Ramesh Sunita A, Shin Ryoung, Eide David J, Schachtman Daniel P
Commonwealth Scientific and Industrial Research Organization Plant Industry-Horticulture Unit, Glen Osmond, South Australia 5064, Australia.
Plant Physiol. 2003 Sep;133(1):126-34. doi: 10.1104/pp.103.026815.
Zinc is an essential mineral for a wide variety of physiological and biochemical processes. To understand zinc transport in cereals, we identified putative zinc transporters in gene databases. Three full-length cDNAs were identified and characterized from rice (Oryza sativa). Two of the cDNAs partially complemented a yeast (Saccharomyces cerevisiae) mutant deficient in zinc uptake at low concentrations. The two transporters showed many similarities in function but differed in ionic selectivity and pH optimum of activity. Expression patterns also differed between the two genes. One gene was broadly expressed under all conditions, and the other gene was mainly induced by zinc deficiency to higher levels in roots than in leaves. Although the timing of expression differed between the two genes, localization of expression overlapped in roots. Comparisons of the protein sequences, ionic selectivity, and gene expression patterns of the two transporters suggest that they may play different roles in the physiology of the whole plant.
锌是多种生理和生化过程所必需的矿物质。为了解锌在谷物中的转运情况,我们在基因数据库中鉴定了假定的锌转运体。从水稻(Oryza sativa)中鉴定并表征了三个全长cDNA。其中两个cDNA部分互补了在低浓度锌摄取方面存在缺陷的酵母(Saccharomyces cerevisiae)突变体。这两个转运体在功能上表现出许多相似性,但在离子选择性和活性的最适pH值方面存在差异。这两个基因的表达模式也有所不同。一个基因在所有条件下都广泛表达,另一个基因主要在锌缺乏时被诱导,在根中的表达水平高于叶。尽管这两个基因的表达时间不同,但在根中的表达定位重叠。对这两个转运体的蛋白质序列、离子选择性和基因表达模式的比较表明,它们可能在整个植物的生理学中发挥不同的作用。