Expression of a UDPglucose pyrophosphorylase cDNA during fruit ripening of banana (Musa acuminata)

E. Pua, S. Lim, Pei Liu, Jian-Zhong Liu
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引用次数: 35

Abstract

We report the isolation of a banana cDNA, designated MWUGPA, encoding uridine diphosphoryl (UDP)-glucose pyrophosphorylase (UGPase, EC.2.7.7.9) that catalyses the reversible conversion between glucose 1-phosphate and UDPglucose in plants and animals. Furthermore, UGPase expression in fruit during ripening and in response to exogenous ethylene and sugars was also investigated. MWUGPA encodes a polypeptide of 467 amino acid residues and shares a high degree of sequence similarity (85–90%) with other plant UGPase homologs. In northern blot analysis, a 1.7-kb UGPase transcript was detected in both the vegetative and reproductive organs, but the former was considerably less abundant than the latter. In fruit, the level of accumulated transcripts was higher in pulp than peel at all ripening stages. Transcript abundance in both fruit tissues was relatively constant during ripen-ing, but pulp transcripts surged in the ‘more green than yellow’ category fruit when ethylene also increased. Further analysis revealed that UGPase expression in fruit was ethylene-inducible, but the response was tissue-specific, as evidenced by the promoting effect of exogenous ethylene on accumulation of UGPase transcripts in pulp but not peel. Exogenous application of sucrose and fructose also increased UGPase transcript abundance in leaf and fruit tissues, especially pulp, whereas exogenous glucose had little or no effect. The results of this study indicate that ethy-lene and soluble sugars may play a regulatory role in UGPase expression during ripening in banana fruit.
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香蕉果实成熟过程中udp葡萄糖焦磷酸化酶cDNA的表达
我们报道了一个香蕉cDNA的分离,命名为MWUGPA,编码尿苷二磷酸(UDP)-葡萄糖焦磷酸化酶(UGPase, ec2.7.7.9),在植物和动物中催化葡萄糖1-磷酸和udp葡萄糖之间的可逆转化。此外,还研究了UGPase在果实成熟过程中的表达以及对外源乙烯和糖的响应。MWUGPA编码467个氨基酸残基的多肽,与其他植物UGPase同源物具有高度的序列相似性(85-90%)。在northern blot分析中,在营养器官和生殖器官中都检测到一个1.7 kb的UGPase转录本,但前者的丰度明显低于后者。果实各成熟阶段,果肉中转录本积累水平均高于果皮。两种果实组织的转录本丰度在成熟过程中相对稳定,但当乙烯也增加时,“绿多黄”类果实的果肉转录本激增。进一步分析发现,乙烯可以诱导UGPase在果实中的表达,但这种反应具有组织特异性,这表明外源乙烯促进了果肉中UGPase转录本的积累,而非果皮中UGPase转录本的积累。外源蔗糖和果糖也增加了叶片和果实组织中UGPase转录物的丰度,尤其是果肉,而外源葡萄糖几乎没有影响。本研究结果表明,乙烯和可溶性糖可能在香蕉果实成熟过程中调控UGPase的表达。
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