首页> 外文期刊>Frontiers in Plant Science >Water Deficit and Salinity Stress Reveal Many Specific QTL for Plant Growth and Fruit Quality Traits in Tomato
【24h】

Water Deficit and Salinity Stress Reveal Many Specific QTL for Plant Growth and Fruit Quality Traits in Tomato

机译:水分亏缺和盐分胁迫揭示了番茄中植物生长和果实品质性状的许多特定QTL

获取原文
           

摘要

Quality is a key trait in plant breeding, especially for fruit and vegetables. Quality involves several polygenic components, often influenced by environmental conditions with variable levels of genotype × environment interaction that must be considered in breeding strategies aiming to improve quality. In order to assess the impact of water deficit and salinity on tomato fruit quality, we evaluated a multi-parent advanced generation intercross (MAGIC) tomato population in contrasted environmental conditions over 2 years, one year in control vs. drought condition and the other in control vs. salt condition. Overall 250 individual lines from the MAGIC population—derived from eight parental lines covering a large diversity in cultivated tomato—were used to identify QTL in both experiments for fruit quality and yield component traits (fruit weight, number of fruit, Soluble Solid Content, firmness), phenology traits (time to flower and ripe) and a vegetative trait, leaf length. All the traits showed a large genotype variation (33–86% of total phenotypic variation) in both experiments and high heritability whatever the year or treatment. Significant genotype × treatment interactions were detected for five of the seven traits over the 2 years of experiments. QTL were mapped using 1,345 SNP markers. A total of 54 QTL were found among which 15 revealed genotype × environment interactions and 65% (35 QTL) were treatment specific. Confidence intervals of the QTL were projected on the genome physical map and allowed identifying regions carrying QTL co-localizations, suggesting pleiotropic regulation. We then applied a strategy for candidate gene detection based on the high resolution mapping offered by the MAGIC population, the allelic effect of each parental line at the QTL and the sequence information of the eight parental lines.
机译:品质是植物育种的关键特征,特别是对于水果和蔬菜。质量涉及多个多基因成分,通常受环境条件影响,且基因型×环境相互作用水平可变,在旨在提高质量的育种策略中必须考虑这些因素。为了评估缺水和盐度对番茄果实品质的影响,我们在2年的对比环境条件下(对照与干旱条件下为一年,而对照为干旱条件下)则评估了多亲先进代杂交(MAGIC)番茄群体。控制与盐条件。来自MAGIC群体的总共250个个体系-来自八个亲本系,涵盖了栽培番茄中的大量多样性-在两个实验中都使用QTL来鉴定QTL的果实品质和产量成分特征(果实重量,果实数量,可溶性固形物含量,硬度) ),物候性状(开花和成熟的时间)和植物性状,叶长。所有特征在两个实验中均表现出较大的基因型变异(占总表型变异的33–86%),并且无论年份或处理方式均具有较高的遗传力。在两年的实验中,检测到七个性状中的五个的显着基因型×治疗相互作用。使用1,345个SNP标记对QTL进行了定位。共发现54个QTL,其中15个揭示的基因型×环境相互作用和65%(35个QTL)具有治疗特异性。将QTL的置信区间投影在基因组物理图谱上,并允许鉴定携带QTL共定位的区域,这表明多效性调控。然后,我们基于MAGIC群体提供的高分辨率作图,每个亲本系在QTL上的等位基因效应以及八个亲本系的序列信息,应用了一种候选基因检测策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号