Gao Chao, Sun Jianlei, Wang Chongqi, Dong Yumei, Xiao Shouhua, Wang Xingjun, Jiao Zigao
Shandong Key Laboratory of Greenhouse Vegetable Biology, Institute of Vegetables and Flowers, Shandong Academy of Agricultural Sciences, Jinan, China.
Biotechnology Research Center, Shandong Academy of Agricultural Sciences; Shandong Provincial Key laboratory of Crop Genetic Improvement, Ecology and Physiology, Jinan, China.
PLoS One. 2017 Jul 27;12(7):e0181843. doi: 10.1371/journal.pone.0181843. eCollection 2017.
The basic/helix-loop-helix (bHLH) proteins constitute a superfamily of transcription factors that are known to play a range of regulatory roles in eukaryotes. Over the past few decades, many bHLH family genes have been well-characterized in model plants, such as Arabidopsis, rice and tomato. However, the bHLH protein family in peanuts has not yet been systematically identified and characterized. Here, 132 and 129 bHLH proteins were identified from two wild ancestral diploid subgenomes of cultivated tetraploid peanuts, Arachis duranensis (AA) and Arachis ipaensis (BB), respectively. Phylogenetic analysis indicated that these bHLHs could be classified into 19 subfamilies. Distribution mapping results showed that peanut bHLH genes were randomly and unevenly distributed within the 10 AA chromosomes and 10 BB chromosomes. In addition, 120 bHLH gene pairs between the AA-subgenome and BB-subgenome were found to be orthologous and 101 of these pairs were highly syntenic in AA and BB chromosomes. Furthermore, we confirmed that 184 bHLH genes expressed in different tissues, 22 of which exhibited tissue-specific expression. Meanwhile, we identified 61 bHLH genes that may be potentially involved in peanut-specific subterranean. Our comprehensive genomic analysis provides a foundation for future functional dissection and understanding of the regulatory mechanisms of bHLH transcription factors in peanuts.
基本/螺旋-环-螺旋(bHLH)蛋白构成了一个转录因子超家族,已知其在真核生物中发挥一系列调控作用。在过去几十年里,许多bHLH家族基因已在拟南芥、水稻和番茄等模式植物中得到充分表征。然而,花生中的bHLH蛋白家族尚未得到系统鉴定和表征。在此,分别从栽培四倍体花生的两个野生祖先二倍体亚基因组Arachis duranensis(AA)和Arachis ipaensis(BB)中鉴定出132个和129个bHLH蛋白。系统发育分析表明,这些bHLH可分为19个亚家族。分布图谱结果显示,花生bHLH基因在10条AA染色体和10条BB染色体上随机且不均匀分布。此外,发现AA亚基因组和BB亚基因组之间有120对bHLH基因是直系同源的,其中101对在AA和BB染色体上具有高度共线性。此外,我们证实有184个bHLH基因在不同组织中表达,其中22个表现出组织特异性表达。同时,我们鉴定出61个可能潜在参与花生特有地下生长过程的bHLH基因。我们的综合基因组分析为未来对花生中bHLH转录因子的功能解析及调控机制的理解奠定了基础。