首页> 美国卫生研究院文献>Journal of Experimental Botany >The photomorphogenic factors UV-B RECEPTOR 1 ELONGATED HYPOCOTYL 5 and HY5 HOMOLOGUE are part of the UV-B signalling pathway in grapevine and mediate flavonol accumulation in response to the environment
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The photomorphogenic factors UV-B RECEPTOR 1 ELONGATED HYPOCOTYL 5 and HY5 HOMOLOGUE are part of the UV-B signalling pathway in grapevine and mediate flavonol accumulation in response to the environment

机译:光形态发生因子UV-B受体1加长的缩水甘油5和HY5同源物是葡萄中UV-B信号通路的一部分并响应环境而介导黄酮醇的积累

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摘要

Grapevine (Vitis vinifera L.) is a species well known for its adaptation to radiation. However, photomorphogenic factors related to UV-B responses have not been molecularly characterized. We cloned and studied the role of UV-B RECEPTOR (UVR1), ELONGATED HYPOCOTYL 5 (HY5), and HY5 HOMOLOGUE (HYH) from V. vinifera. We performed gene functional characterizations, generated co-expression networks, and tested them in different environmental conditions. These genes complemented the Arabidopsis uvr8 and hy5 mutants in morphological and secondary metabolic responses to radiation. We combined microarray and RNA sequencing (RNA-seq) data with promoter inspections to identify HY5 and HYH putative target genes and their DNA binding preferences. Despite sharing a large set of common co-expressed genes, we found different hierarchies for HY5 and HYH depending on the organ and stress condition, reflecting both co-operative and partially redundant roles. New candidate UV-B gene markers were supported by the presence of HY5-binding sites. These included a set of flavonol-related genes that were up-regulated in a HY5 transient expression assay. We irradiated in vitro plantlets and fruits from old potted vines with high and low UV-B exposures and followed the accumulation of flavonols and changes in gene expression in comparison with non-irradiated conditions. UVR1, HY5, and HYH expression varied with organ, developmental stage, and type of radiation. Surprisingly, UVR1 expression was modulated by shading and temperature in berries, but not by UV-B radiation. We propose that the UV-B response machinery favours berry flavonol accumulation through the activation of HY5 and HYH at different developmental stages at both high and low UV-B exposures.
机译:葡萄(Vitis vinifera L.)是一种众所周知的适应辐射的物种。但是,尚未对与UV-B反应有关的光形态发生因子进行分子表征。我们克隆并研究了来自V. vinifera的UV-B受体(UVR1),加长的缩水甘油5(HY5)和HY5同源物(HYH)的作用。我们进行了基因功能表征,生成了共表达网络,并在不同的环境条件下对其进行了测试。这些基因在辐射的形态学和次级代谢反应中与拟南芥uvr8和hy5突变体互补。我们将微阵列和RNA测序(RNA-seq)数据与启动子检查相结合,以鉴定HY5和HYH推定的靶基因及其DNA结合偏好。尽管共享大量共同的共同表达基因,我们发现HY5和HYH的不同层次取决于器官和压力状况,反映了合作角色和部分冗余角色。 HY5结合位点的存在支持了新的候选UV-B基因标记。这些包括一组在HY5瞬时表达测定中上调的黄酮醇相关基因。我们用高和低的UV-B辐照量对老盆栽葡萄的离体苗和果实进行了辐照,与未辐照条件相比,黄酮醇的积累和基因表达的变化也得到了跟踪。 UVR1,HY5和HYH的表达随器官,发育阶段和辐射类型而变化。出人意料的是,浆果中的阴影和温度调节了UVR1的表达,而UV-B辐射则没有。我们建议,UV-B响应机制通过在高和低UV-B暴露下不同发育阶段的HY5和 HYH 的活化来促进浆果黄酮醇的积累。

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