Li Qian, Chen Pei, Dai Shengjie, Sun Yufei, Yuan Bing, Kai Wenbin, Pei Yuelin, He Suihuan, Liang Bin, Zhang Yushu, Leng Ping
College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, PR China.
Department of Chemistry and Biochemistry, University of Arizona, 1306 East University BouleVard, Tucson, AZ, USA.
J Exp Bot. 2015 Jul;66(13):3765-74. doi: 10.1093/jxb/erv169. Epub 2015 May 8.
Sweet cherry is a non-climacteric fruit and its ripening is regulated by abscisic acid (ABA) during fruit development. In this study, four cDNAs (PacCYP707A1-4) encoding 8'-hydroxylase, a key enzyme in the oxidative catabolism of ABA, were identified in sweet cherry fruits using tobacco rattle virus-induced gene silencing (VIGS) and particle bombardment approaches. Quantitative real-time PCR confirmed significant down-regulation of target gene transcripts in VIGS-treated cherry fruits. In PacCYP707A2-RNAi-treated fruits, ripening and fruit colouring were promoted relative to control fruits, and both ABA accumulation and PacNCED1 transcript levels were up-regulated by 140%. Silencing of PacCYP707A2 by VIGS significantly altered the transcripts of both ABA-responsive and ripening-related genes, including the ABA metabolism-associated genes NCED and CYP707A, the anthocyanin synthesis genes PacCHS, PacCHI, PacF3H, PacDFR, PacANS, and PacUFGT, the ethylene biosynthesis gene PacACO1, and the transcription factor PacMYBA. The promoter of PacMYBA responded more strongly to PacCYP707A2-RNAi-treated fruits than to PacCYP707A1-RNAi-treated fruits. By contrast, silencing of PacCYP707A1 stimulated a slight increase in fruit colouring and enhanced resistance to dehydration stress compared with control fruits. These results suggest that PacCYP707A2 is a key regulator of ABA catabolism that functions as a negative regulator of fruit ripening, while PacCYP707A1 regulates ABA content in response to dehydration during fruit development.
甜樱桃是一种非跃变型果实,其果实发育过程中的成熟受脱落酸(ABA)调控。在本研究中,利用烟草脆裂病毒诱导基因沉默(VIGS)和粒子轰击方法,在甜樱桃果实中鉴定出4个编码8'-羟化酶(ABA氧化分解代谢中的关键酶)的cDNA(PacCYP707A1 - 4)。实时定量PCR证实VIGS处理的樱桃果实中靶基因转录本显著下调。在PacCYP707A2 - RNAi处理的果实中,与对照果实相比,成熟和果实着色得到促进,ABA积累和PacNCED1转录水平均上调了140%。通过VIGS沉默PacCYP707A2显著改变了ABA响应基因和成熟相关基因的转录本,包括ABA代谢相关基因NCED和CYP707A、花青素合成基因PacCHS、PacCHI、PacF3H、PacDFR、PacANS和PacUFGT、乙烯生物合成基因PacACO1以及转录因子PacMYBA。PacMYBA的启动子对PacCYP707A2 - RNAi处理的果实反应比对PacCYP707A1 - RNAi处理的果实更强。相比之下,与对照果实相比,沉默PacCYP707A1刺激果实着色略有增加,并增强了对脱水胁迫的抗性。这些结果表明,PacCYP707A2是ABA分解代谢的关键调节因子,作为果实成熟的负调节因子发挥作用,而PacCYP707A1在果实发育过程中响应脱水调节ABA含量。