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矮化和正常株西瓜幼苗对赤霉素的反应。

Response of seedlings of a dwarf and a normal strain of watermelon to gibberellins.

机构信息

Department of Plant Science, University of New Hampshire, Durham, New Hampshire 03824.

出版信息

Plant Physiol. 1974 Mar;53(3):325-30. doi: 10.1104/pp.53.3.325.

Abstract

Hypocotyl and root elongation in a dwarf and a normal strain of watermelon (Citrullus lanatus [Thunb.] Matsu.) in the absence or presence of different gibberellins was investigated in seedlings grown under gold fluorescent light or in darkness. The normal strain, "Sugar Baby," responded only slightly to the gibberellic acids employed. At appropriate concentrations all of the gibberellic acids were capable of normalizing growth in the monorecessive dwarf strain, WB-2, in darkness or in light. Gibberellins A(4+7) and A(7) were effective in stimulating hypocotyl elongation at concentrations 10 to 15 times lower than that needed for a response to GA(1) or GA(3). Dark-grown dwarfs responded to about a 3-fold lower concentration of GA(4+7) than those grown in light.In contrast to hypocotyl elongation, root elongation was greater in the dwarf than in the normal strain. Concentrations of gibberellic acids which enhanced hypocotyl elongation of WB-2 plants, inhibited root growth proportionately.Anatomically, the response of the dwarf strain to GA(4+7) was primarily in terms of increased cell division. Dark-enhanced elongation of both SB and WB-2 was due almost solely to increased cell elongation. The results suggest that, at least in some species, a major component of dark-enhanced growth (or light-inhibited growth) is physiologically distinct from gibberellic acid-stimulated elongation.

摘要

在金荧光灯下或黑暗中生长的西瓜(Citrullus lanatus [Thunb.] Matsu.)矮化和正常品系的下胚轴和根伸长,在不存在或存在不同赤霉素的情况下进行了研究。正常品系“糖宝宝”对所用赤霉素的反应仅略有不同。在适当的浓度下,所有赤霉素都能够使单隐性矮化品系 WB-2 在黑暗或光照下正常生长。赤霉素 A(4+7) 和 A(7) 在 10 到 15 倍于 GA(1) 或 GA(3) 反应所需浓度的情况下,有效地刺激下胚轴伸长。黑暗生长的矮化植株对 GA(4+7) 的反应浓度比在光照下生长的矮化植株低约 3 倍。与下胚轴伸长相反,根伸长在矮化品系中大于正常品系。促进 WB-2 植物下胚轴伸长的赤霉素浓度会相应地抑制根的生长。从解剖学上看,矮化品系对 GA(4+7) 的反应主要是细胞分裂增加。SB 和 WB-2 的黑暗增强伸长几乎完全是由于细胞伸长增加所致。结果表明,至少在某些物种中,黑暗增强生长(或光抑制生长)的主要成分在生理上与赤霉素刺激伸长不同。

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