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叶绿体游离体系中赤霉素代谢与光周期的关系

Gibberellin metabolism in cell-free extracts from spinach leaves in relation to photoperiod.

机构信息

Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824.

出版信息

Plant Physiol. 1986 Sep;82(1):190-5. doi: 10.1104/pp.82.1.190.

Abstract

Cell-free extracts capable of converting [(14)C]-labeled gibberellins (GAs) were prepared from spinach (Spinacia oleracea L.) leaves. [(14)C]-labeled GAs, prepared enzymically from [(14)C]mevalonic acid, were incubated with these extracts, and products were identified by gas chromatography-mass spectrometry. The following pathway was found to operate in extracts from spinach leaves grown under long day (LD) conditions: GA(12) --> GA(53) --> GA(44) --> GA(19) --> GA(20). The pH optima for the enzymic conversions of [(14)C]GA(53), [(14)C]GA(44) and [(14)C]GA(19) were approximately 7.0, 8.0, and 6.5, respectively. These three enzyme activities required Fe(2+), alpha-ketoglutarate and O(2) for activity, and ascorbate stimulated the conversion of [(14)C]GA(53) and [(14)C]GA(19). Extracts from plants given LD or short days (SD) were examined, and enzymic activities were measured as a function of exposure to LD, as well as to darkness following 8 LD. The results indicate that the activities of the enzymes oxidizing GA(53) and GA(19) are increased in LD and decreased in SD or darkness, but that the enzyme activity oxidizing GA(44) remains high irrespective of light or dark treatment. This photoperiodic control of enzyme activity is not due to the presence of an inhibitor in plants grown in SD. These observations offer an explanation for the higher GA(20) content of spinach plants in LD than in SD.

摘要

无细胞提取物能够将 [(14)C]-标记的赤霉素(GAs)转化为 [(14)C]-标记的赤霉素,由 [(14)C]甲羟戊酸酶促制备,与这些提取物一起孵育,并通过气相色谱-质谱法鉴定产物。在长日(LD)条件下生长的菠菜叶片提取物中发现了以下途径:GA(12) --> GA(53) --> GA(44) --> GA(19) --> GA(20)。[(14)C]GA(53)、[(14)C]GA(44)和 [(14)C]GA(19)酶促转化的 pH 最佳值分别约为 7.0、8.0 和 6.5。这三种酶活性需要 Fe(2+)、α-酮戊二酸和 O(2)才能发挥活性,抗坏血酸刺激 [(14)C]GA(53)和 [(14)C]GA(19)的转化。检查了给予 LD 或短日(SD)的植物的提取物,并作为暴露于 LD 的函数以及在 8 LD 后黑暗下测量酶活性。结果表明,氧化 GA(53)和 GA(19)的酶活性在 LD 中增加,在 SD 或黑暗中减少,但氧化 GA(44)的酶活性无论光或暗处理如何都保持较高。这种酶活性的光周期控制不是由于在 SD 中生长的植物中存在抑制剂所致。这些观察结果为 LD 中菠菜植物的 GA(20)含量高于 SD 提供了解释。

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