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Decline in RNA integrity of dry-stored soybean seeds correlates with loss of germination potential

机译:干贮大豆种子RNA完整性的下降与发芽潜力的丧失相关

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摘要

This study investigates the relationship between germination ability and damage to RNA in soybean seeds (cv ‘Williams 82’) stored dry at 5 °C for 1–27 years. Total germination of 14 age cohorts harvested between 2015 and 1989 ranged from 100% to 3%. Germination decline followed classic seed viability kinetics, with symptomatic seed aging beginning after 17 years of storage. RNA integrity was assessed in dry seeds by electrophoresis of total RNA, followed by calculation of the RNA integrity number (RIN, Agilent Bioanalyzer software), which evaluates RNA fragment size distributions. Analysis of RNA extracted from cotyledons, embryonic axes, plumules, and seed coats across the range of age cohorts showed consistent RNA degradation: older seeds had over-representation of small RNAs compared with younger seeds, which had nearly a 2:1 ratio of 25S and 18S rRNAs. RIN values for cotyledons and embryonic axes from the same seed were correlated. Decline in RIN tracked reduced germination, with a pronounced decrease in RIN after 17 years of storage. This led to a high correlation between the mean RIN of cotyledon RNA and the total germination percentage (R2=0.91, P<0.0001). Despite this relationship, germinable and non-germinable seeds within cohorts could not be distinguished unless the RIN was <3.5, indicating substantial deterioration. Our work demonstrates that seed RNA incurs damage over time, observable in fragment size distributions. Under the experimental conditions used here, RIN appears to be a promising surrogate for germination tests used to monitor viability of stored seeds.
机译:这项研究调查了在5°C下干燥1–27年干燥的大豆种子(cv“ Williams 82”)的发芽能力与RNA损伤之间的关系。 2015年至1989年之间收获的14个年龄组的总发芽率为100%至3%。发芽下降遵循经典的种子生存力动力学,有症状的种子在储存17年后开始老化。通过对总RNA进行电泳,评估干燥种子中的RNA完整性,然后计算RNA完整性数(RIN,Agilent Bioanalyzer软件),以评估RNA片段大小分布。分析从整个年龄组的子叶,胚轴,胚芽和种皮中提取的RNA,显示出一致的RNA降解:与年轻的种子相比,较早的种子具有更多的小RNA代表,较年轻的种子具有近2:1的25S比率和18S rRNA。将同一种子的子叶和胚轴的RIN值关联起来。 RIN的下降追踪了发芽的减少,经过17年的储存后RIN显着下降。这导致子叶RNA的平均RIN与总发芽率之间具有高度相关性(R 2 = 0.91,P <0.0001)。尽管存在这种关系,但除非RIN <3.5,否则无法区分队列中的可发芽种子和不可发芽种子。我们的工作表明,随着时间的推移,种子RNA会受到破坏,在片段大小分布中可以观察到。在此处使用的实验条件下,RIN似乎是用于监测贮藏种子活力的发芽试验的有希望的替代物。

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