Madamanchi N R, Donahue J L, Cramer C L, Alscher R G, Pedersen K
Department of Plant Pathology, Physiology and Weed Science, Virginia Polytechnic Institute and State University, Blacksburg 24061.
Plant Mol Biol. 1994 Oct;26(1):95-103. doi: 10.1007/BF00039523.
Pea cultivars Progress and Nugget have been shown previously to be differentially sensitive with respect to apparent photosynthesis in a short-term exposure to 0.8 microliters/l SO2. One possible contributing factor to the relative insensitivity of apparent photosynthesis of Progress to SO2 is an increase in superoxide dismutase (SOD) activities. We show here that both chloroplastic and cytoplastic Cu,Zn-SOD proteins increased in Progress on exposure to sulfur dioxide whereas both proteins decreased in Nugget. The increase in cytosolic Cu,Zn-SOD protein was greater than that of chloroplastic Cu,Zn-SOD protein. Using a gene-specific probe for the plastid SOD, northern blot analysis revealed an initial decrease in transcript abundance of the chloroplastic Cu,Zn-SOD gene in Progress on exposure to SO2 with an eventual recovery to pre-exposure levels. The transcript levels of the chloroplastic Cu,Zn-SOD decreased in Nugget over the time period of the exposure. These results suggest that a combination of translational and post-translational mechanisms may be involved in SO2-induced changes in cytosolic and plastidic Cu,Zn-SODs in pea.
此前已表明,豌豆品种Progress和Nugget在短期暴露于0.8微升/升的二氧化硫中时,其表观光合作用的敏感性存在差异。Progress的表观光合作用对二氧化硫相对不敏感的一个可能因素是超氧化物歧化酶(SOD)活性增加。我们在此表明,暴露于二氧化硫后,Progress中叶绿体和细胞质中的铜锌超氧化物歧化酶(Cu,Zn-SOD)蛋白均增加,而Nugget中的这两种蛋白均减少。细胞质中Cu,Zn-SOD蛋白的增加幅度大于叶绿体中Cu,Zn-SOD蛋白的增加幅度。使用针对质体SOD的基因特异性探针,Northern印迹分析显示,暴露于二氧化硫后,Progress中叶绿体Cu,Zn-SOD基因的转录本丰度最初下降,最终恢复到暴露前水平。在暴露期间,Nugget中叶绿体Cu,Zn-SOD的转录水平下降。这些结果表明,翻译和翻译后机制的组合可能参与了二氧化硫诱导的豌豆细胞质和质体中Cu,Zn-SOD的变化。