Carbon starvation reduces carbohydrate and anthocyanin accumulation in red‐fleshed fruit via trehalose 6‐phosphate and MYB27

花青素 海藻糖 饥饿 碳水化合物 磷酸盐 化学 生物化学 食品科学 植物 生物 内分泌学
作者
Simona Nardozza,H.L. Boldingh,M.P. Kashuba,Regina Feil,Dan Jones,Amali Thrimawithana,Hilary Ireland,Marine Philippe,Mark Wohlers,Tony K. McGhie,Mirco Montefiori,John E. Lunn,Andrew C. Allan,A.C. Richardson
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:43 (4): 819-835 被引量:47
标识
DOI:10.1111/pce.13699
摘要

Abstract Kiwifruit ( Actinidia spp.) is a recently domesticated fruit crop with several novel‐coloured cultivars being developed. Achieving uniform fruit flesh pigmentation in red genotypes is challenging. To investigate the cause of colour variation between fruits, we focused on a red‐fleshed Actinidia chinensis var. chinensis genotype. It was hypothesized that carbohydrate supply could be responsible for this variation. Early in fruit development, we imposed high or low (carbon starvation) carbohydrate supplies treatments; carbohydrate import or redistribution was controlled by applying a girdle at the shoot base. Carbon starvation affected fruit development as well as anthocyanin and carbohydrate metabolite concentrations, including the signalling molecule trehalose 6‐phosphate. RNA‐Seq analysis showed down‐regulation of both gene‐encoding enzymes in the anthocyanin and carbohydrate biosynthetic pathways. The catalytic trehalose 6‐phosphate synthase gene TPS1.1a was down‐regulated, whereas putative regulatory TPS7 and TPS11 were strongly up‐regulated. Unexpectedly, under carbon starvation MYB10 , the anthocyanin pathway regulatory activator was slightly up‐regulated, whereas MYB27 was also up‐regulated and acts as a repressor. To link these two metabolic pathways, we propose a model where trehalose 6‐phosphate and the active repressor MYB27 are involved in sensing the carbon starvation status. This signals the plant to save resources and reduce the production of anthocyanin in fruits.
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