Li Guilan, Yang Shaohui, Li Minggang, Qiao Yake, Wang Jiehua
Hebei Normal University of Science & Technology, Changli, 066600, People's Republic of China.
Biotechnol Lett. 2009 Aug;31(8):1297-303. doi: 10.1007/s10529-009-9992-6. Epub 2009 Apr 9.
Phytases release inorganic phosphates from phytate in soil. A gene encoding phytase (AfPhyA) was isolated from Aspergillus ficuum and its ability to degrade phytase and release phosphate was demonstrated in Saccharomyces cerevisiae. A promoter from the Arabidopsis Pky10 gene and the carrot extensin signal peptide were used to drive the root-specific and secretory expression of the AfPhyA gene in soybean plants. The phytase activity and inorganic phosphate levels in transgenic soybean root secretions were 4.7 U/mg protein and 439 microM, respectively, compared to 0.8 U/mg protein and 120 microM, respectively, in control soybeans. Our results demonstrated the potential usefulness of the root-specific promoter for the exudation of recombinant phytases and offered a new perspective on the mobilization of phytate in soil to inorganic phosphates for plant uptake.
植酸酶可从土壤中的植酸盐释放无机磷酸盐。从泡盛曲霉中分离出一个编码植酸酶的基因(AfPhyA),并在酿酒酵母中证明了其降解植酸酶和释放磷酸盐的能力。使用来自拟南芥Pky10基因的启动子和胡萝卜伸展蛋白信号肽来驱动AfPhyA基因在大豆植株中的根特异性和分泌性表达。转基因大豆根分泌物中的植酸酶活性和无机磷酸盐水平分别为4.7 U/mg蛋白质和439 microM,相比之下,对照大豆中分别为0.8 U/mg蛋白质和120 microM。我们的结果证明了根特异性启动子在重组植酸酶渗出方面的潜在用途,并为土壤中植酸盐向无机磷酸盐的转化以供植物吸收提供了新的视角。