Bizouerne Elise, Ly Vu Joseph, Ly Vu Benoît, Diouf Isidore, Bitton Frédérique, Causse Mathilde, Verdier Jérôme, Buitink Julia, Leprince Olivier
Institut Agro, INRAE, University Angers, IRHS, SFR QUASAV, 49000 Angers, France.
Génétique et Amélioration des Fruits et Légumes, Centre de Recherche PACA, INRAE, UR1052, CS60094, 84143 Avignon, France.
Plants (Basel). 2023 Oct 20;12(20):3632. doi: 10.3390/plants12203632.
The stable production of high vigorous seeds is pivotal to crop yield. Also, a high longevity is essential to avoid progressive loss of seed vigour during storage. Both seed traits are strongly influenced by the environment during seed development. Here, we investigated the impact of heat stress (HS) during fruit ripening on tomato seed lifespan during storage at moderate relative humidity, speed (t50) and homogeneity of germination, using a MAGIC population that was produced under optimal and HS conditions. A plasticity index was used to assess the extent of the impact of HS for each trait. HS reduced the average longevity and germination homogeneity by 50% within the parents and MAGIC population. However, there was a high genetic variability in the seed response to heat stress. A total of 39 QTLs were identified, including six longevity QTLs for seeds from control (3) and HS (3) conditions, and six plasticity QTLs for longevity, with only one overlapping with a longevity QTL under HS. Four out of the six longevity QTL co-located with t50 QTL, revealing hotspots for seed quality traits. Twenty-one QTLs with intervals below 3 cM were analyzed using previous transcriptome and gene network data to propose candidate genes for seed vigour and longevity traits.
高活力种子的稳定生产对作物产量至关重要。此外,高寿命对于避免种子在储存期间活力的逐渐丧失也至关重要。这两个种子性状在种子发育过程中都受到环境的强烈影响。在此,我们利用在最佳条件和热应激条件下产生的MAGIC群体,研究了果实成熟期间的热应激(HS)对番茄种子在中等相对湿度下储存期间的寿命、发芽速度(t50)和发芽均匀性的影响。使用可塑性指数来评估热应激对每个性状的影响程度。热应激使亲本和MAGIC群体中的平均寿命和发芽均匀性降低了50%。然而,种子对热应激的反应存在高度遗传变异性。共鉴定出39个QTL,包括来自对照(3个)和热应激(3个)条件下种子的6个寿命QTL,以及6个寿命可塑性QTL,其中只有1个与热应激下的寿命QTL重叠。6个寿命QTL中有4个与t50 QTL共定位,揭示了种子质量性状的热点区域。利用先前的转录组和基因网络数据对间隔小于3 cM的21个QTL进行了分析,以提出种子活力和寿命性状的候选基因。