College of Horticulture, Northwest Agriculture & Forestry University, Yangling, Shaanxi, China.
Department of Horticulture, Zijingang Campus, Zhejiang University, Hangzhou, China.
J Exp Bot. 2021 Mar 29;72(7):2627-2641. doi: 10.1093/jxb/eraa604.
Starch is the major storage carbohydrate in plants, and its metabolism in chloroplasts depends mainly on light. However, the mechanism through which photoreceptors regulate starch metabolism in chloroplasts is unclear. In this study, we found that the cryptochrome 1a (CRY1a)-mediated blue light signal is critical for regulating starch accumulation by inducing starch degradation through the transcription factor HY5 in chloroplasts in tomato. cry1a mutants and HY5-RNAi plants accumulated more starch and presented lower transcript levels of starch degradation-related genes in their leaves than wild-type plants. Blue light significantly induced the transcription of starch degradation-related genes in wild-type and CRY1a- or HY5-overexpressing plants but had little effect in cry1a and HY5-RNAi plants. Dual-luciferase assays, electrophoretic mobility shift assays, and chromatin immunoprecipitation-qPCR revealed that HY5 could activate the starch degradation-related genes PWD, BAM1, BAM3, BAM8, MEX1, and DPE1 by directly binding to their promoters. Silencing of HY5 and these starch degradation-related genes in CRY1a-overexpressing plants led to increased accumulation of starch and decreased accumulation of soluble sugars. The findings presented here not only deepen our understanding of how light controls starch degradation and sugar accumulation but also allow us to explore potential targets for improving crop quality.
淀粉是植物中主要的储存碳水化合物,其在叶绿体中的代谢主要依赖于光。然而,光受体调节叶绿体中淀粉代谢的机制尚不清楚。在本研究中,我们发现隐花色素 1a(CRY1a)介导的蓝光信号对于通过诱导转录因子 HY5 在叶绿体中降解淀粉从而调节淀粉积累至关重要。cry1a 突变体和 HY5-RNAi 植物在叶片中积累了更多的淀粉,并且淀粉降解相关基因的转录水平低于野生型植物。蓝光显著诱导了野生型和 CRY1a 或 HY5 过表达植物中淀粉降解相关基因的转录,但在 cry1a 和 HY5-RNAi 植物中几乎没有影响。双荧光素酶报告基因分析、电泳迁移率变动分析和染色质免疫沉淀-qPCR 表明,HY5 可以通过直接结合到其启动子上,激活淀粉降解相关基因 PWD、BAM1、BAM3、BAM8、MEX1 和 DPE1 的转录。CRY1a 过表达植物中 HY5 和这些淀粉降解相关基因的沉默导致淀粉积累增加和可溶性糖积累减少。本研究不仅加深了我们对光如何控制淀粉降解和糖积累的理解,还为我们探索改善作物品质的潜在目标提供了依据。