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从拟南芥中分离出的一个磷饥饿诱导型β-葡萄糖苷酶基因(psr3.2)是BGA家族一个独特亚家族的成员。

A phosphate-starvation inducible beta-glucosidase gene (psr3.2) isolated from Arabidopsis thaliana is a member of a distinct subfamily of the BGA family.

作者信息

Malboobi M A, Lefebvre D D

机构信息

Department of Biology, Queen's University, Kingston, Ontario, Canada.

出版信息

Plant Mol Biol. 1997 May;34(1):57-68. doi: 10.1023/a:1005865406382.

Abstract

We have previously isolated a phosphate starvation-response (psr) cDNA clone, psr3.1, from Brassica nigra which encodes a beta-glucosidase. Southern blots of Arabidopsis thaliana genomic DNA probed with the psr3.1 cDNA indicated that this gene exists as a single locus. A genomic library of A. thaliana was screened at high stringency to isolate the corresponding genomic clone. The resultant clone was coined psr3.2 because of its sequence divergence from isolated psr3.1 cDNA clones. Northern blotting with probes derived from the coding region of the genomic clone showed that this gene is expressed at high levels in P(i)-starved roots and the enhancement occurred within two days of growth in medium lacking P(i). The expression of this gene is repressed by heat shock and anaerobic conditions, and it is not significantly induced by high salinity, or by nitrogen or sulfur deprivation. Sequence analysis of the genomic clone revealed the existence of 13 exons interrupted by 12 AT-rich introns and it possessed a high homology with the B. nigra psr3.1 as well as various other beta-glucosidase genes from other species. Sequence similarity and divergence percentages between the deduced amino acid sequences of the psr3 clones and other beta-glycosidases suggests that they should be included along with two other Brassicaceae genes in a distinct subfamily of the BGA glycosidase gene family. The presence of an endoplasmic reticulum retention signal at the carboxy terminus indicates the likely cellular location of PSR3.2. The possible metabolic and regulatory roles of this enzyme during the P(i)-starvation response are discussed.

摘要

我们之前从黑芥中分离出了一个磷饥饿响应(psr)cDNA克隆psr3.1,它编码一种β-葡萄糖苷酶。用psr3.1 cDNA探测拟南芥基因组DNA的Southern杂交结果表明,该基因以单一位点存在。以高严谨度筛选拟南芥基因组文库以分离相应的基因组克隆。由于所得克隆与分离出的psr3.1 cDNA克隆存在序列差异,故将其命名为psr3.2。用源自基因组克隆编码区的探针进行Northern杂交表明,该基因在缺磷的根中高水平表达,且在缺磷培养基中生长两天内表达增强。该基因的表达受热激和厌氧条件抑制,高盐、缺氮或缺硫处理未显著诱导其表达。基因组克隆的序列分析显示存在13个外显子,被12个富含AT的内含子打断,它与黑芥psr3.1以及其他物种的各种其他β-葡萄糖苷酶基因具有高度同源性。psr3克隆推导的氨基酸序列与其他β-糖苷酶之间的序列相似性和差异百分比表明,它们应与另外两个十字花科基因一起归入BGA糖苷酶基因家族的一个独特亚家族。羧基末端存在内质网滞留信号表明了PSR3.2可能的细胞定位。本文讨论了该酶在磷饥饿响应过程中可能的代谢和调节作用。

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