The effect of ionizing radiation on ribosomal RNA synthesis in grand rapids lettuce seeds

Lynn P. Yealy, B.P. Stone
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引用次数: 6

Abstract

Germination of Grand Rapids lettuce seeds was effectively delayed by exposure to 100 kiloroentgens (kr) gamma-irradiation. Both gibberellic acid and kinetin were able to slightly overcome this delay in germination imposed by ionizing radiation. Incubation in 5-fluorouracil significantly depressed germination in irradiated seeds while it did not affect unirradiated seeds.

A dose of 100 kr ionizing radiation was effective in decreasing incorporation of [3H]-uridine into high molecular weight RNA but did not decrease incorporation into transfer RNA. 5-Fluorouracil reduced incorporation of labeled precursor into both RNA components while gibberellic acid stimulated the synthesis of ribosomal and transfer RNA.

The results indicated that ribosomal RNA synthesis was not necessary for germination to occur as 5-fluorouracil did not prevent germination in unirradiated seeds. However, 5-florouracil did delay germination after exposure to ionizing radiation indicating that ribosomal RNA synthesis may be involved in radiation damage and subsequent repair processes. From these data it appeared that ionizing radiation delayed germination of Grand Rapids lettuce seeds through an inhibition of ribosomal RNA synthesis.

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电离辐射对大急流莴苣种子核糖体RNA合成的影响
大急流城莴苣种子在100千质子(kr) γ辐射下有效延迟发芽。赤霉素酸和动素都能稍微克服电离辐射造成的发芽延迟。5-氟尿嘧啶孵育显著抑制了辐照种子的萌发,而对未辐照种子没有影响。100kr电离辐射能有效减少[3H]-尿苷在高分子量RNA中的掺入,但对转移RNA的掺入没有影响。5-氟尿嘧啶减少了标记前体与RNA组分的结合,而赤霉素酸则刺激了核糖体和转移RNA的合成。结果表明,核糖体RNA合成不是萌发所必需的,因为5-氟尿嘧啶不会阻止未辐照种子的萌发。然而,5-氟尿嘧啶确实延迟电离辐射暴露后的发芽,这表明核糖体RNA合成可能参与辐射损伤和随后的修复过程。从这些数据看来,电离辐射通过抑制核糖体RNA合成延迟了大急流城莴苣种子的发芽。
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