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首页> 外文期刊>American Journal of Potato Research >Profiling of StvacINV1, BAM1 and INH2 alpha Expressions in Relation to Acid Invertase and beta-Amylase Activities During Development of Cold-Induced Sweetening in Indian Potato (Solanum tuberosum L.) Tubers
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Profiling of StvacINV1, BAM1 and INH2 alpha Expressions in Relation to Acid Invertase and beta-Amylase Activities During Development of Cold-Induced Sweetening in Indian Potato (Solanum tuberosum L.) Tubers

机译:在印度马铃薯(Solanum tuberosum L.)块茎冷诱导甜化过程中StvacINV1,BAM1和INH2 alpha表达与酸性转化酶和β-淀粉酶活性的关系

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摘要

Cold-induced sweetening (CIS) characterized by reducing sugars (RS) accumulation during low temperature storage of potato (Solanum tuberosum L.) tubers remains a serious postharvest concern for the potato processing industry. Enzymes involved in carbohydrates metabolism and the genes modulating their activities are of paramount importance in the events associated with the development of CIS. Expression of vacuolar acid invertase gene StvacINV1, beta-amylase gene BAM1 and invertase inhibitor gene INH2 alpha and their consequence on acid invertase and beta-amylase activities with resulting RS accumulation were followed in one CIS-tolerant (Kufri Jyoti) and one CIS-susceptible (Kufri Badshah) Indian potato varieties stored in cold conditions. Differential gene expression analysis showed that during cold storage, expression of StvacINV1 and BAM1 increased at low temperature and their transcripts were more expressed in the CIS-tolerant variety than the CIS-sensitive. Besides, correlation between BAM1 expression and beta-amylase activity affirmed the hypothesis of several enzymes and pathways involved in starch degradation during cold storage of potato. Expression of invertase inhibitor gene INH2 alpha however was higher in the CIS-tolerant variety than the CIS-sensitive. Correlating StvacINV1 and INH2 alpha expressions with RS content and acid invertase activity established that post-translational regulation of acid invertase by the invertase inhibitor protein could be an important component of resistance to CIS.
机译:以马铃薯块茎低温贮藏期间减少糖(RS)积累为特征的冷诱导甜化(CIS)仍然是马铃薯加工业关注的采后问题。在与CIS发生有关的事件中,涉及碳水化合物代谢的酶及其调节其活性的基因至关重要。在一株耐CIS(Kufri Jyoti)和一株CIS易感性中,观察液泡酸转化酶基因StvacINV1,β-淀粉酶基因BAM1和转化酶抑制剂基因INH2α的表达及其对酸转化酶和β-淀粉酶活性的影响,并由此导致RS积累。 (Kufri Badshah)印度马铃薯品种在寒冷的条件下储存。差异基因表达分析表明,在冷藏期间,StvacINV1和BAM1的表达在低温下增加,并且它们的转录本在CIS耐受的品种中比CIS敏感的品种更多地表达。此外,BAM1表达与β-淀粉酶活性之间的相关性证实了马铃薯冷藏期间淀粉降解涉及的几种酶和途径的假设。然而,在耐CIS的品种中,转化酶抑制剂基因INH2α的表达高于对CIS敏感的品种。将StvacINV1和INH2α表达与RS含量和酸性转化酶活性相关联,可以确定转化酶抑制剂蛋白对酸性转化酶的翻译后调控可能是对CIS抵抗的重要组成部分。

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