首页> 外文期刊>Journal of Plant Biology >Sugar starvation induces the central vacuolation with coordinated increase in expression of tonoplast intrinsic protein genes in suspension-cultured rice cells
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Sugar starvation induces the central vacuolation with coordinated increase in expression of tonoplast intrinsic protein genes in suspension-cultured rice cells

机译:糖饥饿诱导悬浮培养的水稻细胞中中央空泡与液泡膜内在蛋白基因表达的协同增加

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An efficient monitoring of cytoplasmic vacuolation by fluorescein diacetate (FDA) staining of protoplasts revealed that the major populations of suspension-cultured rice cells undergo a rapid vacuolation upon glucosedepletion. As aquaporin-family proteins, tonoplast intrinsic proteins (TIPs) are known to play in regulating the water balance across the vacuolar membrane. Glucose starvation increased expression of every member of OsTIP family, leading to an enhancement of the total expression by up to 110-fold, which is well matched with an expansion of the vacuolar structure induced by starvation. OsTIPs 1;1, 2;2 and 3;1 are the three most prominently expressed OsTIPs in starved conditions due to their highest responsiveness to sugar deprivation. Feeding experiments with various sugars and glucose analogs indicated that sugar regulated expression of the three major OsTIPs is likely mediated by a hexokinasedependent pathway. Alleviation of sugar-induced suppression of OsTIP expression by co-treatment with the uncoupler of ATP synthesis suggests that sugar signaling for OsTIP regulation is also cross-talked by the energy-deficit conditions. Intriguingly, starvation-induced central vacuolation was effectively prevented by mannose and 2-deoxyglucose, but not by 3-O-methylglucose. These results imply that the hexokinase is able to trigger the signaling to suppress the central vacuolation, independently of fueling the energy metabolism.
机译:通过对原生质体进行荧光素双乙酸酯(FDA)染色的细胞质空泡的有效监测表明,悬浮培养的水稻细胞的主要群体在葡萄糖耗尽时会经历快速的空泡。作为水通道蛋白家族蛋白,液泡膜内在蛋白(TIPs)可以调节液泡膜中的水平衡。葡萄糖饥饿增加了OsTIP家族每个成员的表达,导致总表达提高了110倍,这与饥饿引起的液泡结构的扩展很好地匹配。 OsTIP 1; 1、2; 2和3; 1是饥饿状态下表达最强的三个OsTIP,因为它们对糖剥夺的响应最高。各种糖和葡萄糖类似物的喂养实验表明,糖调节的三种主要OsTIP的表达可能是由己糖激酶依赖性途径介导的。通过与ATP合成的解偶联剂共同处理,减轻了糖诱导的OsTIP表达的抑制,这表明能量缺乏条件也对糖信号调控OsTIP产生了干扰。有趣的是,甘露糖和2-脱氧葡萄糖可以有效地防止饥饿诱导的中央空泡形成,而3-O-甲基葡萄糖则不能。这些结果暗示,己糖激酶能够触发信号以抑制中央空泡作用,而与促进能量代谢无关。

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