Ai Penghui, Sun Shubin, Zhao Jianning, Fan Xiaorong, Xin Weijie, Guo Qiang, Yu Ling, Shen Qirong, Wu Ping, Miller Anthony J, Xu Guohua
State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, China.
Plant J. 2009 Mar;57(5):798-809. doi: 10.1111/j.1365-313X.2008.03726.x. Epub 2008 Nov 22.
Plant phosphate (Pi) transporters mediate the uptake and translocation of this nutrient within plants. A total of 13 sequences in the rice (Oryza sativa) genome can be identified as belonging to the Pi transporter (Pht1) family. Here, we report on the expression patterns, biological properties and the physiological roles of two members of the family: OsPht1;2 (OsPT2) and OsPht1;6 (OsPT6). Expression of both genes increased significantly under Pi deprivation in roots and shoots. By using transgenic rice plants expressing the GUS reporter gene, driven by their promoters, we detected that OsPT2 was localized exclusively in the stele of primary and lateral roots, whereas OsPT6 was expressed in both epidermal and cortical cells of the younger primary and lateral roots. OsPT6, but not OsPT2, was able to complement a yeast Pi uptake mutant in the high-affinity concentration range. Xenopus oocytes injected with OsPT2 mRNA showed increased Pi accumulation and a Pi-elicited depolarization of the cell membrane electrical potential, when supplied with mM external concentrations. Both results show that OsPT2 mediated the uptake of Pi in oocytes. In transgenic rice, the knock-down of either OsPT2 or OsPT6 expression by RNA interference significantly decreased both the uptake and the long-distance transport of Pi from roots to shoots. Taken together, these data suggest OsPT6 plays a broad role in Pi uptake and translocation throughout the plant, whereas OsPT2 is a low-affinity Pi transporter, and functions in translocation of the stored Pi in the plant.
植物磷酸盐(Pi)转运蛋白介导了这种养分在植物体内的吸收和转运。水稻(Oryza sativa)基因组中共有13个序列可被鉴定为属于Pi转运蛋白(Pht1)家族。在此,我们报道了该家族两个成员:OsPht1;2(OsPT2)和OsPht1;6(OsPT6)的表达模式、生物学特性及生理作用。在Pi缺乏条件下,这两个基因在根和地上部的表达均显著增加。通过使用由其启动子驱动的表达GUS报告基因的转基因水稻植株,我们检测到OsPT2仅定位在初生根和侧根的中柱,而OsPT6在较幼嫩的初生根和侧根的表皮和皮层细胞中均有表达。在高亲和力浓度范围内,OsPT6能够互补酵母Pi吸收突变体,但OsPT2不能。当提供毫摩尔级外部浓度时,注射OsPT2 mRNA的非洲爪蟾卵母细胞显示Pi积累增加以及细胞膜电位的Pi诱导去极化。这两个结果均表明OsPT2介导了卵母细胞中Pi的吸收。在转基因水稻中,通过RNA干扰敲低OsPT2或OsPT6的表达均显著降低了Pi从根到地上部的吸收和长距离运输。综上所述,这些数据表明OsPT6在整个植物的Pi吸收和转运中发挥广泛作用,而OsPT2是一种低亲和力Pi转运蛋白,在植物中储存Pi的转运中起作用。