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红松(Pinus resinosa Ait.)种子成分核酸组分在萌发过程中的变化

Changes in Nucleic Acid Fractions of Seed Components of Red Pine (Pinus resinosa Ait.) during Germination.

作者信息

Sasaki S, Brown G N

机构信息

School of Forestry, University of Missouri, Columbia, Missouri 65201.

出版信息

Plant Physiol. 1969 Dec;44(12):1729-33. doi: 10.1104/pp.44.12.1729.

Abstract

Changes in nucleic acid fractions of Pinus resinosa during seed germination were studied. At various stages of seed germination, embryos and megagametophytes were surgically separated and nucleic acids were extracted separately by a phenol-method. Total nucleic acids were fractionated on single-layer methylated albumin kieselguhr (MAK) columns. Total nucleic acids in embryos increased significantly 2 days after seeds were moistened, whereas, in megagametophytes, total nucleic acids stayed almost at a constant level until they degenerated at the time of shedding. In embryos, ribosomal RNAs (rRNA) increased 2 days after seeds were sown, whereas soluble RNA (sRNA) increased at 3 days. By comparison, nucleic acid fractions of megagametophytes did not show any quantitative changes during germination, except that rRNA fractions decreased shortly before shedding of seed coats. In dormant embryos the proportion of DNA was high and the proportions of sRNA and rRNA were low, whereas in megagametophytes at dormancy the proportions were completely reversed. As seed germination progressed, proportions of nucleic acid fractions in embryos changed significantly. In megagametophytes, although proportions of individual fractions remained almost constant throughout the experimental period, incorporation of (32)P into sRNA and rRNA of megagametophytes indicated turnover of these fractions.

摘要

对刚松种子萌发过程中核酸组分的变化进行了研究。在种子萌发的各个阶段,通过手术分离胚和大配子体,并采用酚法分别提取核酸。总核酸在单层甲基化白蛋白硅藻土(MAK)柱上进行分级分离。种子浸湿2天后,胚中的总核酸显著增加,而在大配子体中,总核酸几乎保持恒定水平,直到在脱落时退化。在胚中,核糖体RNA(rRNA)在种子播种后2天增加,而可溶性RNA(sRNA)在3天增加。相比之下,大配子体的核酸组分在萌发过程中未显示出任何定量变化,只是在种皮脱落前不久rRNA组分有所下降。在休眠胚中,DNA的比例较高,sRNA和rRNA的比例较低,而在休眠的大配子体中,比例则完全相反。随着种子萌发的进行,胚中核酸组分的比例发生了显著变化。在大配子体中,尽管各个组分的比例在整个实验期间几乎保持恒定,但(32)P掺入大配子体的sRNA和rRNA表明这些组分有周转。

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