Islam Nazrul, Upadhyaya Narayana M, Campbell Peter M, Akhurst Ray, Hagan Nick, Higgins Thomas J V
CSIRO Entomology, Clunies Ross Street, GPO Box 1700, Canberra, ACT 2601, Australia.
Phytochemistry. 2005 Nov;66(21):2534-9. doi: 10.1016/j.phytochem.2005.09.002. Epub 2005 Oct 19.
Previous studies have shown differential accumulation of sulfur rich glutelins and sulfur poor prolamins in transgenic rice seeds expressing a sunflower seed albumin gene [Hagan, N.D., Upadhyaya, N., Tabe, L.M., Higgins, T.J., 2003. The redistribution of protein sulfur in transgenic rice expressing a gene for a foreign, sulfur-rich protein. Plant J 34, 1-11]. Here, we show, by two-dimensional electrophoresis, differential accumulation of three classes of glutelin proteins - type I, II and III - and a globulin, not previously resolved, in transgenic seeds grown under low and high sulfur nutrition. Several glutelin polypeptides were resolved and four identified as a type I glutelin, two type II glutelins and a type III glutelin. Although sulfur nutrition did not affect the accumulation of sunflower seed albumin, the levels of all four identified glutelins and the globulin were lower in mature seeds derived from transgenic plants grown under sulfur-optimum or sulfur limited conditions compared to non-transgenic rice seeds. The reduction of all four glutelin polypeptides and the globulin varied from 21% to 68%. The re-allocation of sulfur reserves from endogenous proteins to the sulfur sink in transgenic grain is suggestive of a transcriptional control of sulfur mobilization in plants.
先前的研究表明,在表达向日葵种子清蛋白基因的转基因水稻种子中,富含硫的谷蛋白和低硫醇溶蛋白存在差异积累[哈根,N.D.,乌帕迪亚亚,N.,塔贝,L.M.,希金斯,T.J.,2003年。在表达外源富含硫蛋白基因的转基因水稻中蛋白质硫的重新分布。植物杂志34,1 - 11]。在此,我们通过二维电泳显示,在低硫和高硫营养条件下生长的转基因种子中,三类谷蛋白——I型、II型和III型——以及一种先前未解析的球蛋白存在差异积累。解析出了几种谷蛋白多肽,其中四种被鉴定为I型谷蛋白、两种II型谷蛋白和一种III型谷蛋白。尽管硫营养不影响向日葵种子清蛋白的积累,但与非转基因水稻种子相比,在硫适宜或硫限制条件下生长的转基因植物成熟种子中,所有四种已鉴定的谷蛋白和球蛋白的水平都较低。所有四种谷蛋白多肽和球蛋白的减少幅度在21%至68%之间。硫储备从内源蛋白重新分配到转基因谷物中的硫库,这表明植物中硫动员存在转录调控。