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Genetic factors enhancing seed longevity in tropical japonica rice

机译:遗传因素增强热带粳稻种子长寿的遗传因素

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Seed longevity is a key trait to secure seed viability and vigor of farmer’s seed lots under the increased temperatures and humidity associated with climate change. While previous studies have found quantitative trait loci (QTL) for improved longevity in temperate japonica rice varieties, there are no available QTL identified that can potentially enhance seed longevity in tropical japonica rice, which are grown in ASEAN countries and highly vulnerable to the impact of climate change. Here, we present QTL and candidate genes identified in an F 3 bi-parental QTL mapping population developed from a tropical japonica × indica cross, using 1 k single nucleotide polymorphism (SNP) markers. To accelerate seed ageing through a seed storage experiment, seed moisture content (MC) was elevated by equilibrating seeds at 60 % relative humidity (RH) and 20?°C, after which seeds were stored at 10.9 % seed MC and 45?°C for 56 days. Within a QTL identified on chromosome 2 (2.9 Mb size), there were 45 annotated genes potentially relevant to seed longevity mechanisms such as oxidative stress reduction and repair of damaged DNA. Within the QTL, the preponderance of genes expressed largely in reproductive tissues, seeds or embryo make this a dependable QTL. Based on coexpression and network analysis, we highlight eight genes as potentially important candidate genes, consistent with previous studies suggesting their role in seed germination and longevity.
机译:种子寿命是在与气候变化相关的温度和湿度增加的温度和湿度下保护农民种子批次的种子活力和活力的关键特征。虽然先前的研究发现了用于改善的温带粳稻品种的数量特质基因座(QTL),但没有可用的QTL确定,可以在热带粳稻中潜在地增强种子寿命,这在东盟国家种植,非常容易受到影响气候变化。在此,我们使用1k单核苷酸多态性(SNP)标记,呈现在从热带粳稻x indaga交叉中产生的F 3双亲本QTL映射群中鉴定的QTL和候选基因。为了通过种子储存实验加速种子衰老,通过在60%相对湿度(RH)和20℃下平衡种子升高种子水分含量(MC),然后将种子储存在10.9%Seed MC和45Ω·℃下56天。在染色体2(2.9 MB尺寸)上鉴定的QTL内,有45个注释基因可能与种子寿命机制有关,例如氧化应力减少和受损DNA的修复。在QTL内,主要在生殖组织,种子或胚胎中表达的基因的优势使得这种可靠的QTL。基于共表达和网络分析,我们突出了八个基因作为潜在的重要候选基因,与之前的研究一致,提出了它们在种子萌发和寿命中的作用。

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