College of the Department of Horticulture and Forestry of Huazhong Agricultural University, Key Laboratory of Horticultural Plant Biology of Ministry of Education, Wuhan, Hubei, China.
Mol Biol Rep. 2012 Jun;39(6):7105-15. doi: 10.1007/s11033-012-1542-y. Epub 2012 Apr 8.
C2H2 proteins belong to a group of transcription factors (TFs) existing as a superfamily that plays important roles in defense responses and various other physiological processes in plants. The present study aimed to screen for and identify C2H2 proteins associated with defense responses to abiotic and biotic stresses in Carica papaya L. Data were collected for 47,483 papaya-expressed sequence tags (ESTs). The full-length cDNA nucleotide sequences of 87 C2H2 proteins were predicated by BioEdit. All 91 C2H2 proteins were aligned, and a phylogenetic tree was constructed using DNAman. The expression levels of 42 C2H2 were analyzed under conditions of salt stress by quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR). Methyl jasmonate treatment rapidly upregulated ZF(23.4) and ZF(30,912.1) by 18.6- and 21.7-fold, respectively. ZF(1.3), ZF(138.44), ZF(94.49), ZF(29.160), and ZF(20.206) were found to be downregulated after low temperature treatment at very significant levels (p < 0.01). ZF(23.4), ZF(161.1), and ZF(30,912.1) were upregulated while ZF1.3, ZF(158.1), ZF(249.5), ZF(138.44), ZF(94.49), ZF(29.160), and ZF(20.206) were significantly downregulated by Spermine treatment. ZF(23.4) was upregulated while ZF(1.3), ZF(249.5), ZF(94.94), ZF(29.160), ZF(138.44), and ZF(20.206) were significantly repressed after SA treatment. ZF(23.4) and ZF(30,912.1) were significantly upregulated after sap inoculation with papaya ringspot virus pathogen. ZF(30,912.1) was subcellularly localized in the nucleus by a transgenic fusion of pBS-ZF(30,912.1)-GFP into the protoplast of papaya. The results of the present study showed that ZF(30,912.1) could be an important TF that mediates responses to abiotic and biotic stresses in papaya.
C2H2 蛋白属于转录因子(TFs)超家族的一组,在植物的防御反应和各种生理过程中发挥重要作用。本研究旨在筛选与番木瓜对非生物和生物胁迫的防御反应相关的 C2H2 蛋白。收集了 47483 个番木瓜表达序列标签(EST)的数据。通过 BioEdit 预测了 87 个 C2H2 蛋白的全长 cDNA 核苷酸序列。使用 DNAman 对所有 91 个 C2H2 蛋白进行比对,并构建了系统发育树。通过定量逆转录聚合酶链反应(qRT-PCR)分析了 42 个 C2H2 在盐胁迫下的表达水平。茉莉酸甲酯处理可分别将 ZF(23.4)和 ZF(30,912.1)快速上调 18.6 倍和 21.7 倍。低温处理可极显著地下调 ZF(1.3)、ZF(138.44)、ZF(94.49)、ZF(29.160)和 ZF(20.206)(p<0.01)。ZF(23.4)、ZF(161.1)和 ZF(30,912.1)上调,而 ZF1.3、ZF(158.1)、ZF(249.5)、ZF(138.44)、ZF(94.49)、ZF(29.160)和 ZF(20.206)下调。亚精胺处理可上调 ZF(23.4),而下调 ZF(1.3)、ZF(249.5)、ZF(94.94)、ZF(29.160)、ZF(138.44)和 ZF(20.206)。SA 处理后,ZF(23.4)上调,而 ZF(1.3)、ZF(249.5)、ZF(94.94)、ZF(29.160)、ZF(138.44)和 ZF(20.206)显著下调。番木瓜环斑病毒病原体接种后,ZF(23.4)和 ZF(30,912.1)显著上调。通过将 pBS-ZF(30,912.1)-GFP 转染入番木瓜原生质体,ZF(30,912.1)亚细胞定位于细胞核。本研究结果表明,ZF(30,912.1)可能是一种重要的 TF,介导番木瓜对非生物和生物胁迫的反应。