Key Laboratory of State Forestry Administration on Tropical Forestry Research, Research Institute of Tropical Forestry, Chinese Academy of Forestry, Number 682, Guang Shan Yi Road, Longdong District, Guangzhou, 510520, China.
BMC Genomics. 2020 May 20;21(1):368. doi: 10.1186/s12864-020-06776-8.
SPL (SQUAMOSA-promoter binding protein-like) proteins form a large family of plant-specific transcription factors that play essential roles in various aspects of plant growth and development. They are potentially important candidates for genetic improvement of agronomic traits. However, there were limited information about the SPL genes in Jatropha curcas, an important biofuel plant.
In Jatropha, 15 JcSPL genes were identified. Phylogenetic analysis revealed that most of the JcSPLs were closely related to SPLs from woody plant rather than herbaceous plant and distantly related to monocotyledon SPLs. Gene structure, conserved motif and repetitive sequence analysis indicated diverse and specific functions of some JcSPL genes. By combination of target prediction and degradome sequencing analysis, 10 of the 15 JcSPLs were shown to be targets of JcmiR156. Quantitative PCR analysis showed diversified spatial-temporal expression patterns of JcSPLs. It is interesting that the expression levels of JcSPL3 were the highest in all tissues examined in 7- or 10-year-old plants and exhibited increasing trend with plant age, suggesting its important role in the regulation of age development in Jatropha. Overexpression of JcSPL3 in Arabidopsis resulted in earlier flowering time, shorter silique length and reduced biomass of roots.
Through comprehensive and systematic analysis of phylogenetic relationships, conserved motifs, gene structures, chromosomal locations, repetitive sequence and expression patterns, 15 JcSPL genes were identified in Jatropha and characterized in great detail. These results provide deep insight into the evolutionary origin and biological significance of plant SPLs and lay the foundation for further functional characterization of JcSPLs with the purpose of genetic improvement in Jatropha.
SPL(SQUAMOSA-promoter binding protein-like)蛋白构成了一个庞大的植物特异性转录因子家族,在植物生长和发育的各个方面发挥着重要作用。它们是遗传改良农业性状的潜在重要候选者。然而,关于麻疯树(Jatropha curcas)这一重要生物燃料植物中的 SPL 基因的信息有限。
在麻疯树中,鉴定出了 15 个 JcSPL 基因。系统发育分析表明,大多数 JcSPLs 与木本植物的 SPLs 密切相关,而与草本植物的 SPLs 关系较远,与单子叶植物的 SPLs 关系更远。基因结构、保守基序和重复序列分析表明,一些 JcSPL 基因具有多样化和特异性的功能。通过靶标预测和降解组测序分析相结合,发现 15 个 JcSPL 中的 10 个是 JcmiR156 的靶标。定量 PCR 分析显示 JcSPLs 的空间和时间表达模式多样化。有趣的是,在 7 年和 10 年生植物中,所有检测组织中 JcSPL3 的表达水平最高,并随植物年龄呈上升趋势,表明其在麻疯树年龄发育调控中的重要作用。在拟南芥中过表达 JcSPL3 导致开花时间提前、雌蕊长缩短和根生物量减少。
通过对系统发育关系、保守基序、基因结构、染色体位置、重复序列和表达模式的综合和系统分析,在麻疯树中鉴定并详细描述了 15 个 JcSPL 基因。这些结果深入了解了植物 SPL 的进化起源和生物学意义,并为进一步对 JcSPLs 进行功能表征奠定了基础,旨在遗传改良麻疯树。