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拟南芥sis7和sis10糖不敏感突变体的鉴定、克隆及特性分析

Identification, cloning and characterization of sis7 and sis10 sugar-insensitive mutants of Arabidopsis.

作者信息

Huang Yadong, Li Chun Yao, Biddle Kelly D, Gibson Susan I

机构信息

Department of Plant Biology, University of Minnesota, 1500 Gortner Avenue, Saint Paul, MN 55108, USA.

出版信息

BMC Plant Biol. 2008 Oct 14;8:104. doi: 10.1186/1471-2229-8-104.

Abstract

BACKGROUND

The levels of soluble sugars, such as glucose and sucrose, help regulate many plant metabolic, physiological and developmental processes. Genetic screens are helping identify some of the loci involved in plant sugar response and reveal extensive cross-talk between sugar and phytohormone response pathways.

RESULTS

A forward genetic screen was performed to identify mutants with increased resistance to the inhibitory effects of high levels of exogenous sugars on early Arabidopsis seedling development. The positional cloning and characterization of two of these sugar insensitive (sis) mutants, both of which are also involved in abscisic acid (ABA) biosynthesis or response, are reported. Plants carrying mutations in SIS7/NCED3/STO1 or SIS10/ABI3 are resistant to the inhibitory effects of high levels of exogenous Glc and Suc. Quantitative RT-PCR analyses indicate transcriptional upregulation of ABA biosynthesis genes by high concentrations of Glc in wild-type germinating seeds. Gene expression profiling revealed that a significant number of genes that are expressed at lower levels in germinating sis7-1/nced3-4/sto1-4 seeds than in wild-type seeds are implicated in auxin biosynthesis or transport, suggesting cross-talk between ABA and auxin response pathways. The degree of sugar insensitivity of different sis10/abi3 mutant seedlings shows a strong positive correlation with their level of ABA insensitivity during seed germination.

CONCLUSION

Mutations in the SIS7/NCED3/STO1 gene, which is primarily required for ABA biosynthesis under drought conditions, confer a sugar-insensitive phenotype, indicating that a constitutive role in ABA biosynthesis is not necessary to confer sugar insensitivity. Findings presented here clearly demonstrate that mutations in ABI3 can confer a sugar-insensitive phenotype and help explain previous, mixed reports on this topic by showing that ABA and sugar insensitivity exhibit a strong positive correlation in different abi3 mutants. Expression profiling revealed a potentially novel regulation of auxin metabolism and transport in an ABA deficient mutant, sis7-1/nced3-4/sto1-4.

摘要

背景

可溶性糖(如葡萄糖和蔗糖)的水平有助于调节许多植物的代谢、生理和发育过程。遗传筛选有助于识别一些参与植物糖响应的基因座,并揭示糖与植物激素响应途径之间广泛的相互作用。

结果

进行了正向遗传筛选,以鉴定对高水平外源糖对拟南芥早期幼苗发育的抑制作用具有增强抗性的突变体。报道了其中两个糖不敏感(sis)突变体的定位克隆和特征分析,这两个突变体也都参与脱落酸(ABA)的生物合成或响应。携带SIS7/NCED3/STO1或SIS10/ABI3突变的植物对高水平外源葡萄糖和蔗糖的抑制作用具有抗性。定量逆转录-聚合酶链反应(RT-PCR)分析表明,野生型萌发种子中高浓度葡萄糖会导致ABA生物合成基因的转录上调。基因表达谱分析显示,与野生型种子相比,萌发的sis7-1/nced3-4/sto1-4种子中许多表达水平较低的基因与生长素生物合成或运输有关,这表明ABA和生长素响应途径之间存在相互作用。不同sis10/abi3突变体幼苗的糖不敏感程度与其种子萌发期间的ABA不敏感水平呈强正相关。

结论

SIS7/NCED3/STO1基因的突变在干旱条件下对ABA生物合成起主要作用,赋予了糖不敏感表型,这表明在ABA生物合成中起组成作用并非赋予糖不敏感所必需。此处的研究结果清楚地表明,ABI3突变可赋予糖不敏感表型,并通过表明ABA和糖不敏感在不同abi3突变体中表现出强正相关,有助于解释此前关于该主题的混合报道。表达谱分析揭示了ABA缺陷型突变体sis7-1/nced3-4/sto1-4中生长素代谢和运输的潜在新调控机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63fe/2579432/8d4ab3fa6490/1471-2229-8-104-1.jpg

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