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葡萄浆果中的糖分积累。两个假定的液泡转化酶cDNA的克隆及其在葡萄组织中的表达。

Sugar accumulation in grape berries. Cloning of two putative vacuolar invertase cDNAs and their expression in grapevine tissues.

作者信息

Davies C, Robinson S P

机构信息

Cooperative Research Centre for Viticulture, South Australia, Australia.

出版信息

Plant Physiol. 1996 May;111(1):275-83. doi: 10.1104/pp.111.1.275.

Abstract

During grape berry (Vitis vinifera L.) ripening, sucrose transported from the leaves is accumulated in the berry vacuoles as glucose and fructose. To study the involvement of invertase in grape berry ripening, we have cloned two cDNAs (GIN1 and GIN2) from berries. The cDNAs encode translation products that are 62% identical to each other and both appear to be vacuolar forms of invertase. Both genes are expressed in a variety of tissues, including berries, leaves, roots, seeds, and flowers, but the two genes have distinct patterns of expression. In grape berries, hexose accumulation began 8 weeks postflowering and continued until the fruit was ripe at 16 weeks. Invertase activity increased from flowering, was maximal 8 weeks postflowering, and remained constant on a per berry basis throughout ripening. Expression of GIN1 and GIN2 in berries, which was high early in berry development, declined greatly at the commencement of hexose accumulation. The results suggest that although vacuolar invertases are involved in hexose accumulation in grape berries, the expression of the genes and the synthesis of the enzymes precedes the onset of hexose accumulation by some weeks, so other mechanisms must be involved in regulating this process.

摘要

在葡萄浆果(欧亚种葡萄)成熟过程中,从叶片运输而来的蔗糖以葡萄糖和果糖的形式积累在浆果液泡中。为了研究转化酶在葡萄浆果成熟中的作用,我们从浆果中克隆了两个cDNA(GIN1和GIN2)。这些cDNA编码的翻译产物彼此间有62%的同源性,且似乎都是液泡形式的转化酶。这两个基因在包括浆果、叶片、根、种子和花在内的多种组织中均有表达,但它们具有不同的表达模式。在葡萄浆果中,己糖积累在开花后8周开始,并持续到16周果实成熟。转化酶活性从开花期开始增加,在开花后8周达到最高,并且在整个成熟过程中每个浆果的活性保持恒定。GIN1和GIN2在浆果中的表达在浆果发育早期较高,在己糖积累开始时大幅下降。结果表明,尽管液泡转化酶参与了葡萄浆果中己糖的积累,但基因的表达和酶的合成在己糖积累开始前数周就已发生,因此一定有其他机制参与调控这一过程。

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