Laboratory of molecular biology of tomato, Department of Life Science, Lu Liang University, Lvliang 033000, People's Republic of China.
Plant Sci. 2022 May;318:111235. doi: 10.1016/j.plantsci.2022.111235. Epub 2022 Feb 23.
Fruit development and ripening is a complicated biological process, that is not only regulated by plant hormones and transcription factors, but also affected by epigenetic modifications. Histone deacetylation is an important way of epigenetic modification, and little information about it is available. In this study, an RNAi vector was constructed and transferred successfully into wild-type tomato for further research on the detailed functions of the histone deacetylation gene SlHDT1. The expression level of PSY1 was upregulated, and the transcription levels of LCY-B, LCY-E and CYC-B were downregulated, which was consistent with the increased accumulation of carotenoids. In addition, the expression levels of ethylene biosynthetic genes (ACS2, ACS4 and ACO1, ACO3), ripening-associated genes (RIN, E4, E8, PG, Pti4 and LOXB) and fruit cell wall metabolism genes (HEX, MAN, TBG4, XTH5 and XYL) were significantly upregulated further strengthening the results, including an increased ethylene content, advanced fruit ripening time and a shortened shelf life of tomato fruits. In addition, the increased total histone H3 acetylation level also provides evidence of a connection between epigenetic regulation by histone deacetylation and fruit development and ripening. Hence, SlHDT1 is a negative regulator and plays an essential role in regulating ethylene and carotenoid biosynthesis during fruit ripening through influences on the acetylation level.
果实的发育和成熟是一个复杂的生物学过程,不仅受到植物激素和转录因子的调控,还受到表观遗传修饰的影响。组蛋白去乙酰化是一种重要的表观遗传修饰方式,但其相关信息知之甚少。本研究构建了 RNAi 载体并成功转入野生型番茄,进一步研究组蛋白去乙酰化基因 SlHDT1 的详细功能。结果表明,SlHDT1 过表达导致 PSY1 表达水平上调,LCY-B、LCY-E 和 CYC-B 的转录水平下调,与类胡萝卜素的积累增加相一致。此外,乙烯生物合成基因(ACS2、ACS4 和 ACO1、ACO3)、成熟相关基因(RIN、E4、E8、PG、Pti4 和 LOXB)和果实细胞壁代谢基因(HEX、MAN、TBG4、XTH5 和 XYL)的表达水平也显著上调,进一步证实了这一结果,包括乙烯含量增加、果实成熟时间提前和货架期缩短。此外,总组蛋白 H3 乙酰化水平的增加也为组蛋白去乙酰化的表观遗传调控与果实发育和成熟之间的联系提供了证据。因此,SlHDT1 是一个负调控因子,通过影响乙酰化水平,在果实成熟过程中对乙烯和类胡萝卜素生物合成起重要的调控作用。