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Acta Horticulturae Sinica ›› 2021, Vol. 48 ›› Issue (1): 15-25.doi: 10.16420/j.issn.0513-353x.2020-0261

• Research Papers • Previous Articles     Next Articles

Effects of Initial Low Oxygen Treatments on Superficial Scald Prevention and Ethylene Release in Pear

DU Yanmin, WANG Wenhui*(), JIA Xiaohui, WANG Zhihua, TONG Wei, and ZHANG Xinnan   

  1. Key Laboratory of Fruit Storage and Processing of Liaoning Province,Institute of Pomology,Chinese Academy of Agricultural Sciences,Xingcheng,Liaoning 125100,China
  • Received:2020-05-25 Revised:2020-09-15 Online:2021-01-25 Published:2021-01-29
  • Contact: WANG Wenhui E-mail:wangwenhui@caas.cn

Abstract:

This study aimed to compare the effect of initial ultra-low oxygen stress(0.8% O2 + 0.5% CO2 for 15 d and then stored at 5.0% O2 + 0.5% CO2),static controlled atmosphere(CA)(5.0% O2 + 0.5% CO2)and two-stage oxygen reduction CA(10.0% O2 + 0.5% CO2 for 15 d,then transfer to 5.0% O2 + 0.5% CO2 for long period storage)on superficial scald prevention and ethylene release of‘Yali’pear. Superficial scald incidence,α-farnesene and conjugated trienols(CTols),fruit quality,respiration intensity,ethylene release rate and relative expression of ethylene biosynthesis and signaling pathway genes were compared and analyzed after storage for 180 d and 240 d plus 7 d shelf-life,and taking air treatment as control. The results showed that compared with the air,initial ultra-low oxygen stress,static CA and two-stage oxygen reduction CA could inhibit the superficial scald effectively,after storage for 240 d and 7 d shelf-life,the superficial scald incidence followed as the order of air(93.75%)> two-stage oxygen reduction CA(80.00%)> static CA(62.50%)> initial ultra-low oxygen stress(53.57%). Further research found that,CA treatments declined the accumulation of conjugated trienols in fruit peel tissue during long period storage,and better maintained the titratable acid and vitamin C contents,inhibited the ethylene production and delayed the ethylene release peaking time. At meanwhile,the relative expression of PbACO1,PbACO3 and PbACS1 genes were significantly decreased at the early time of shelf-life period,and the PbCTR1 and PbERF1 were enhanced by initial ultra-low oxygen stress and low oxygen controlled atmosphere,while the relative expression of PbETR2 were up-regulated fast with the increase of ethylene production during shelf-life period.

Key words: pear, low oxygen CA, ultra-low oxygen stress, ethylene, superficial scald

CLC Number: