Department of Viticulture and Enology, University of California, Davis, CA 95616, USA.
Planta. 2010 Jun;232(1):219-34. doi: 10.1007/s00425-010-1165-2. Epub 2010 Apr 21.
The onset of ripening involves changes in sugar metabolism, softening, and color development. Most understanding of this process arises from work in climacteric fruits where the control of ripening is predominately by ethylene. However, many fruits such as grape are nonclimacteric, where the onset of ripening results from the integration of multiple hormone signals including sugars and abscisic acid (ABA). In this study, we identified ten orthologous gene families in Vitis vinifera containing components of sugar and ABA-signaling pathways elucidated in model systems, including PP2C protein phosphatases, and WRKY and homeobox transcription factors. Gene expression was characterized in control- and deficit-irrigated, field-grown Cabernet Sauvignon. Sixty-seven orthologous genes were identified, and 38 of these were expressed in berries. Of the genes expressed in berries, 68% were differentially expressed across development and/or in response to water deficit. Orthologs of several families were induced at the onset of ripening, and induced earlier and to higher levels in response to water deficit; patterns of expression that correlate with sugar and ABA accumulation during ripening. Similar to field-grown berries, ripening phenomena were induced in immature berries when cultured with sucrose and ABA, as evidenced by changes in color, softening, and gene expression. Finally, exogenous sucrose and ABA regulated key orthologs in culture, similar to their regulation in the field. This study identifies novel candidates in the control of nonclimacteric fruit ripening and demonstrates that grape orthologs of key sugar and ABA-signaling components are regulated by sugar and ABA in fleshy fruit.
成熟的开始涉及糖代谢、软化和颜色发育的变化。对这个过程的大多数理解来自于呼吸跃变型果实的工作,其中成熟的控制主要由乙烯控制。然而,许多果实如葡萄是非呼吸跃变型的,其中成熟的开始是由包括糖和脱落酸(ABA)在内的多种激素信号的整合产生的。在这项研究中,我们在葡萄属中鉴定了十个直系同源基因家族,这些基因家族包含了在模式系统中阐明的糖和 ABA 信号通路的成分,包括 PP2C 蛋白磷酸酶、WRKY 和同源盒转录因子。在对照和亏缺灌溉、田间生长的赤霞珠中,对基因表达进行了特征描述。鉴定出 67 个直系同源基因,其中 38 个在浆果中表达。在浆果中表达的基因中,有 68%在发育过程中或对水分亏缺有差异表达。一些家族的同源基因在成熟开始时被诱导,并且对水分亏缺的响应更早且水平更高;这些表达模式与成熟过程中糖和 ABA 的积累相关。与田间生长的浆果类似,当用蔗糖和 ABA 培养时,未成熟浆果中的成熟现象被诱导,这表现在颜色、软化和基因表达的变化上。最后,外源性蔗糖和 ABA 调节了培养物中的关键直系同源物,类似于它们在田间的调节方式。这项研究确定了非呼吸跃变型果实成熟控制中的新候选基因,并证明了葡萄中关键糖和 ABA 信号成分的同源基因受肉质果实中糖和 ABA 的调节。