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Phenotypic and Molecular Selection of a Superior Solanum pennellii Introgression Sub-Line Suitable for Improving Quality Traits of Cultivated Tomatoes

机译:适合改善栽培番茄品质性状的优质茄子渗入亚系的表型和分子选择

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摘要

The Solanum pennellii Introgression Line (IL) population can be exploited to identify favorable alleles that can improve yield and fruit quality traits in commercial tomato varieties. Over the past few years, we have selected ILs that exhibit increased content of antioxidant compounds in the fruit compared to the cultivar M82, which represents the genetic background in which the different wild regions of the S. pennellii ILs were included. Recently, we have identified seven sub-lines of the IL7-3 accumulating different amounts of antioxidants in the ripe fruit. Since the wild region carried on chromosome 7 induces a low fruit production in IL7-3, the first aim of the present work was to evaluate yield performances of the selected sub-lines in three experimental fields located in the South of Italy. Another aim was to confirm in the same lines the high levels of antioxidants and evaluate other fruit quality traits. On red ripe fruit, the levels of soluble solids content, firmness, and ascorbic acid (AsA) were highly variable among the sub-lines grown in three environmental conditions, evidencing a significant genotype by environment interaction for soluble solids and AsA content. Only one sub-line (coded R182) exhibited a significantly higher firmness, even though no differences were observed for this trait between the parental lines M82 and IL7-3. The same sub-line showed significantly higher AsA content compared to M82, thus resembling IL7-3. Even though IL7-3 always exhibited a significantly lower yield, all the sub-lines showed yield variability over the three trials. Interestingly, the sub-line R182, selected for its better performances in terms of fruit quality, in all the trials showed a production comparable to that of the control line M82. A group of species-specific molecular markers was tested on R182 and on the parental genotypes in order to better define the wild genomic regions carried by the elite line R182. In these regions three candidate genes that could increase the level of AsA in the fruit were identified. In the future, the line R182 could be used as pre-breeding material in order to obtain new varieties improved for nutritional traits.
机译:可以利用茄属番茄(Solanum pennellii Introgression Line,IL)群体来鉴定有利的等位基因,这些等位基因可以提高商业番茄品种的产量和果实品质性状。在过去的几年中,我们选择了与果实M82相比在果实中表现出更高抗氧化剂含量的IL,这代表了遗传背景,其中包括了S.pennellii ILs的不同野生区域。最近,我们已经确定了IL7-3的七个亚系,它们在成熟果实中积累了不同量的抗氧化剂。由于第7号染色体上的野生区域在IL7-3中诱导了较低的果实产量,因此本研究的首要目的是评估位于意大利南部三个实验田中选定亚系的产量表现。另一个目的是在同一行中确认高水平的抗氧化剂并评估其他水果品质性状。在红色成熟的果实上,在三种环境条件下生长的子系中,可溶性固形物含量,硬度和抗坏血酸(AsA)的水平高度可变,通过可溶性固形物和AsA含量的环境相互作用证明了显着的基因型。即使在亲本品系M82和IL7-3之间未观察到此性状的差异,也只有一个子品系(编码R182)显示出明显更高的硬度。与M82相比,同一子行显示出显着更高的AsA含量,因此类似于IL7-3。即使IL7-3始终显示出明显较低的产量,但在这三项试验中,所有子系均显示出产量变异性。有趣的是,在水果试验中选择的R182子线表现出更好的水果品质,在所有试验中均显示出与对照组M82相当的产量。为了更好地定义优良品系R182携带的野生基因组区域,在R182和亲本基因型上测试了一组物种特异性分子标记。在这些区域中,确定了三个可以增加果实中AsA水平的候选基因。将来,R182品系可以用作预育材料,以获得改良后的营养性状新品种。

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