Megumi Matsuzawa, Takumi Nakayama, Masa H Sato, Tomoko Hirano
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引用次数: 0
Abstract
The Cysteine-rich secretory proteins (CRISPS), Antigen 5 (Ag5), and Pathogenesis-related 1 (PR-1) protein (CAP) superfamily members are found in multiple eukaryotic organisms, including yeasts, animals, and plants. Although one of the plant CAP family genes, PR-1 is known to respond to pathogen infection in plants, the functions of other CAP family genes in Arabidopsis remain largely unknown. In this study, we conducted a comprehensive analysis of the similarities, loci, and expression patterns of 22 Arabidopsis CAP genes/proteins, providing a clue to elucidate their molecular functions. According to the promoter-β-glucuronidase (GUS) analysis, members of the Arabidopsis CAP family were expressed in various young tissues or organs, such as root and shoot meristems, reproductive tissues, and particularly at the lateral root initiation site before the formation of the lateral root primordium, with distinct expression specificity. In particular, CAP51, CAP52, and CAP53 were specifically expressed in the cortical cells at the lateral root developing regions, suggesting that these genes may function in lateral root development. Thus, the expression patterns of Arabidopsis CAP family genes suggest that CAP family proteins may have certain function in the expressed organs or tissues in Arabidopsis plant.
富半胱氨酸分泌蛋白(CRISPS)、抗原 5(Ag5)和致病相关 1(PR-1)蛋白(CAP)超家族成员存在于多种真核生物中,包括酵母、动物和植物。虽然已知植物 CAP 家族基因之一的 PR-1 能对植物中的病原体感染做出反应,但拟南芥中其他 CAP 家族基因的功能在很大程度上仍然未知。本研究对拟南芥 22 个 CAP 基因/蛋白的相似性、位点和表达模式进行了全面分析,为阐明其分子功能提供了线索。根据启动子-β-葡糖醛酸酶(GUS)分析,拟南芥CAP家族成员在不同的幼嫩组织或器官中均有表达,如根和芽的分生组织、生殖组织,特别是在侧根原基形成前的侧根萌发部位,具有明显的表达特异性。其中,CAP51、CAP52 和 CAP53 在侧根发育区域的皮层细胞中特异表达,表明这些基因可能在侧根发育过程中发挥作用。因此,拟南芥 CAP 家族基因的表达模式表明,CAP 家族蛋白可能在拟南芥植物的表达器官或组织中具有一定的功能。
期刊介绍:
Plant Direct is a monthly, sound science journal for the plant sciences that gives prompt and equal consideration to papers reporting work dealing with a variety of subjects. Topics include but are not limited to genetics, biochemistry, development, cell biology, biotic stress, abiotic stress, genomics, phenomics, bioinformatics, physiology, molecular biology, and evolution. A collaborative journal launched by the American Society of Plant Biologists, the Society for Experimental Biology and Wiley, Plant Direct publishes papers submitted directly to the journal as well as those referred from a select group of the societies’ journals.