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1
Regulation of ribosomal RNA accumulation by auxin in artichoke tissue.生长素调控菊芋组织中核糖体 RNA 的积累。
Plant Physiol. 1978 Nov;62(5):761-5. doi: 10.1104/pp.62.5.761.
2
Activation of ribosomal and messenger RNA synthesis in excised Jerusalem artichoke tuber slices.离体菊芋块茎切片中核糖体和信使 RNA 合成的激活。
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Cytological studies on the inhibition by 5-fluorouracil of ribosome synthesis and growth in jerusalem artichoke tuber slices.对 5-氟尿嘧啶抑制菊芋块茎切片核糖体合成和生长的细胞学研究。
Planta. 1971 Sep;101(3):210-30. doi: 10.1007/BF00386829.
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Studies on messenger and ribosomal RNA synthesis in plant tissue cultures induced to undergo synchronus cell division.对诱导进行同步细胞分裂的植物组织培养物中信使核糖核酸和核糖体核糖核酸合成的研究。
Eur J Biochem. 1975 Jan 15;50(3):529-37. doi: 10.1111/j.1432-1033.1975.tb09893.x.
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The induction of phosphatase activity in thin slices of Jerusalem artichoke tissue by treatment with indole acetic acid.吲哚乙酸处理诱导洋姜组织薄片中磷酸酶活性的增加。
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Studies on the role of RNA synthesis in auxin induction of cell enlargement.RNA合成在生长素诱导细胞膨大过程中的作用研究。
Plant Physiol. 1968 Feb;43(2):140-50. doi: 10.1104/pp.43.2.140.
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Inhibition of auxin-induced cell expansion in Jerusalem artichoke tuber slices by low concentrations of chloramphenicol.低浓度氯霉素抑制菊芋块茎切片中生长素诱导的细胞扩张。
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Ribosome metabolism in hormone-treated Jerusalem artichoke tuber slices in the absence and presence of 5-fluorouracil.激素处理的菊芋块茎切片在有无 5-氟尿嘧啶存在的情况下的核糖体代谢。
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Functional MYB transcription factor gene HtMYB2 is associated with anthocyanin biosynthesis in Helianthus tuberosus L.功能型 MYB 转录因子基因 HtMYB2 与菊芋花色苷生物合成相关。
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Balance between salt stress and endogenous hormones influence dry matter accumulation in Jerusalem artichoke.盐胁迫与内源激素平衡影响菊芋干物质积累。
Sci Total Environ. 2016 Oct 15;568:891-898. doi: 10.1016/j.scitotenv.2016.06.076. Epub 2016 Jun 17.

引用本文的文献

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Some rapid effects of synthetic auxins on mRNA levels in cultured plant cells.一些合成植物生长素对培养植物细胞中 mRNA 水平的快速影响。
Planta. 1981 May;152(1):32-5. doi: 10.1007/BF00384981.
2
Fractionation of nucleoli from auxin-treated soybean hypocotyl into nucleolar chromatin and preribosomal particles.将生长素处理的大豆下胚轴中的核仁分离为核仁染色质和核糖体前体颗粒。
Plant Physiol. 1983 Nov;73(3):746-53. doi: 10.1104/pp.73.3.746.
3
Control by Phytochrome of Cytoplasmic Precursor rRNA Synthesis in the Cotyledons of Mustard Seedlings.光敏色素对芥菜幼苗子叶细胞质前体 rRNA 合成的控制。
Plant Physiol. 1982 May;69(5):1156-60. doi: 10.1104/pp.69.5.1156.
4
Association of Plant p40 Protein with Ribosomes Is Enhanced When Polyribosomes Form during Periods of Active Tissue Growth.当在活跃组织生长期间多核糖体形成时,植物p40蛋白与核糖体的结合增强。
Plant Physiol. 1996 Jun;111(2):559-568. doi: 10.1104/pp.111.2.559.
5
The plant translational apparatus.植物翻译装置。
Plant Mol Biol. 1996 Oct;32(1-2):107-44. doi: 10.1007/BF00039380.

本文引用的文献

1
The interpretation of studies on rapidly labeled ribonucleic Acid in higher plants.高等植物中快速标记核糖核酸的研究解读
Plant Physiol. 1973 Feb;51(2):412-4. doi: 10.1104/pp.51.2.412.
2
The Turnover of Nucleic Acids in Lemna minor.浮萍中核酸的周转
Plant Physiol. 1970 Jun;45(6):742-51. doi: 10.1104/pp.45.6.742.
3
Ribosomal RNA precursors in plants.植物中的核糖体RNA前体。
J Mol Biol. 1970 May 14;49(3):681-92. doi: 10.1016/0022-2836(70)90291-3.
4
Ribosomal RNA synthesis in plants.植物中的核糖体RNA合成。
J Mol Biol. 1970 May 14;49(3):671-80. doi: 10.1016/0022-2836(70)90290-1.
5
The fractionation of high-molecular-weight ribonucleic acid by polyacrylamide-gel electrophoresis.用聚丙烯酰胺凝胶电泳法分离高分子量核糖核酸
Biochem J. 1967 Jan;102(1):251-7. doi: 10.1042/bj1020251.
6
Sites of synthesis and processing of ribosomal RNA presurosrs within the nucleolus of Urechis caupo eggs.Urechis caupo卵细胞核仁内核糖体RNA前体的合成与加工位点。
Proc Natl Acad Sci U S A. 1970 Oct;67(2):968-75. doi: 10.1073/pnas.67.2.968.
7
Control of synthesis and wastage of ribosomal ribonucleic acid in lymphocytes. II. The role of protein synthesis.淋巴细胞中核糖体核糖核酸合成与损耗的调控。II. 蛋白质合成的作用。
J Biol Chem. 1971 Aug 25;246(16):5059-66.
8
Ribosomal RNA precursors and the synthesis of chloroplast and cytoplasmic ribosomal ribonucleic acid in leaves of Phaseolus aureus.菜豆叶片中核糖体RNA前体以及叶绿体和细胞质核糖体核糖核酸的合成
Eur J Biochem. 1974 May 15;44(2):501-7. doi: 10.1111/j.1432-1033.1974.tb03508.x.
9
Synthesis and processing of ribosomal RNA in cultured plant cells.培养植物细胞中核糖体RNA的合成与加工
Eur J Biochem. 1973 Aug 17;37(2):367-76. doi: 10.1111/j.1432-1033.1973.tb02996.x.
10
Control of ribosomal RNA maturation in differentiating yolk sac erythroid cells.
Cell Differ. 1972 Oct;1(4):219-28. doi: 10.1016/0045-6039(72)90040-1.

生长素调控菊芋组织中核糖体 RNA 的积累。

Regulation of ribosomal RNA accumulation by auxin in artichoke tissue.

机构信息

Department of Botany, University of Edinburgh, Edinburgh, Scotland.

出版信息

Plant Physiol. 1978 Nov;62(5):761-5. doi: 10.1104/pp.62.5.761.

DOI:10.1104/pp.62.5.761
PMID:16660601
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1092216/
Abstract

Artichoke (Helianthus tuberosus L.) tuber tissue cultured in the presence of the auxin 2,4-dichlorophenoxyacetic acid accumulates ribosomal RNA at a rate of 0.135 micrograms per hour per explant whereas there is little accumulation in nontreated tissue. The addition of auxin enhanced the transcription of the 2.5 x 10(6) precursor 3.5-fold and increased the rate of processing 1.8-fold. The major effect of auxin, however, was a vast increase in the rate of processing of the 1.39 x 10(6) precursor to the 1.3 x 10(6) mature ribosomal RNA. The incorporation of label into the 0.7 x 10(6) mature ribosomal RNA of treated tissue was in 10-fold excess over the control after a 30-minute pulse and remained so throughout the remainder of the labeling period. This level, however, was not reached for the complementary 1.3 mature RNA until 3 hours of continuous labeling, decreasing from a initial value of 40-fold excess. A complication in the processing of ribosomal RNA is the apparent increase in the stability of the 0.7 x 10(6) mature RNA with auxin treatment.

摘要

在生长素 2,4-二氯苯氧乙酸存在的情况下培养的朝鲜蓟(Helianthus tuberosus L.)块茎组织以每外植体每小时 0.135 微克的速度积累核糖体 RNA,而未经处理的组织中几乎没有积累。生长素的添加将前体 2.5 x 10(6) 的转录增强了 3.5 倍,并将加工速度提高了 1.8 倍。然而,生长素的主要作用是极大地增加了 1.39 x 10(6)前体到 1.3 x 10(6)成熟核糖体 RNA 的加工速度。经过 30 分钟脉冲处理后,处理组织中 0.7 x 10(6)成熟核糖体 RNA 的标记掺入量比对照增加了 10 倍以上,并且在整个标记周期内一直保持这种水平。然而,对于互补的 1.3 成熟 RNA,直到连续标记 3 小时才达到这个水平,初始值从 40 倍增加减少到 10 倍。核糖体 RNA 加工的一个复杂问题是,生长素处理后 0.7 x 10(6)成熟 RNA 的稳定性明显增加。