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大豆 PIF4 的保守和独特特征的基因组和分子分析。

Genomic and molecular analysis of conserved and unique features of soybean PIF4.

机构信息

Plant Molecular Biology and Biotechnology Laboratory, School of Agriculture and Food, Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Victoria, 3010, Australia.

出版信息

Sci Rep. 2018 Aug 22;8(1):12569. doi: 10.1038/s41598-018-30043-2.

Abstract

Phytochrome-interacting factor 4 (PIF4) participates in light signaling by interacting with photoreceptors, phytochromes, and cryptochromes. Although well characterized in Arabidopsis, PIF4's role in crop plants is unknown. Here we performed the first integrated genomics, transcriptomics, and molecular characterization of PIF4 in soybean (Glycine max) plants. Fifteen identified Glycine max PIFs (GmPIFs) grouped into PIF3, PIF4, and PIF8 subfamilies based on their phylogenetic relationships. The GmPIF4 subfamily formed two distinct clades (GmPIF4 I and GmPIF4 II) with different amino acid sequences in the conserved bHLH region. Quantitative transcriptional analysis of soybean plants exposed to different photoperiods and temperatures indicated that all PIF4 I clade GmPIF4s conserved PIF4-like expression. Three out of four GmPIF4 transcripts of the GmPIF4 I clade increased at 35 °C compared to 25 °C under short day conditions. RNA sequencing of soybeans undergoing floral transition showed differential regulation of GmPIF4b, and ectopic GmPIF4b expression in wild type Arabidopsis resulted in an early flowering phenotype. Complementation of GmPIF4b in Arabidopsis pif4-101 mutants partially rescued the mutant phenotype. PIF4 protein levels peaked before dawn, and a GmPIF4b protein variant was observed in soybean plants treated at high temperatures.

摘要

光形态建成素互作因子 4(PIF4)通过与光受体、光敏素和隐花色素相互作用参与光信号转导。尽管在拟南芥中得到了很好的表征,但 PIF4 在作物植物中的作用尚不清楚。在这里,我们首次对大豆(Glycine max)植物中的 PIF4 进行了综合基因组学、转录组学和分子表征。根据系统发育关系,鉴定出的 15 个大豆 PIFs(GmPIFs)分为 PIF3、PIF4 和 PIF8 亚家族。GmPIF4 亚家族在保守的 bHLH 区域具有不同的氨基酸序列,形成两个不同的分支(GmPIF4 I 和 GmPIF4 II)。对不同光周期和温度下的大豆植株进行定量转录分析表明,所有 PIF4 I 分支的 GmPIF4s 均保守地表达 PIF4 样特征。在短日条件下,4 个 GmPIF4 I 分支的 3 个 GmPIF4 转录本在 35°C 时的表达水平高于 25°C。对正在经历花转变的大豆进行 RNA 测序显示,GmPIF4b 的表达存在差异调节,并且在野生型拟南芥中异位表达 GmPIF4b 导致开花提前。在拟南芥 pif4-101 突变体中互补 GmPIF4b 部分挽救了突变体表型。PIF4 蛋白水平在黎明前达到峰值,并且在高温处理的大豆植物中观察到 GmPIF4b 蛋白变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb57/6105606/eb8f8825241c/41598_2018_30043_Fig3_HTML.jpg

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