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拟南芥正常株和矮化株的茎生长、花形成和内源赤霉素。

Stem growth, flower formation, and endogenous gibberellins in a normal and a dwarf strain of Silene armeria.

机构信息

MSU-DOE Plant Research Laboratory, Michigan State University, 48824, East Lansing, MI, USA.

出版信息

Planta. 1979 Jan;145(2):175-80. doi: 10.1007/BF00388714.

Abstract

The physiological basis of dwarfism in a single-gene, recessive mutant of Silene armeria L. was investigated through comparison with a normal strain. Exposure of the normal strain to long days led to stem growth and flower formation while similar exposure of the dwarf strain led only to flowering, with very little stem growth. Application of gibberellin A3 or A4+7 in short days promoted stem elongation in the normal strain, but had a much lesser effect in the dwarf strain. Upon extraction and chromatographic fractionation of the endogenous gibberellins (GAs) in the normal strain of S. armeria, three zones of GA activity were found. An increase in one zone of activity was found in both strains after 1 long day. Neither the quality nor the quantity of the extractable GAs differed greatly between the dwarf and the normal strain. Vegetative dwarf scions, grafted onto fully induced, normal stocks formed flowers, but their growth habit was not changed. Thus, the lack of stem growth in response to long days in the dwarf strain appears to result from a lack of GA sensitivity in the stem tissue of these plants. However, during flower formation dwarf plants did exhibit elongation of the peduncles. This response was suppressed by the growth retardant 2-isopropyl-4-dimethylamino-5-methylphenyl-1-piperidine-carboxylate methyl chloride (AMO-1618), and applied GA3 could partially overcome this inhibition. Thus, peduncle elongation in the dwarf strain appears to be regulated by endogenous GAs.

摘要

通过与正常株系进行比较,研究了拟南芥单基因隐性突变体矮化的生理基础。将正常株系暴露在长日照下会导致茎的生长和花的形成,而类似的短日照下矮化株系只会导致花的形成,茎的生长非常少。赤霉素 A3 或 A4+7 在短日照下促进正常株系的茎伸长,但在矮化株系中的作用要小得多。对拟南芥正常株系中的内源赤霉素(GAs)进行提取和色谱分离后,发现有三个具有赤霉素活性的区域。在 1 个长日照后,两个株系中都发现一个活性区域增加。矮化株系和正常株系之间,可提取的 GAs 的质量和数量差异不大。接在完全诱导的正常砧木上的营养性矮化接穗形成了花,但它们的生长习性没有改变。因此,在矮化株系中,对长日照的茎生长反应不足似乎是由于这些植物的茎组织缺乏赤霉素敏感性所致。然而,在花形成过程中,矮化植物确实表现出花梗的伸长。这种反应被生长抑制剂 2-异丙基-4-二甲基氨基-5-甲基苯基-1-哌啶-羧酸甲酯盐酸盐(AMO-1618)抑制,而施加的赤霉素 A3 可以部分克服这种抑制。因此,矮化株系的花梗伸长似乎是由内源 GAs 调节的。

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