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拟南芥海藻糖-6-磷酸合酶AtTPS1基因是葡萄糖、脱落酸和胁迫信号的调节因子。

The Arabidopsis trehalose-6-P synthase AtTPS1 gene is a regulator of glucose, abscisic acid, and stress signaling.

作者信息

Avonce Nelson, Leyman Barbara, Mascorro-Gallardo José O, Van Dijck Patrick, Thevelein Johan M, Iturriaga Gabriel

机构信息

Instituto de Biotecnología, Universidad Nacional Autónoma de México, Col. Chamilpa, Cuernavaca 62210, Mexico.

出版信息

Plant Physiol. 2004 Nov;136(3):3649-59. doi: 10.1104/pp.104.052084. Epub 2004 Oct 29.

Abstract

In Arabidopsis (Arabidopsis thaliana), trehalose is present at almost undetectable levels, excluding its role as an osmoprotectant. Here, we report that overexpression of AtTPS1 in Arabidopsis using the 35S promoter led to a small increase in trehalose and trehalose-6-P levels. In spite of this, transgenic plants displayed a dehydration tolerance phenotype without any visible morphological alterations, except for delayed flowering. Moreover, seedlings overexpressing AtTPS1 exhibited glucose (Glc)- and abscisic acid (ABA)-insensitive phenotypes. Transgenic seedlings germinated on Glc were visibly larger with green well-expanded cotyledonary leaves and fully developed roots, in contrast with wild-type seedlings showing growth retardation and absence of photosynthetic tissue. An ABA dose-response experiment revealed a higher germination rate for transgenic plants overexpressing AtTPS1 showing insensitive germination kinetics at 2.5 mum ABA. Interestingly, germination in the presence of Glc did not trigger an increase in ABA content in plants overexpressing AtTPS1. Expression analysis by quantitative reverse transcription-PCR in transgenic plants showed up-regulation of the ABI4 and CAB1 genes. In the presence of Glc, CAB1 expression remained high, whereas ABI4, HXK1, and ApL3 levels were down-regulated in the AtTPS1-overexpressing lines. Analysis of AtTPS1 expression in HXK1-antisense or HXK1-sense transgenic lines suggests the possible involvement of AtTPS1 in the hexokinase-dependent Glc-signaling pathway. These data strongly suggest that AtTPS1 has a pivotal role in the regulation of Glc and ABA signaling during vegetative development.

摘要

在拟南芥(Arabidopsis thaliana)中,海藻糖的含量几乎检测不到,排除了其作为渗透保护剂的作用。在此,我们报道使用35S启动子在拟南芥中过表达AtTPS1导致海藻糖和海藻糖-6-磷酸水平略有增加。尽管如此,转基因植物表现出脱水耐受表型,除了开花延迟外没有任何可见的形态改变。此外,过表达AtTPS1的幼苗表现出对葡萄糖(Glc)和脱落酸(ABA)不敏感的表型。与表现出生长迟缓且无光合组织的野生型幼苗相比,在Glc上萌发的转基因幼苗明显更大,子叶绿色且充分展开,根发育完全。ABA剂量反应实验表明,过表达AtTPS1的转基因植物发芽率更高,在2.5 μmol ABA时表现出不敏感的发芽动力学。有趣的是,在Glc存在下萌发并未引发过表达AtTPS1的植物中ABA含量的增加。通过定量逆转录PCR对转基因植物进行的表达分析表明,ABI4和CAB1基因上调。在Glc存在下,CAB1表达保持高水平,而过表达AtTPS1的株系中ABI4、HXK1和ApL3水平下调。对HXK1反义或HXK1正义转基因株系中AtTPS1表达的分析表明,AtTPS1可能参与了己糖激酶依赖性Glc信号通路。这些数据强烈表明,AtTPS1在营养发育过程中对Glc和ABA信号的调节中起关键作用。

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