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当向生长中的马铃薯块茎切片供应腺嘌呤时,腺嘌呤核苷酸水平的升高会改变淀粉合成与呼吸作用之间的相互作用。

Increased levels of adenine nucleotides modify the interaction between starch synthesis and respiration when adenine is supplied to discs from growing potato tubers.

作者信息

Loef I, Stitt M, Geigenberger P

机构信息

Botanisches Institut, Universität Heidelberg, Im Neuenheimer Feld 360, 69120 Heidelberg, Germany.

出版信息

Planta. 2001 Apr;212(5-6):782-91. doi: 10.1007/s004250000461.

Abstract

To investigate the importance of the overall size of the total adenine nucleotide pool for the regulation of primary metabolism in growing potato tubers, freshly cut discs were provided with zero or 2 mM adenine in the presence of 1 or 100 mM [U-14C]glucose or 100 mM [U-14C]sucrose in the presence and absence of 20 mM orthophosphate (Pi). Adenine led to a 150-250% increase of the total adenine nucleotide pool, which included an increase of ADP, a larger increase of ATP and an increase of the ATP:ADP ratio. There was a 50-100% increase of ADP-glucose (ADPGlc), and starch synthesis was stimulated. Respiratory oxygen uptake was stimulated, and the levels of glycerate-3-phosphate, phosphoenolpyruvate and alpha-ketoglutarate decreased. The response to adenine was not modified by Pi. It is proposed that increased ATP stimulates ADPGlc pyrophosphorylase, leading to a higher rate of starch synthesis. The impact on starch synthesis is constrained, however, because increased ADP can lead to a stimulation of respiration and decline of glycerate-3-phosphate, which will inhibit ADPGlc pyrophosphorylase. The quantitative impact depends on the conditions. In the presence of 1 mM glucose, the levels of phosphorylated intermediates and the rate of starch synthesis were low. Adenine led to a relatively large stimulation of respiration, but only a small stimulation of starch synthesis. In the presence of 100 mM glucose, discs contained high levels of phosphorylated intermediates, low ATP:ADP ratios (< 3) and low rates of starch synthesis (< 20% of the metabolised glucose). Adenine led to marked increase of ATP and 2- to 4-fold stimulation of starch synthesis. Discs incubated with 100 mM sucrose already had high ATP:ADP ratios (> 8) and high rates of starch synthesis (> 50% of the metabolised sucrose). Adenine led to a further increase, but the stimulation was less marked than in high glucose. These results have implications for the function of nucleotide cofactors in segregating sucrose mobilisation and respiration, and the need for energy conservation during sugar-starch conversions.

摘要

为了研究总腺嘌呤核苷酸库的整体大小对生长中的马铃薯块茎初级代谢调节的重要性,将新鲜切割的圆片在存在或不存在20 mM正磷酸盐(Pi)的情况下,分别在1或100 mM [U-14C]葡萄糖或100 mM [U-14C]蔗糖存在时给予零或2 mM腺嘌呤。腺嘌呤使总腺嘌呤核苷酸库增加了150 - 250%,其中包括ADP增加、ATP增加幅度更大以及ATP:ADP比值增加。ADP - 葡萄糖(ADPGlc)增加了50 - 100%,淀粉合成受到刺激。呼吸氧摄取受到刺激,3 - 磷酸甘油酸、磷酸烯醇丙酮酸和α - 酮戊二酸水平下降。Pi对腺嘌呤的反应没有影响。有人提出,增加的ATP刺激ADPGlc焦磷酸化酶,导致淀粉合成速率更高。然而,对淀粉合成的影响受到限制,因为增加的ADP会导致呼吸刺激以及3 - 磷酸甘油酸下降,这将抑制ADPGlc焦磷酸化酶。定量影响取决于条件。在1 mM葡萄糖存在下,磷酸化中间体水平和淀粉合成速率较低。腺嘌呤导致呼吸相对较大的刺激,但对淀粉合成的刺激较小。在100 mM葡萄糖存在下,圆片中含有高水平的磷酸化中间体、低ATP:ADP比值(< 3)和低淀粉合成速率(< 代谢葡萄糖的20%)。腺嘌呤导致ATP显著增加以及淀粉合成2至4倍的刺激。用100 mM蔗糖孵育的圆片已经具有高ATP:ADP比值(> 8)和高淀粉合成速率(> 代谢蔗糖的50%)。腺嘌呤导致进一步增加,但刺激不如在高葡萄糖情况下明显。这些结果对于核苷酸辅因子在分离蔗糖动员和呼吸中的功能以及糖 - 淀粉转化过程中能量守恒的需求具有重要意义。

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