New Cultivar Innovation, The New Zealand Institute for Plant and Food Research Limited (PFR), Palmerston North, 4472, New Zealand.
Plants for Human Health Institute, North Carolina State University, Kannapolis, NC 28081, USA.
Plant Physiol. 2023 Jul 3;192(3):1696-1710. doi: 10.1093/plphys/kiad250.
The genus Vaccinium L. (Ericaceae) contains premium berryfruit crops, including blueberry, cranberry, bilberry, and lingonberry. Consumption of Vaccinium berries is strongly associated with various potential health benefits, many of which are attributed to the relatively high concentrations of flavonoids, including the anthocyanins that provide the attractive red and blue berry colors. Because these phytochemicals are increasingly appealing to consumers, they have become a crop breeding target. There has been substantial recent progress in Vaccinium genomics and genetics together with new functional data on the transcriptional regulation of flavonoids. This is helping to unravel the developmental control of flavonoids and identify genetic regions and genes that can be selected for to further improve Vaccinium crops and advance our understanding of flavonoid regulation and biosynthesis across a broader range of fruit crops. In this update we consider the recent progress in understanding flavonoid regulation in fruit crops, using Vaccinium as an example and highlighting the significant gains in both genomic tools and functional analysis.
越橘属(杜鹃花科)包含优质的浆果作物,包括蓝莓、蔓越莓、越橘和欧洲越橘。食用越橘浆果与各种潜在的健康益处密切相关,其中许多益处归因于类黄酮的相对高浓度,包括提供诱人的红色和蓝色浆果颜色的花青素。由于这些植物化学物质对消费者越来越有吸引力,它们已成为作物育种的目标。在越橘基因组学和遗传学方面取得了重大的最新进展,同时在类黄酮的转录调控方面也有新的功能数据。这有助于揭示类黄酮的发育调控,并鉴定可用于进一步改善越橘作物的遗传区域和基因,同时加深我们对更广泛的水果作物中类黄酮调控和生物合成的理解。在本次更新中,我们将以越橘为例,考虑在理解水果作物中类黄酮调控方面的最新进展,并强调在基因组工具和功能分析方面取得的重大进展。