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QTLs for shelf life in lettuce co-locate with those for leaf biophysical properties but not with those for leaf developmental traits

机译:在生菜中的保质期与叶片生物物理性质的QTL合作,但与叶片发育性状的人一起定位

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摘要

Developmental and biophysical leaf characteristics that influence post-harvest shelf life in lettuce, an important leafy crop, have been examined. The traits were studied using 60 informative F9 recombinant inbreed lines (RILs) derived from a cross between cultivated lettuce (Lactuca sativa cv. Salinas) and wild lettuce (L. serriola acc. UC96US23). Quantitative Trait Loci (QTL) for shelf life co-located most closely with those for leaf biophysical properties such as plasticity, elasticity and breakstrength suggesting that these are appropriate targets for molecular breeding for improved shelf life. Significant correlations were found between shelf life with leaf size, leaf weight, leaf chlorophyll content, leaf stomatal index and epidermal cell number per leaf, indicating that these pre-harvest leaf development traits confer postharvest properties. By studying the population in two contrasting environments in northern and southern Europe, the genotype by environment interaction effects of the QTL relevant to leaf development and shelf life were assessed. In total 107 QTL, distributed on all nine linkage groups, were detected from the 29 traits. Only five QTL were common in both environments. Several areas where many QTL co-located (hotspots) on the genome were identified, with relatively little overlap between developmental hotspots and those relating to shelf life. However, QTL for leaf biophysical properties (breakstrength, plasticity and elasticity) and cell area correlated well with shelf life, confirming that the ideal ideotype lettuce should have small cells with strong cell walls. The identification of QTL for leaf development, strength and longevity will lead to a better understanding of processability at a genetic and cellular level, and allow the improvement of salad leaf quality through marker assisted breeding.
机译:发展和生物物理叶片特征,在生菜影响收获后的保质期,一个重要的叶菜类作物,已审查。使用从栽培莴苣(莴苣品种。萨利纳斯)和野生莴苣(L. serriola累计。UC96US23)之间的杂交衍生的60翔实F9重组近交系(RIL)性状进行了研究。数量性状基因座(QTL)的货架寿命共同位于与叶生物物理性质,如塑性,弹性和breakstrength表明这些是用于改善的保质期的分子育种适当的目标关系最为密切。发现具有叶大小,叶重,叶片的叶绿素含量,叶气孔指数和叶表皮细胞数目货架寿命之间的相关性显著,这表明这些收获前叶发育性状赋予采后特性。通过在欧洲北部和南部两个截然不同的环境中学习的人口,通过相关叶发展和保质期的QTL的环境互作效应的基因型进行了评估。总共107 QTL,分布在所有9个连锁群,从该29个性状检测。只有五个QTL在两个环境中是常见的。有许多QTL共同位于基因组(热点)进行了鉴定,以发展热点和那些与保质期之间的比较几乎没有重叠几个领域。然而,QTL叶生物物理学性质(breakstrength,可塑性和弹性)和单元面积与货架寿命密切相关,证实了理想的个体基因型莴苣应该具有小的细胞具有较强的细胞壁。 QTL的叶发展,实力和长寿的鉴定将导致在基因和细胞水平上更好地理解可加工性,并允许辅助育种沙拉叶质量的标志,通过改善。

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