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Inter-nucleosomal DNA fragmentation and loss of RNA integrity during seed ageing

机译:种子老化期间核糖体间DNA片段化和RNA完整性损失

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The germination of viable seeds is the basis for new plant growth and development. Seeds lose viability during storage, but the biochemical mechanisms of seed death are not fully understood. This study aimed to investigate degradation patterns of nucleic acids during seed ageing and subsequent water uptake. Seeds of Pisum sativum L. were artificially aged at 50°C and 12% seed water content (WC). Nucleic acids degradation was studied during ageing and during imbibition of four seed lots with differential viability from highly viable to dead. As seeds lost viability during ageing, DNA was gradually degraded into internucleosomal fragments, resulting in ‘DNA laddering’, in conjunction with disintegration of 18S and 28S rRNA bands. During imbibition, non-aged controls had high levels of DNA and RNA integrity through to radicle protrusion. In an aged seed lot with 85% total germination (TG) DNA fragmentation decreased upon imbibition probably due to nucleosome degradation, while rRNA integrity did not improve. In an aged seed lot with 44% TG, neither DNA nor rRNA integrity improved upon imbibition. Dead seeds showed DNA degradation as laddering throughout imbibition along with extensive degradation of rRNA. We present a model in which interlinked programmed and non-programmed events contribute to seed ageing, and suggest that protection of nucleic acids during ageing is key to seed longevity.
机译:可行种子的发芽是新植物生长发育的基础。种子在储存过程中丧失活力,但种子死亡的生化机制尚未完全明了。这项研究旨在研究种子老化和随后的水分吸收过程中核酸的降解模式。在50°C和12%种子含水量(WC)的条件下人工对Pisum sativum L.的种子进行老化。研究了在老化过程中和在四个种子批次的吸收过程中核酸的降解情况,这些种子具有从高度存活到死亡的不同生存能力。随着种子在衰老过程中丧失生存能力,DNA逐渐降解为核小体片段,导致“ DNA阶梯化”,并伴随18S和28S rRNA条带的解体。在吸收过程中,未衰老的对照者直至胚根突出都具有高水平的DNA和RNA完整性。在具有85%的总发芽(TG)的老化种子批次中,吸收后DNA片段减少了,这可能是由于核小体的降解,而rRNA的完整性却没有改善。在TG含量为44%的老化种子批次中,DNA和rRNA的完整性在吸收后均不会改善。死亡种子表现出DNA降解,呈阶梯状分布,并伴随rRNA的大量降解。我们提出了一个模型,在该模型中,相互关联的已编程和未编程事件都有助于种子老化,并建议在老化过程中保护核酸是种子寿命的关键。

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