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首页> 外文期刊>Frontiers in Plant Science >Early Cold-Induced Peroxidases and Aquaporins Are Associated With High Cold Tolerance in Dajiao ( Musa spp. ‘Dajiao’)
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Early Cold-Induced Peroxidases and Aquaporins Are Associated With High Cold Tolerance in Dajiao ( Musa spp. ‘Dajiao’)

机译:早期冻害的过氧化物酶和水通道蛋白与大郊地区的高耐寒性有关( Musa spp。“ Dajiao”)

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Banana is an important tropical fruit with high economic value. One of the main cultivars (‘Cavendish’) is susceptible to low temperatures, while another closely related specie (‘Dajiao’) has considerably higher cold tolerance. We previously reported that some membrane proteins appear to be involved in the cold tolerance of Dajiao bananas via an antioxidation mechanism. To investigate the early cold stress response of Dajiao, here we applied comparative membrane proteomics analysis for both cold-sensitive Cavendish and cold-tolerant Dajiao bananas subjected to cold stress at 10°C for 0, 3, and 6 h. A total of 2,333 and 1,834 proteins were identified in Cavendish and Dajiao, respectively. Subsequent bioinformatics analyses showed that 692 Cavendish proteins and 524 Dajiao proteins were predicted to be membrane proteins, of which 82 and 137 differentially abundant membrane proteins (DAMPs) were found in Cavendish and Dajiao, respectively. Interestingly, the number of DAMPs with increased abundance following 3 h of cold treatment in Dajiao (80) was seven times more than that in Cavendish (11). Gene ontology molecular function analysis of DAMPs for Cavendish and Dajiao indicated that they belong to eight categories including hydrolase activity, binding, transporter activity, antioxidant activity, etc., but the number in Dajiao is twice that in Cavendish. Strikingly, we found peroxidases (PODs) and aquaporins among the protein groups whose abundance was significantly increased after 3 h of cold treatment in Dajiao. Some of the PODs and aquaporins were verified by reverse-transcription PCR, multiple reaction monitoring, and green fluorescent protein-based subcellular localization analysis, demonstrating that the global membrane proteomics data are reliable. By combining the physiological and biochemical data, we found that membrane-bound Peroxidase 52 and Peroxidase P7, and aquaporins (MaPIP1;1, MaPIP1;2, MaPIP2;4, MaPIP2;6, MaTIP1;3) are mainly involved in decreased lipid peroxidation and maintaining leaf cell water potential, which appear to be the key cellular adaptations contributing to the cold tolerance of Dajiao. This membrane proteomics study provides new insights into cold stress tolerance mechanisms of banana, toward potential applications for ultimate genetic improvement of cold tolerance in banana.
机译:香蕉是一种重要的热带水果,具有很高的经济价值。其中一个主要品种('Cavendish')易受低温影响,而另一个密切相关的品种('Dajiao')具有更高的耐寒性。我们以前曾报道过一些膜蛋白似乎通过抗氧化机制参与了大角蕉的耐寒性。为了研究大角的早期冷胁迫响应,在这里我们将比较的膜蛋白质组学分析应用于冷敏感的卡文迪许和耐寒的大角香蕉,在10°C,0、3和6 h受到冷胁迫。卡文迪许和大角分别鉴定出2,333和1,834个蛋白。随后的生物信息学分析表明,预测692个Cavendish蛋白和524个Dajiao蛋白是膜蛋白,其中在Cavendish和Dajiao中分别发现82个和137个差异丰富的膜蛋白(DAMPs)。有趣的是,在大郊(80)进行冷水处理3小时后,DAMPs的数量增加了,是Cavendish(11)的7倍。卡文迪许和大角DAMPs的基因本体分子功能分析表明,它们属于水解酶活性,结合,转运蛋白活性,抗氧化活性等八类,但大角的数量是卡文迪什的两倍。令人惊讶的是,我们在大郊冷处理3小时后发现蛋白质组中过氧化物酶(PODs)和水通道蛋白的丰度显着增加。通过逆转录PCR,多反应监测和基于绿色荧光蛋白的亚细胞定位分析,对一些POD和水通道蛋白进行了验证,证明了全球膜蛋白质组学数据是可靠的。通过结合生理和生化数据,我们发现膜结合的过氧化物酶52和过氧化物酶P7,以及水通道蛋白(MaPIP1; 1,MaPIP1; 2,MaPIP2; 4,MaPIP2; 6,MaTIP1; 3)主要与脂质过氧化作用降低有关并维持叶细胞的水势,这似乎是导致大角抗寒的关键细胞适应方法。这项膜蛋白质组学研究为香蕉的耐寒性机理提供了新的见识,为香蕉耐寒性的最终遗传改良提供了潜在的应用。

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