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首页> 外文期刊>Journal of the Science of Food and Agriculture >Calcium chloride treatment modifies cell wall metabolism and activates defense responses in strawberry fruit (Fragaria x ananassa, Duch)
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Calcium chloride treatment modifies cell wall metabolism and activates defense responses in strawberry fruit (Fragaria x ananassa, Duch)

机译:氯化钙处理改变细胞壁代谢并激活草莓果实中的防御反应(Fragaria x ananassa,duch)

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BACKGROUND Fruit dips in calcium ions solutions have been shown as an effective treatment to extend strawberries (Fragaria x ananassa, Duch) quality during storage. In the present work, strawberry fruit were treated with 10 g L-1 calcium chloride solution and treatment effects on cell wall enzymes activities and the expression of encoding genes, as well as enzymes involved in fruit defense responses were investigated. RESULTS Calcium treatment enhanced pectin methylesterase activity while inhibited those corresponding to pectin hydrolases as polygalacturonase and beta-galactosidase. The expression of key genes for strawberry pectin metabolism was up-regulated (for FaPME1) and down-regulated (for FaPG1, FaPLB, FaPLC, Fa beta Gal1 and FaAra1) by calcium dips. In agreement, a higher firmness level and ionically-bound pectins (IBPs) amount were detected in calcium-treated fruit compared with controls. The in vitro and in vivo growth rate of fungal pathogen Botrytis cinerea was limited by calcium treatment. Moreover, the activities of polyphenol oxidases, chitinases, peroxidases and beta-1,3-glucanases were enhanced by calcium ion dips. CONCLUSION News insights concerning the biochemical and molecular basis of cell wall preservation and resistance to fungal pathogens on calcium-treated strawberries are provided. (c) 2019 Society of Chemical Industry
机译:背景技术钙离子溶液中的果实浸渍已显示为储存期间延长草莓(Fragaria X Ananassa,Duch)质量的有效处理。在本作本作中,用10g L-1氯化钙溶液和对细胞壁酶活性的治疗效果治疗草莓果实,并研究了编码基因的表达,以及参与水果防御反应的酶。结果钙处理增强果胶甲基酯酶活性,同时抑制与果胶水解酶相对应的果胶酶和β-半乳糖苷酶。草莓果胶代谢的关键基因的表达上调(FAPME1)和下调(对于FAPG1,FAPLB,FAPLC,FAβ1AL1和FAARA1)通过钙浸泡。在一致性的情况下,与对照相比,在钙处理的果实中检测到更高的坚固水平和离子结合的果胶(IBPS)量。真菌病原体Botrytis Cinerea的体外和体内生长速率受钙处理的限制。此外,通过钙离子浸渍增强了多酚氧化酶,几丁蛋白酶,过氧化物酶和β-1,3-葡聚糖酶的活性。结论提供了关于细胞壁保存和抗真菌病原体对钙处理草莓的生化和分子基础的新闻洞察。 (c)2019年化学工业协会

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