Turgut K, Barsby T, Craze M, Freeman J, Hodge R, Paul W, Scott R
Department of Botany, Leicester University, UK.
Plant Mol Biol. 1994 Jan;24(1):97-104. doi: 10.1007/BF00040577.
An antisense approach was used to attempt to determine the function of the highly abundant, tapetum-specific A9 transcript in microsporogenesis. A Brassica napus A9 cDNA clone was linked in sense and antisense orientations to the Arabidopsis thaliana A9 promoter and the resulting chimaeric genes introduced into B. napus. A high proportion of the offspring of B. napus antisense A9 plants had very low or undetectable levels of A9 mRNA. However, these plants set seed and had pollen of normal or near normal viability. Therefore, under the conditions studied, the A9 protein appears not to be essential for male fertility in B. napus.
采用反义技术试图确定在小孢子发生过程中高度丰富的绒毡层特异性A9转录本的功能。将一个甘蓝型油菜A9 cDNA克隆以正义和反义方向与拟南芥A9启动子连接,然后将得到的嵌合基因导入甘蓝型油菜。甘蓝型油菜反义A9植株的大部分后代A9 mRNA水平极低或无法检测到。然而,这些植株能够结籽,并且花粉活力正常或接近正常。因此,在所研究的条件下,A9蛋白对于甘蓝型油菜的雄性育性似乎并非必不可少。