Department of Biology, Hong Kong Baptist University, Kowloon, Hong Kong.
College of Life Sciences and Oceanography, Shenzhen University, Shenzhen, China.
J Exp Bot. 2021 Feb 24;72(4):1384-1398. doi: 10.1093/jxb/eraa502.
Moderate soil drying (MD) imposed at the post-anthesis stage significantly improves carbon reserve remobilization in rice stems, increasing grain yield. However, the methylome and transcriptome profiles of carbon reserve remobilization under MD are obscure in indica and japonica rice stems. Here, we generated whole-genome single-base resolution maps of the DNA methylome in indica and japonica rice stems. DNA methylation levels were higher in indica than in japonica and positively correlated with genome size. MD treatment had a weak impact on the changes in methylation levels in indica. Moreover, the number of differentially methylated regions was much lower in indica, indicating the existence of cultivar-specific methylation patterns in response to MD during grain filling. The gene encoding β-glucosidase 1, involved in the starch degradation process, was hypomethylated and up-regulated in indica, resulting in improved starch to sucrose conversion under MD treatment. Additionally, increased expression of MYBS1 transactivated the expression of AMYC2/OsAMY2A in both indica and japonica, leading to enhanced starch degradation under MD. In contrast, down-regulated expression of MYB30 resulted in increased expression of BMY5 in both cultivars. Our findings decode the dynamics of DNA methylation in indica and japonica rice stems and propose candidate genes for improving carbon reserve remobilization.
适度的土壤干燥(MD)在抽穗后阶段施加,可显著提高水稻茎中的碳储备再动员,从而增加籽粒产量。然而,在籼稻和粳稻茎中,MD 下碳储备再动员的甲基组和转录组谱尚不清楚。在这里,我们生成了籼稻和粳稻茎的全基因组单碱基分辨率的 DNA 甲基组图谱。DNA 甲基化水平在籼稻中高于粳稻,且与基因组大小呈正相关。MD 处理对籼稻中甲基化水平的变化影响较弱。此外,籼稻中差异甲基化区域的数量要少得多,这表明在灌浆过程中对 MD 响应存在品种特异性的甲基化模式。参与淀粉降解过程的β-葡萄糖苷酶 1 基因在籼稻中呈低甲基化和上调表达,导致 MD 处理下淀粉向蔗糖的转化得到改善。此外,MYBS1 的转录激活增加了 AMYC2/OsAMY2A 在籼稻和粳稻中的表达,导致 MD 下淀粉降解增强。相反,MYB30 的下调表达导致两个品种中 BMY5 的表达增加。我们的研究结果解码了籼稻和粳稻茎中 DNA 甲基化的动态,并提出了候选基因,以改善碳储备再动员。