首页> 外文期刊>Journal of Experimental Botany >An allelic variant of GAME9 determines its binding capacity with the GAME17 promoter in the regulation of steroidal glycoalkaloid biosynthesis in tomato
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An allelic variant of GAME9 determines its binding capacity with the GAME17 promoter in the regulation of steroidal glycoalkaloid biosynthesis in tomato

机译:Game9的等位基因变体与Game17启动子在番茄中甾体甘油碱生物合成调节中的Game17启动子决定了其结合能力

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Steroidal glycoalkaloids (SGAs) are cholesterol-derived molecules found in the family Solanaceae. SGA content varies among different plant species and varieties. However, the genetic mechanisms regulating SGA content remain unclear. Here, we demonstrate that genetic variation in GLYCOALKALO1D METABOLISM 9 (GAME9) is responsible for the variation in SGA content in tomato (Solanum lycopersicum). During a sequential analysis we found a 1 bp substitution in the AP2/ERF binding domain of GAME9. The 1 bp substitution in GAME9 was significantly associated with high SGA content and determined the binding capacity of GAME9 with the promoter of GAME17, a core SGA biosynthesis gene. The high-SGA GAME9 allele is mainly present in S. pimpinellifolium and S. lycopersicum var. cerasiforme populations and encodes a protein that can bind the GAME17 promoter. In contrast, the low-SGA GAME9 allele is mainly present in the big-fruited varieties of S. lycopersicum and encodes a protein that shows weak binding to the GAME17 promoter. Our findings provide new insight into the regulation of SGA biosynthesis and the factors that affect the accumulation of SGA in tomato.
机译:甾体甘油碱(SGAS)是在茄科氏菌属中发现的胆固醇衍生的分子。 SGA含量在不同的植物物种和品种之间变化。然而,调节SGA含量的遗传机制仍然不清楚。这里,我们证明Glycoalkalo1d代谢9(GAME9)的遗传变异是番茄(Solanum Lycopersicum)中SGA含量的变化。在顺序分析期间,我们在Game9的AP2 / ERF绑定领域中发现了1个BP替换。 Game9中的1bp取代与高SGA含量显着相关,并确定了Game9与Game17的启动子的结合能力,核心SGA生物合成基因。高级SGA Game9等位基因主要存在于S.Pimpinellifolium和S.Lycopersicum var中。 Cerasiforme种群并编码可以结合游戏17启动子的蛋白质。相比之下,低SGA Game9等位基因主要存在于S.Lycopersicum的大型炸药品种中,并编码蛋白质,该蛋白质显示出与Game17启动子的弱结合。我们的调查结果为SGA生物合成的调节提供了新的洞察力,以及影响番茄中SGA积累的因素。

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