D9-1会产生矮化,特别是在拟南芥中开花较早。相反,D9-1等位基因的过表达延迟了转基因玉米的开花,而d9等位基因的过表达导致了较早的开花。这些结果证实了DELLA蛋白是许多植物发育途径的症结所在,并暗示了DELLAs在玉米和拟南芥中控制开花时间的不同机制。

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