Suppr超能文献

ABA 可能通过调节成熟和激素相关基因的表达来促进或延迟桃果实的成熟,具体取决于发育阶段。

ABA may promote or delay peach fruit ripening through modulation of ripening- and hormone-related gene expression depending on the developmental stage.

机构信息

Dept. of Agricultural Sciences, University of Bologna, Viale Fanin 46, 40127 Bologna, Italy.

出版信息

Plant Physiol Biochem. 2013 Mar;64:11-24. doi: 10.1016/j.plaphy.2012.12.011. Epub 2013 Jan 3.

Abstract

Peach (Prunus persica laevis L. Batsch) was chosen as a model to further clarify the physiological role of ABA during fruit ripening. To this aim, branches bearing one fruit at mid-S3, S3/S4 and S4 stages of fruit development and characterized by a different ripening index (I(AD)), as revealed by a non-destructive device called a DA-meter, were treated with ABA (0.02 mM) for 1 and 5 days. Exogenously applied ABA interfered with the progression of ripening leading to less ripe or riper fruit depending on the physiological stage. To better understand the molecular basis of ABA interference with ripening, the time-course changes in the expression of ethylene-, cell wall-, and auxin-related genes as well as other genes (NCED, PIP, LOX, AOS and SOT) was evaluated in the fruit mesocarp. Real-time PCR analyses revealed that in mid-S3 fruit transcript levels of ethylene biosynthesis and signaling (ACS1, ACO1, ETR2, ERF2), cell wall softening-related (PG, PMEI, EXP1, EXP2) and auxin biosynthesis, conjugation, transport and perception (TRPB, IGPS, Aux/IAA, GH3, PIN1 and TIR1) genes were substantially down-regulated on day 5 indicating a ripening delay. On the contrary, in more advanced stages (S3/S4 and S4) the same genes were early (day 1) up-regulated suggesting an acceleration of ripening. Transcript profiling of other ripening-related genes revealed changes that were in accord with a ripening delay (mid-S3) or acceleration (S3/S4 and S4). Thus, in peach fruit, ABA appears to modulate ripening through interference not only with ethylene and cell wall but also with auxin-related genes.

摘要

桃(Prunus persica laevis L. Batsch)被选为模型,以进一步阐明 ABA 在果实成熟过程中的生理作用。为此,在果实发育的 S3 中期、S3/S4 和 S4 阶段,选择一个果实,用 DA 计(一种非破坏性设备)测量其不同的成熟指数(I(AD)),然后用 ABA(0.02 mM)处理 1 和 5 天。外源 ABA 处理会干扰果实成熟的进程,导致果实成熟度降低或升高,这取决于生理阶段。为了更好地理解 ABA 干扰成熟的分子基础,评估了果实中乙烯、细胞壁和生长素相关基因以及其他基因(NCED、PIP、LOX、AOS 和 SOT)的表达随时间的变化。实时 PCR 分析显示,在 S3 中期果实中,乙烯生物合成和信号转导(ACS1、ACO1、ETR2、ERF2)、细胞壁软化相关(PG、PMEI、EXP1、EXP2)和生长素生物合成、共轭、运输和感知(TRPB、IGPS、Aux/IAA、GH3、PIN1 和 TIR1)基因的转录水平在第 5 天显著下调,表明成熟延迟。相反,在更成熟的阶段(S3/S4 和 S4),相同的基因在早期(第 1 天)上调,表明成熟加速。其他成熟相关基因的转录谱分析显示的变化与成熟延迟(S3 中期)或加速(S3/S4 和 S4)相符。因此,在桃果实中,ABA 似乎通过干扰不仅乙烯和细胞壁,还干扰生长素相关基因来调节成熟。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验