Evaluation of expression changes, proteins interaction network, and microRNAs targeting catalase and superoxide dismutase genes under cold stress in rapeseed (Brassica napus L.)

OCL Pub Date : 2022-01-01 DOI:10.1051/ocl/2021051
Mohammad.M Taghvaei, H. Lahiji, M. M. Golfazani
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引用次数: 3

Abstract

Rapeseed is the third-largest source of plant oil and one of the essential oil plants worldwide. Cold stress is one of the critical factors that affect plant yield. Therefore, improving cold stress tolerance is necessary for yield increase. The present study investigated BnCAT1 and BnCSD1 genes’ expression behavior in a tolerant and sensitive cultivar under cold stress (4 °C). Besides, protein-protein interaction networks of CATs and CSDs enzymes, and their association with other antioxidant enzymes were analyzed. Moreover, the microRNAs targeting BnCAT1 and BnCSD1 genes were predicted. This study indicated many direct and indirect interactions and the association between the components of the plant antioxidant system. However, not only did the CATs and CSDs enzymes have a relationship with each other, but they also interacted directly with ascorbate peroxidase and glutathione reductase enzymes. Also, 23 and 35 effective microRNAs were predicted for BnCAT1 and BnCSD1 genes, respectively. The gene expression results indicated an elevated expression of BnCAT1 and BnCSD1 in both tolerant and sensitive cultivars. However, this increase was more noticeable in the tolerant cultivar. Thus, the BnCSD1 gene had the highest expression in the early hour of cold stress, especially in the 12th h, and the BnCAT1 gene showed the highest expression in the 48th h. This result may indicate a functional relationship between these enzymes.
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冷胁迫下甘蓝型油菜过氧化氢酶和超氧化物歧化酶基因表达变化、蛋白相互作用网络及靶向microrna的研究
菜籽是世界上第三大植物油来源,也是世界上最重要的油料植物之一。冷胁迫是影响植物产量的重要因素之一。因此,提高耐寒性是提高产量的必要条件。本研究研究了BnCAT1和BnCSD1基因在低温胁迫(4℃)下耐敏感品种的表达行为。此外,还分析了cat和CSDs酶的蛋白-蛋白相互作用网络,以及它们与其他抗氧化酶的关联。此外,还预测了靶向BnCAT1和BnCSD1基因的microrna。本研究表明,植物抗氧化系统各组分之间存在许多直接和间接的相互作用和关联。然而,CATs和CSDs酶之间不仅存在相互关系,而且还与抗坏血酸过氧化物酶和谷胱甘肽还原酶直接相互作用。此外,BnCAT1和BnCSD1基因分别预测到23和35个有效microrna。基因表达结果表明,BnCAT1和BnCSD1在耐受性和敏感性品种中均表达升高。然而,这种增加在耐受性品种中更为明显。由此可见,BnCSD1基因在冷胁迫早期表达量最高,尤其是在第12 h, BnCAT1基因在第48 h表达量最高。这一结果可能表明这些酶之间的功能关系。
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