期刊文献+

热水处理对草莓果实的保鲜效应及其与乙烯相关基因表达的关系 被引量:6

Effect of Hot Water Treatment on Strawberry Fruits Preservation and Its Relationship with Ethylene Gene Expression
原文传递
导出
摘要 以七八成熟‘丰香’草莓果实为试材,研究了45℃热水处理15min对草莓果实的保鲜效应,并采用RT-PCR技术探讨了热水处理对草莓果实贮藏过程中乙烯合成相关基因及乙烯受体基因表达的影响。结果表明,热水处理显著抑制贮藏期间果实花青素积累,减小果实失重率、腐烂指数,缓解可溶性固形物和可滴定酸含量下降,提高可溶性蛋白质含量,促进维生素C含量下降,同时抑制果实呼吸速率和乙烯释放速率,明显延长果实贮藏寿命。RT-PCR分析结果表明,热水处理明显抑制贮藏期间草莓果实ACS、ACO、乙烯受体(ETR1和ERS1)基因的表达,但对EIN1基因表达没有明显影响。以上结果说明,热水处理延缓草莓果实衰老可能与其抑制乙烯合成及作用有关。 In the work, the effects of hot water treatment on the preservation and expression of genes involved in ethylene biosynthesis and ethylene receptors were detected by using strawberry fruits (Fragaria ananassa Duch. 'Toyonoka' ). The results indicated that dipping fruits in 45 ℃ hot water for 15 min significantly inhibited anthocyanin accumulation, weight 10ss, decay index, respiratory rate and ethylene release rate during fruit storage, which led to fruits containing higher levels of the soluble solids, the titrable acids and the soluble proteins, although the vitamin C content was significantly lower than control. Therefore, hot water treatment was in general helpful for strawberry fruits to prolong the storage life at low temperature. Semi-quan- titative RT-PCR analysis showed that hot water treatment significantly inhibited gene expression of ACS, ACO, ERS1 and ETR1 during the storage period, although it had no effect on genes expression of EIN1, which main- tained a high level during the whole storage. These results suggested that strawberry senescence delaying by hot water treatment was possibly related with its inhibition on ethylene biosynthesis and regulation.
出处 《园艺学报》 CAS CSCD 北大核心 2009年第5期647-654,共8页 Acta Horticulturae Sinica
基金 江苏省科技攻关计划(农业)重大项目(BE2006312)
关键词 草莓 热水处理 贮藏 乙烯 基因表达 RT-PCR strawberry hot water treatment storage ethylene gene expression HT-PCR
  • 相关文献

参考文献20

  • 1Arakawa N, Tsutsumi K, Sanceda N G, Kurata T, Inagaki C. 1981. A rapid and sensitive method for the determination of ascorbic acid using 4, 7-diphenyl-1, 10-phenanthroline. Agric Biol Chem, 45 (5) : 1289 -1290.
  • 2Bleecker A B, Kende H. 2000. Ethylene: A gaseous signal molecule in plants. Ann Rev Cell Dev Biol, 16:1 -18.
  • 3Bleecker A B, Schaller G E. 1996. The mechanism of ethylene perceptin. Plant Physiol, 11 : 653 -660.
  • 4Bleecker A B. 1999. Ethylene perception and signaling: An evolutionary perspective. Trends Plant Sci, 4:269 -274.
  • 5陈金印,吴友根.采后热处理与果实贮藏[J].植物生理学通讯,2003,39(1):83-88. 被引量:31
  • 6Chen Y F, Etheridge N, Schaller G E. 2005. Ethylene signal transduction. Ann Bot, 95 (6) : 901 -915.
  • 7杜正顺,巩惠芳,汪良驹,李百健.热水预处理对草莓室温贮藏品质的影响[J].保鲜与加工,2008,8(1):28-32. 被引量:7
  • 8杜正顺,巩惠芳,汪良驹,李百健.热水预处理对草莓果实采后生理与品质的影响[J].江西农业学报,2008,20(1):52-55. 被引量:14
  • 9Ecker J R. 1995. The ethylene signal transduction pathway in plants. Science, 268:667 -675.
  • 10Fankhauser C, Yeh K C, Lagarias J C, Zhang H, Elich T D, Chory J. 1999. PKS1, a substrate phosphorylated by phytochrome that modulate light signaling in Arabidopsis. Science, 284:1539 -1541.

二级参考文献203

共引文献287

同被引文献173

引证文献6

二级引证文献96

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部