State Key Laboratory of Hybrid Rice, Hunan Hybrid Rice Research Center, Hunan Academy of Agricultural Sciences, Changsha, China.
Collaborative Innovation Center of Grain and Oil Crops in South China, Changsha, China.
PLoS One. 2018 Jun 20;13(6):e0199077. doi: 10.1371/journal.pone.0199077. eCollection 2018.
Panicle traits in rice impact yield and quality. The OsGRF4 gene encodes a growth-regulating factor controlling panicle traits, and was recently cloned. Gene expression profiling analysis can be used to study the molecular mechanisms underlying OsGRF4 regulation. Use of near-isogenic lines (NILs) reduces genetic background noise in omics studies. We compared transcriptome profiling of 7 cm long young panicles of NIL-Osgrf4 and NIL-OsGRF4 using RNAs sequence analyses. Eighty differentially expressed genes (DEGs) were identified. Our target gene OsGRF4 was up-regulated in NIL-OsGRF4 plants, which is consistent with a previous qPCR analysis. Hierarchical cluster analysis showed OsGRF4 is tightly clustered with the up-regulated DEG LOC_Os02g47320. Gene Ontology (GO) and KEGG analysis suggested that DEGs were primarily involved in somatic embryogenesis and chitinase activity. Two up-regulated DEGs, LOC_Os04g41680 and LOC_Os04g41620, were significantly enriched in the top 8 GO terms, and were over_represented in term of seed development, and may play key roles in grain shape regulation. The transcription factor Osmyb1 also exhibited differential expression between NILs, and may be is an important regulator of panicle traits. By searching reported functions of DEGs and by co-localization with previous identified quantitative trait loci (QTL), we determined that the pleiotropic gene OsGRF4 may also be involve in abiotic stress resistance. This study provides new candidates genes for further understanding the molecular mechanisms underlying rice panicle trait regulation.
水稻穗部性状影响产量和品质。OsGRF4 基因编码一个生长调控因子,控制穗部性状,最近已被克隆。基因表达谱分析可用于研究 OsGRF4 调控的分子机制。利用近等基因系(NILs)可以减少组学研究中的遗传背景噪声。我们比较了 NIL-Osgrf4 和 NIL-OsGRF4 长 7cm 的幼穗的转录组谱,使用 RNA 序列分析。鉴定了 80 个差异表达基因(DEGs)。我们的目的基因 OsGRF4 在 NIL-OsGRF4 植株中上调表达,与之前的 qPCR 分析一致。层次聚类分析表明,OsGRF4 与上调的 DEG LOC_Os02g47320 紧密聚类。基因本体论(GO)和 KEGG 分析表明,DEGs 主要参与体细胞胚胎发生和几丁质酶活性。两个上调的 DEGs,LOC_Os04g41680 和 LOC_Os04g41620,在 top8GO 术语中显著富集,在种子发育方面过表达,可能在粒形调控中发挥关键作用。转录因子 Osmyb1 在 NILs 之间也表现出差异表达,可能是穗部性状的重要调节因子。通过搜索 DEGs 的报道功能,并与以前鉴定的数量性状位点(QTL)进行共定位,我们确定多效性基因 OsGRF4 可能也参与非生物胁迫抗性。本研究为进一步了解水稻穗部性状调控的分子机制提供了新的候选基因。