首页> 外文期刊>Postharvest Biology and Technology >The potato protease inhibitor gene, St-Inh, plays roles in the cold-induced sweetening of potato tubers by modulating invertase activity.
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The potato protease inhibitor gene, St-Inh, plays roles in the cold-induced sweetening of potato tubers by modulating invertase activity.

机译:马铃薯蛋白酶抑制剂基因St-Inh通过调节转化酶活性在寒冷诱导的马铃薯块茎甜味中发挥作用。

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摘要

Reducing sugar accumulation is determined mainly by acid invertase activity in cold-stored potato tubers. The potato Kunitz-type protease inhibitor St-Inh reduces acid invertase activity in vitro, is linked with a quantitative trait locus for sugar content, and is therefore speculated to be involved in the cold-induced sweetening (CIS) of potato tubers. In this study, the expression profile of St-Inh in various organs of potato plants and stored tubers was characterized, and it was found that expression was highest in tubers and was strongly suppressed by low temperatures. This expression pattern was opposite to reducing sugar accumulation in the cold-stored tubers, suggesting a possible involvement of St-Inh in CIS in tubers. Overexpression of St-Inh in tubers resulted in lower acid invertase activities and reducing sugar contents in comparison with wild-type tubers, confirming the role of St-Inh in resistance to CIS. Interestingly, a greater reduction in potato tuber CIS was obtained after overexpression of the tobacco invertase inhibitor NtInvInh2, which belongs to the pectin methylesterase/invertase inhibitor family. The NtInvInh2 transgenic tubers had an even lighter chip color than did the St-Inh transgenic tubers. Both inhibitors are confirmed to be involved in reducing potato CIS, although protease inhibitors of the pectin methylesterase/invertase type may have a stronger capacity to inhibit acid invertase activity than Kunitz-type ones. These results provide novel clues to the mechanism by which potato CIS is regulated.
机译:减少糖分的积累主要取决于冷藏马铃薯块茎中的酸性转化酶活性。马铃薯Kunitz型蛋白酶抑制剂St-Inh在体外降低了酸性转化酶的活性,与糖含量的定量性状基因座相关,因此推测与马铃薯块茎的冷诱导甜化(CIS)有关。在这项研究中,St-Inh在马铃薯植株和贮藏的块茎的各个器官中的表达特征被表征,并且发现在块茎中表达最高并且被低温强烈抑制。这种表达方式与减少冷储块茎中糖的积累相反,表明St-Inh可能参与了块茎CIS中的表达。与野生型块茎相比,St-Inh在块茎中的过表达导致较低的酸转化酶活性并降低糖含量,证实了St-Inh在抗CIS中的作用。有趣的是,过量表达烟草转化酶抑制剂NtInvInh2(属于果胶甲基酯酶/转化酶抑制剂家族)后,马铃薯块茎CIS的降低更大。与St-Inh转基因块茎相比,NtInvInh2转基因块茎的芯片颜色更浅。尽管果胶甲基酯酶/转化酶类型的蛋白酶抑制剂可能比Kunitz型抑制剂具有更强的抑制酸转化酶活性的能力,但两种抑制剂均被证实与马铃薯CIS的降低有关。这些结果为调控马铃薯CIS的机理提供了新线索。

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