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日本梨可溶性酸性转化酶两种同工型的克隆及其在果实发育过程中的表达

Cloning of two isoforms of soluble acid invertase of Japanese pear and their expression during fruit development.

作者信息

Yamada Kunio, Kojima Takuya, Bantog Nancy, Shimoda Tetsuji, Mori Hitoshi, Shiratake Katsuhiro, Yamaki Shohei

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya 464-8601, Japan.

出版信息

J Plant Physiol. 2007 Jun;164(6):746-55. doi: 10.1016/j.jplph.2006.05.007. Epub 2006 Aug 1.

Abstract

Soluble acid invertase (S-AIV; EC 3.2.1.26) in Japanese pear fruit has an important role in accumulating hexoses during fruit enlargement and regulates the sucrose-to-hexose ratio in the vacuole. Full-length cDNA of PsS-AIV1 and PsS-AIV2 isoforms were cloned from Japanese pear fruit and their amino acid sequences share 40% identity; PsS-AIV1 was confirmed to code S-AIV isozyme purified previously. The roles of PsS-AIV1 and PsS-AIV2 genes throughout fruit development and in sugar composition were investigated by semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) analysis using specific primers of their transcripts. PsS-AIV1 transcript had a maximum level at 34 days after full bloom (DAFB) and decreased rapidly during fruit development; PsS-AIV2 transcript increased gradually during fruit growth from 34 DAFB, had its maximum level at 79 DAFB and remained high until 107 DAFB at active fruit enlargement. The activity of S-AIV was highest at 34 DAFB, decreased during fruit growth until 66 DAFB, remained almost the same during early fruit enlargement until 79 DAFB and then decreased again. Soluble sugars fructose and glucose began accumulating predominantly during fruit enlargement from 66 DAFB; sucrose began increasing rapidly during fruit maturation from 121 DAFB. High expression of PsS-AIV1 transcript and high enzyme activity in the young fruit stage seems to have an important role in supplying a lot of substrate for energy needed for cell division and growth by hydrolyzing sucrose to hexoses. Increasing PsS-AIV2 expression during fruit enlargement may lead to rapid cell expansion through increased osmotic pressure by accumulation of a large amount of hexose in the vacuole.

摘要

日本梨果实中的可溶性酸性转化酶(S-AIV;EC 3.2.1.26)在果实膨大过程中积累己糖方面发挥着重要作用,并调节液泡中蔗糖与己糖的比例。从日本梨果实中克隆了PsS-AIV1和PsS-AIV2同工型的全长cDNA,它们的氨基酸序列具有40%的同一性;已证实PsS-AIV1编码先前纯化的S-AIV同工酶。通过使用其转录本的特异性引物进行半定量逆转录聚合酶链反应(RT-PCR)分析,研究了PsS-AIV1和PsS-AIV2基因在整个果实发育过程中以及在糖组成中的作用。PsS-AIV1转录本在盛花后34天(DAFB)达到最高水平,并在果实发育过程中迅速下降;PsS-AIV2转录本在从34 DAFB开始的果实生长过程中逐渐增加,在79 DAFB达到最高水平,并在果实活跃膨大期一直保持高水平直至107 DAFB。S-AIV的活性在34 DAFB时最高,在果实生长至66 DAFB期间下降,在果实早期膨大至79 DAFB期间几乎保持不变,然后再次下降。可溶性糖果糖和葡萄糖主要在从66 DAFB开始的果实膨大过程中开始积累;蔗糖在从121 DAFB开始的果实成熟过程中迅速增加。幼果期PsS-AIV1转录本的高表达和高酶活性似乎在通过将蔗糖水解为己糖为细胞分裂和生长所需的能量提供大量底物方面发挥着重要作用。在果实膨大过程中PsS-AIV2表达的增加可能通过液泡中大量己糖的积累导致渗透压升高,从而导致细胞快速扩张。

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