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两种大豆天冬氨酸蛋白酶基因的特性分析及其不同组织依赖性表达分析。

Characterization of the genes for two soybean aspartic proteinases and analysis of their different tissue-dependent expression.

作者信息

Terauchi Kaede, Asakura Tomiko, Nishizawa Naoko K, Matsumoto Ichiro, Abe Keiko

机构信息

Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, 113-8657 Tokyo, Japan.

出版信息

Planta. 2004 Apr;218(6):947-57. doi: 10.1007/s00425-003-1179-0. Epub 2004 Jan 16.

Abstract

We isolated and characterized two cDNAs for aspartic proteinases (APs; EC 3.4.23) in soybean [Glycine max (L.) Merr.]. The encoded enzymes, soyAP1 and soyAP2, share 55% amino acid sequence identity. Northern analysis demonstrated that soyAP1 is expressed specifically in seeds, especially in dry seeds, while the expression of soyAP2 takes place in various tissues such as roots, stems, leaves and flowers, but not in dry seeds. SoyAP1 is highly expressed even at an early stage of germination, with a subsequent decrease in expression intensity. In contrast, the soyAP2 mRNA level increases 48 h after imbibition. To elucidate the physiological functions of soyAPs, we investigated the localization of soyAP expression in seeds germinating for 48 h at 25 degrees C. SoyAP1 shows cell-type-specific expression in sieve tube cells of the hypocotyl. At the root tip, soyAP1 is expressed in immature tracheary elements and sieve tube cells, and its expression pattern changes with distance from the tip; strong signals observed throughout phloem converge gradually to sieve tube cells, whereas those observed in tracheary elements disappear while the elements are still immature. On the other hand, soyAP2 signals were detected broadly in the boundary region between the cortex and the central cylinder. These results suggest that soyAP1 and soyAP2 are functionally different from each other.

摘要

我们从大豆[Glycine max (L.) Merr.]中分离并鉴定了两个天冬氨酸蛋白酶(APs;EC 3.4.23)的cDNA。所编码的酶soyAP1和soyAP2的氨基酸序列一致性为55%。Northern分析表明,soyAP1在种子中特异性表达,尤其是在干种子中,而soyAP2在根、茎、叶和花等多种组织中表达,但在干种子中不表达。SoyAP1即使在萌发早期也高度表达,随后表达强度下降。相反,soyAP2的mRNA水平在吸胀48小时后升高。为了阐明大豆APs的生理功能,我们研究了在25℃下发芽48小时的种子中大豆APs表达的定位。SoyAP1在下胚轴筛管细胞中表现出细胞类型特异性表达。在根尖,soyAP1在未成熟的管状分子和筛管细胞中表达,其表达模式随距根尖的距离而变化;在整个韧皮部观察到的强信号逐渐汇聚到筛管细胞,而在管状分子中观察到的信号在这些分子仍未成熟时消失。另一方面,soyAP2信号在皮层和中柱之间的边界区域广泛检测到。这些结果表明soyAP1和soyAP2在功能上彼此不同。

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