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多药耐药相关蛋白ABC转运蛋白基因5的突变导致水稻种子中植酸含量降低。

Mutations of the multi-drug resistance-associated protein ABC transporter gene 5 result in reduction of phytic acid in rice seeds.

作者信息

Xu Xiu-Hong, Zhao Hai-Jun, Liu Qing-Long, Frank Thomas, Engel Karl-Heinz, An Gynheung, Shu Qing-Yao

机构信息

IAEA-Zhejiang University Collaborating Center, and National Key Laboratory of Rice Biology, Institute of Nuclear Agricultural Sciences, Zhejiang University, Hangzhou, China.

出版信息

Theor Appl Genet. 2009 Jun;119(1):75-83. doi: 10.1007/s00122-009-1018-1. Epub 2009 Apr 16.

Abstract

Phytic acid (PA, myo-inositol 1,2,3,4,5,6-hexakisphosphate) is important to the nutritional quality of cereal and legume seeds. PA and its salts with micronutrient cations, such as iron and zinc, cannot be digested by humans and non-ruminant animals, and hence may affect food/feed nutritional value and cause P pollution of groundwater from animal waste. We previously developed a set of low phytic acid (LPA) rice mutant lines with the aim of increasing the nutritional quality of rice. Two of these lines, Os-lpa-XS110-2 (homozygous non-lethal) Os-lpa-XS110-3 (homozygous lethal), contain two mutant alleles of a LPA gene (hereafter XS-lpa2-1 and XS-lpa2-2, respectively). In this study, we mapped the XS-lpa2-1 gene to a region on chromosome 3 between microsatellite markers RM14360 and RM1332, where the rice orthologue (OsMRP5) of the maize lpa1 gene is located. Sequence analysis of the OsMRP5 gene revealed a single base pair change (C/G-T/A transition) in the sixth exon of XS-lpa2-1 and a 5-bp deletion in the first exon of XS-lpa2-2. OsMRP5 is expressed in both vegetative tissues and developing seeds, and the two mutations do not change the level of RNA transcription. A T-DNA insertion line, 4A-02500, in which OsMRP5 was disrupted, also showed the same high inorganic phosphorus phenotype as Os-lpa-XS110-3 and appeared to be homozygous lethal. PA is significantly reduced in Os-lpa-XS110-2 (20%) and in 4A-02500 (90%) seeds compared with their wild type lines, and no PA was detected in Os-lpa-XS110-3 using HPLC analysis. This evidence indicates that the OsMRP5 gene plays an important role in PA metabolism in rice seeds.

摘要

植酸(PA,肌醇六磷酸)对谷物和豆类种子的营养品质至关重要。PA及其与微量营养阳离子(如铁和锌)形成的盐类不能被人类和非反刍动物消化,因此可能会影响食物/饲料的营养价值,并导致动物粪便对地下水造成磷污染。我们之前开发了一系列低植酸(LPA)水稻突变系,旨在提高水稻的营养品质。其中两个品系,Os-lpa-XS110-2(纯合非致死)和Os-lpa-XS110-3(纯合致死),分别含有一个LPA基因的两个突变等位基因(以下分别称为XS-lpa2-1和XS-lpa2-2)。在本研究中,我们将XS-lpa2-1基因定位到第3号染色体上微卫星标记RM14360和RM1332之间的区域,玉米lpa1基因的水稻同源基因(OsMRP5)也位于该区域。对OsMRP5基因的序列分析显示,XS-lpa2-1的第六外显子有一个单碱基对变化(C/G-T/A转换),XS-lpa2-2的第一外显子有一个5碱基缺失。OsMRP5在营养组织和发育中的种子中均有表达,这两个突变并未改变RNA转录水平。一个T-DNA插入系4A-02500,其中OsMRP5被破坏,也表现出与Os-lpa-XS110-3相同的高无机磷表型,并且似乎是纯合致死的。与野生型品系相比,Os-lpa-XS110-2种子中的PA显著降低(约20%),4A-02500种子中的PA显著降低(约90%),使用HPLC分析在Os-lpa-XS110-3中未检测到PA。这些证据表明,OsMRP5基因在水稻种子的PA代谢中起重要作用。

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