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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Development, and genetic and metabolic characterization of new tomato mutants with enhanced and deficient carotenoid content
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Development, and genetic and metabolic characterization of new tomato mutants with enhanced and deficient carotenoid content

机译:具有增强和缺乏类胡萝卜素含量的新番茄突变体的开发和遗传和代谢特征

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Tomato (Solanum lycopersicum) is a valuable vegetable crop rich in health-protective carotenoids, but breeding improvements are limited by its narrow genetic diversity. New mutants with enhanced and deficient carotenoid content in a single genetic background of tomato cv. MicroTom were developed via chemical mutagenesis. Genetic and metabolic analyses showed that mutant DC260, which exhibited fruit color alteration from red to deep red interlaced with orange color, had significant (P0.05) increases of lycopene (up to 42.8%) and ss-carotene (up to 61.5%) compared with control plants. Pearson correlation analysis of M1 and M2 generations in DC260 revealed that fruit color alteration was significantly (P0.05) correlated with lycopene (coefficient=0.55) and ss-carotene content (coefficient=0.63). The fruit color alteration of DC260 was controlled by a single gene at a heterozygous locus. In contrast, mutant DC107 and DC624, which exhibited fruit color alteration from red to orange-yellow, was significantly (P0.05) carotenoid-deficient with up to 346.3-, 10.8-, and 185.2- fold reductions of lycopene, ss-carotene, and total carotenoids, respectively, compared with the control plants. Carotenoid deficiency in DC170 and DC624 was responsible for the fruit color alteration and was controlled by a dominant gene at a homozygous locus.
机译:番茄(Solanum Lycopersicum)是一种富含健康保护类胡萝卜素的有价值的蔬菜作物,但繁殖的改善受其遗传多样性狭窄的限制。在番茄CV的单一遗传背景下,类胡萝卜素含量增强和缺乏的新突变体。通过化学诱变显微镜进行微量立菌。遗传和代谢分析表明,突变体DC260从红色到深红色的果实变形与橙色相互界分,具有显着的(P <0.05)番茄红素(高达42.8%)和SS-胡萝卜素(高达61.5%)与对照植物相比。 DC260中M1和M2世代的Pearson相关性分析显示,与番茄红素(系数= 0.55)和SS-胡萝卜素含量(系数= 0.63)相关,果实颜色改变显着(P <0.05)。 DC260的果实颜色改变由杂合子基因座的单个基因控制。相反,突变体DC107和DC624,其表现出从红色到橙黄色的果实颜色改变,显着(p <0.05)类胡萝卜素缺乏,可缺乏346.3-10-10-和185.2倍的番茄红素,Ss-carotene减少与对照植物相比,分别与对照植物相比分别的总类胡萝卜素。 DC170和DC624的类胡萝卜素缺乏负责果实颜色改变,并由纯合子基因座的显性基因控制。

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