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耐旱物种斯氏鼠尾粟和粘叶 Xerophyta 叶片己糖激酶活性及代谢产物水平对干燥的响应变化

Changes in leaf hexokinase activity and metabolite levels in response to drying in the desiccation-tolerant species Sporobolus stapfianus and Xerophyta viscosa.

作者信息

Whittaker A, Bochicchio A, Vazzana C, Lindsey G, Farrant J

机构信息

Department of Biochemistry, University of Cape Town, Private Bag Rondebosch 7700, South Africa.

出版信息

J Exp Bot. 2001 May;52(358):961-9. doi: 10.1093/jexbot/52.358.961.

Abstract

The phosphorylation of glucose and fructose is an important step in regulating the supply of hexose sugars for biosynthesis and metabolism. Changes in leaf hexokinase (EC 2.7.1.1) activity and in vivo metabolite levels were examined during drying in desiccation-tolerant Sporobolus stapfianus and Xerophyta viscosa. Leaf hexokinase activity was significantly induced from 85% to 29% relative water content (RWC) in S. stapfianus and from 89% to 55% RWC in X. viscosa. The increase in hexokinase corresponded to the region of sucrose accumulation in both species, with the highest activity levels coinciding with region of net glucose and fructose removal. The decline of hexose sugars and accumulation of sucrose in both plant species was not associated with a decline in acid and neutral invertase. The increase in hexokinase activity may be important to ensure that the phosphorylation and incorporation of glucose and fructose into metabolism exceeded production from potential hydrolytic activity. Total cellular glucose-6-phosphate (Glc-6-P) and fructose-6-phosphate (Fru-6-P) levels were held constant throughout dehydration. In contrast to hexokinase, fructokinase activity was unchanged during dehydration. Hexokinase activity was not fully induced in leaves of S. stapfianus dried detached from the plant, suggesting that the increase in hexokinase may be associated with the acquisition of desiccation-tolerance.

摘要

葡萄糖和果糖的磷酸化是调节生物合成和代谢中己糖供应的重要步骤。在耐旱的拟高羊茅(Sporobolus stapfianus)和粘叶萱草(Xerophyta viscosa)干燥过程中,检测了叶片己糖激酶(EC 2.7.1.1)活性和体内代谢物水平的变化。在拟高羊茅中,叶片己糖激酶活性在相对含水量从85%降至29%时显著诱导,在粘叶萱草中则在相对含水量从89%降至55%时显著诱导。己糖激酶的增加与两个物种中蔗糖积累的区域相对应,最高活性水平与葡萄糖和果糖净去除的区域一致。两种植物中己糖的减少和蔗糖的积累与酸性和中性转化酶的下降无关。己糖激酶活性的增加对于确保葡萄糖和果糖磷酸化并纳入代谢超过潜在水解活性产生的量可能很重要。在整个脱水过程中,细胞内葡萄糖-6-磷酸(Glc-6-P)和果糖-6-磷酸(Fru-6-P)的总水平保持恒定。与己糖激酶相反,果糖激酶活性在脱水过程中没有变化。从植株上分离干燥的拟高羊茅叶片中,己糖激酶活性没有被完全诱导,这表明己糖激酶的增加可能与获得耐旱性有关。

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