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黄瓜种子中营养物质动员的控制:II. 胚轴的作用。

The control of food mobilisation in seeds of Cucumis sativus L. : II. The role of the embryonic axis.

机构信息

Department of Biology, Queen Elizabeth College (University of London), Campden Hill Road, W.8, 7AH, London, U.K..

出版信息

Planta. 1979 Oct;146(5):585-90. doi: 10.1007/BF00388836.

Abstract

Removal of the embryonic axis from germinated cucumber seeds, either on the second of fourth day after imbibition, subsequently results in reduced rates of lipid and protein degradation and in the accumulation of free sugars and amino acids in the cotyledons. These isolated cotyledons show an inherent capacity for expansion growth which apparently results from an increased rate of water uptake. When water uptake is inhibited by incubating samples in polyethylene glycol the rate of lipid degradation is further reduced. This is accompanied by an additional increase in the reducing sugar and sucrose content of the cotyledons. Protein degradation in isolated cotyledons is inhibited to the same extent whether samples are incubated in water or polyethylene glycol. Furthermore, amino acid levels show appreciable and almost identical increases in both incubation media. Evidently an inverse correlation exists between rates of reserve mobilisation and levels of end products. It is suggested that the axis controls food mobilisation through a sink effect by reducing the levels of end products in the cotyledons.

摘要

将发芽的黄瓜种子的胚轴在吸胀后第二天或第四天去除,随后会导致脂质和蛋白质降解的速率降低,并在子叶中积累游离糖和氨基酸。这些分离的子叶表现出固有的扩展生长能力,这显然是由于吸水速率增加所致。当通过在聚乙二醇中孵育样品来抑制水合作用时,脂质降解的速率进一步降低。这伴随着子叶中还原糖和蔗糖含量的额外增加。无论在水中还是聚乙二醇中孵育,分离的子叶中的蛋白质降解都受到相同程度的抑制。此外,两种孵育介质中的氨基酸水平都明显且几乎相同地增加。显然,储备动员的速度和终产物的水平之间存在反比关系。有人认为,通过降低子叶中终产物的水平,轴通过汇效应来控制食物动员。

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