Warming-induced changes of broccoli head to cauliflower-like curd in Brassica oleracea are regulated by DNA methylation as revealed by methylome and transcriptome co-profiling.

IF 10.6 Q1 HORTICULTURE
Zilei Yao, Lu Yuan, Ke Liu, Tingjin Wang, Bin Liu, Yan Zhao, Susheng Gan, Liping Chen
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引用次数: 1

Abstract

Increasingly warming temperature impacts on all aspects of growth and development in plants. Flower development is a complex process that is very sensitive to ambient temperature, and warming temperatures often lead to abnormal flower development and remarkably reduce the quality and yield of inflorescent vegetables and many other crops, which can be exemplified by Brassica oleracea cv. Green Harmony F1, a broccoli cultivar, whose floral development is ceased at inflorescence meristem (at 28 °C) or floral primordium stage (at 22 °C), forming a cauliflower-like curd (28 °C) or intermediate curd (22 °C) instead of normal broccoli head at 16 °C. However, the underlying molecular regulatory mechanisms are not well understood. Here we report that warming temperature (28 °C or 22 °C) induced hypermethylation of the genome, especially the promoter regions of such sets of genes as ribosome biogenesis-related and others, leading to the suppression of the apex-highly-expressed distinctive genes, subsequently resulting in the abnormal floral development, as revealed by methylome and transcriptome co-profiling. The regulation of warming-induced abnormal floral development in broccoli was further verified by the fact that the DNA methylation inhibitor 5-azacytidine (5-azaC) released the expression of genes from the warming temperature-induced suppression, and restored the broccoli development to normalcy at warming temperature. The research provided new approaches to breeding broccoli and other crops for growing in wider or warmer temperature zones. Graphical Abstract.

Abstract Image

Abstract Image

Abstract Image

甲基组和转录组共同分析显示,升温诱导的甘蓝花椰菜头向花椰菜状凝乳的变化受到DNA甲基化的调节。
日益变暖的温度影响着植物生长发育的各个方面。花的发育是一个复杂的过程,对环境温度非常敏感,温度升高往往会导致花的发育异常,并显著降低开花蔬菜和许多其他作物的质量和产量,例如花椰菜品种Brassica oleracea cv.Green Harmony F1,其花发育在花序分生组织停止(在28 °C)或花原基期(22 °C),形成花椰菜状的凝乳(28 °C)或中间凝乳(22 °C),而不是16岁时的普通西兰花头 °C。然而,潜在的分子调控机制尚不清楚。在这里,我们报道了变暖的温度(28 °C或22 °C)诱导基因组的超甲基化,特别是核糖体生物发生相关基因和其他基因的启动子区,导致顶端高表达的独特基因被抑制,随后导致异常的花发育,如甲基组和转录组共同分析所揭示的。DNA甲基化抑制剂5-氮杂胞苷(5-azaC)释放了升温诱导的抑制基因的表达,使西兰花在升温条件下恢复正常发育,进一步证实了对升温诱导的西兰花异常花发育的调控作用。这项研究为培育西兰花和其他作物在更宽或更温暖的温度区生长提供了新的方法。图形摘要。
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来源期刊
Molecular Horticulture
Molecular Horticulture horticultural research-
CiteScore
8.00
自引率
0.00%
发文量
24
审稿时长
12 weeks
期刊介绍: Aims Molecular Horticulture aims to publish research and review articles that significantly advance our knowledge in understanding how the horticultural crops or their parts operate mechanistically. Articles should have profound impacts not only in terms of high citation number or the like, but more importantly on the direction of the horticultural research field. Scope Molecular Horticulture publishes original Research Articles, Letters, and Reviews on novel discoveries on the following, but not limited to, aspects of horticultural plants (including medicinal plants): ▪ Developmental and evolutionary biology ▪ Physiology, biochemistry and cell biology ▪ Plant-microbe and plant-environment interactions ▪ Genetics and epigenetics ▪ Molecular breeding and biotechnology ▪ Secondary metabolism and synthetic biology ▪ Multi-omics dealing with data sets of genome, transcriptome, proteome, metabolome, epigenome and/or microbiome. The journal also welcomes research articles using model plants that reveal mechanisms and/or principles readily applicable to horticultural plants, translational research articles involving application of basic knowledge (including those of model plants) to the horticultural crops, novel Methods and Resources of broad interest. In addition, the journal publishes Editorial, News and View, and Commentary and Perspective on current, significant events and topics in global horticultural fields with international interests.
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