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拟南芥基因家族两个成员Atβfruct3和Atβfruct4的特性分析,这两个基因编码液泡转化酶。

Characterization of two members of the Arabidopsis thaliana gene family, At beta fruct3 and At beta fruct4, coding for vacuolar invertases.

作者信息

Haouazine-Takvorian N, Tymowska-Lalanne Z, Takvorian A, Tregear J, Lejeune B, Lecharny A, Kreis M

机构信息

Université de Paris-Sud, IBP, URA/CNRS 1128, Orsay, France.

出版信息

Gene. 1997 Sep 15;197(1-2):239-51. doi: 10.1016/s0378-1119(97)00268-0.

Abstract

We have isolated and characterized two Arabidopsis thaliana cDNAs and their cognate genes, At beta fruct3 and At beta fruct4, encoding vacuolar forms of invertase. Our sequencing results showed that the gene At beta fruct3 is located downstream of the 3-ketoacyl-acyl carrier protein synthase III gene (AtKasIII). At beta fruct3 and 4 are functional and organized into seven exons and six introns with an identical organization. The At beta fruct3 and At beta fruct4 genes encode, respectively, polypeptides of 648 and 664 residues that contain all the characteristic hallmarks of vacuolar invertases. A. thaliana is the first plant of which both cell-wall (At beta fruct1 and At beta fruct2) and vacuolar (At beta fruct3 and At beta fruct4) genes are characterized. The same number of exons and introns is seen in the genes At beta fruct1, At beta fruct3 and At beta fruct4 as well as in all other invertase genes described to date. However, the position of the third intron is different in At beta fruct3 and At beta fruct4. At beta fruct2 shows a different organization. A neighbour-joining distance tree shows that the A. thaliana vacuolar invertases described here are, as expected, more closely related to vacuolar invertases from other plant species (e.g., carrot) than to the A. thaliana cell-wall invertases. The evolution of plant invertase genes from a common ancestral gene is discussed. Our results demonstrate that in A. thaliana, at least two genes encoding vacuolar invertases are expressed during the development of the plant. Southern blot hybridization experiments suggest the presence of one copy of, respectively, At beta fruct3 and At beta fruct4 per haploid genome, and Northern blot analysis demonstrates that vacuolar invertase genes are highly expressed in stems, roots, flowers and at very low levels in mature leaves.

摘要

我们已经分离并鉴定了两个拟南芥cDNA及其同源基因Atβfruct3和Atβfruct4,它们编码液泡形式的转化酶。我们的测序结果表明,基因Atβfruct3位于3-酮酰基-酰基载体蛋白合酶III基因(AtKasIII)的下游。Atβfruct3和4具有功能,由七个外显子和六个内含子组成,结构相同。Atβfruct3和Atβfruct4基因分别编码648和664个氨基酸残基的多肽,这些多肽包含液泡转化酶的所有特征性标志。拟南芥是第一个细胞壁(Atβfruct1和Atβfruct2)和液泡(Atβfruct3和Atβfruct4)基因都得到鉴定的植物。在Atβfruct1、Atβfruct3和Atβfruct4基因以及迄今为止描述的所有其他转化酶基因中,外显子和内含子的数量相同。然而,Atβfruct3和Atβfruct4中第三个内含子的位置不同。Atβfruct2表现出不同的结构。邻接法距离树显示,这里描述的拟南芥液泡转化酶与其他植物物种(如胡萝卜)的液泡转化酶的关系,正如预期的那样,比与拟南芥细胞壁转化酶的关系更密切。本文讨论了植物转化酶基因从共同祖先基因的进化。我们的结果表明,在拟南芥中,至少有两个编码液泡转化酶的基因在植物发育过程中表达。Southern杂交实验表明,每个单倍体基因组中分别存在一个Atβfruct3和Atβfruct4拷贝,Northern印迹分析表明,液泡转化酶基因在茎、根、花中高度表达,在成熟叶中表达水平很低。

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