Gao Jun-jie, Qin Ai-guo, Yu Xian-chang
State Key Laboratory of Crop Biology, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai' an 271018, Shandong, China.
Ying Yong Sheng Tai Xue Bao. 2009 Jan;20(1):213-7.
This paper studied the relative expression of Mn-SOD, Cu/Zn-SOD and CAT mRNAs and the changes of SOD, Mn-SOD, Cu/Zn-SOD and CAT activities in grafted and own-rooted cucumber leaves under low temperature stress, and their relations with the cold resistance of cucumber. For both grafted and own-rooted cucumber leaves, the relative expression of Mn-SOD and Cu/Zn-SOD mRNAs under low temperature stress was respectively accordance with the changes of Mn-SOD and Cu/Zn-SOD activities, while the expression of CAT mRNA was not accordance with the change of CAT activity. The relative expression of Mn-SOD and Cu/Zn-SOD mRNAs and the activities of SOD, Mn-SOD and Cu/Zn-SOD in grafted cucumber leaves were higher than those in own-rooted cucumber leaves, while the MDA content and electrolytic leakage were in adverse. The higher SOD activity regulated by the higher SOD mRNAs expression in grafted cucumber leaves might be the key factor of grafted cucumber having a higher cold resistance to low temperature stress than own-rooted cucumber. The relative expression of CAT mRNA was slightly higher in functional leaves but lower in young leaves of grafted cucumber, while less difference was observed in CAT activity, comparing with own-rooted cucumber, which illustrated that low temperature stress had lesser effects on the relative expression of CAT mRNA and the activity of CAT in grafted cucumber leaves.
本文研究了低温胁迫下嫁接黄瓜和自根黄瓜叶片中Mn-SOD、Cu/Zn-SOD和CAT mRNA的相对表达以及SOD、Mn-SOD、Cu/Zn-SOD和CAT活性的变化,及其与黄瓜抗冷性的关系。对于嫁接黄瓜和自根黄瓜叶片,低温胁迫下Mn-SOD和Cu/Zn-SOD mRNA的相对表达分别与Mn-SOD和Cu/Zn-SOD活性的变化一致,而CAT mRNA的表达与CAT活性的变化不一致。嫁接黄瓜叶片中Mn-SOD和Cu/Zn-SOD mRNA的相对表达以及SOD、Mn-SOD和Cu/Zn-SOD的活性均高于自根黄瓜叶片,而丙二醛含量和电解质渗漏则相反。嫁接黄瓜叶片中较高的SOD mRNA表达所调控的较高SOD活性可能是嫁接黄瓜比自根黄瓜对低温胁迫具有更高抗冷性的关键因素。嫁接黄瓜功能叶中CAT mRNA的相对表达略高于幼叶,但与自根黄瓜相比,CAT活性差异较小,这表明低温胁迫对嫁接黄瓜叶片中CAT mRNA的相对表达和CAT活性的影响较小。