Plant Immunity Laboratory, National Institute of Plant Genome Research, Aruna Asaf Ali Marg, New Delhi, 110067, India.
School of Life Sciences, Central University of Gujarat, Gandhinagar, 382030, Gujarat, India.
Sci Rep. 2017 Jul 10;7(1):5026. doi: 10.1038/s41598-017-04913-0.
The mitogen-activated protein kinase (MAPK)-mediated phosphorylation cascade is a vital component of plant cellular signalling. Despite this, MAPK signalling cascade is less characterized in crop legumes. To fill this void, we present here a comprehensive phylogeny of MAPK kinases (MKKs) and MAPKs identified from 16 legume species belonging to genistoid (Lupinus angustifolius), dalbergioid (Arachis spp.), phaseoloid (Glycine max, Cajanus cajan, Phaseolus vulgaris, and Vigna spp.), and galegoid (Cicer arietinum, Lotus japonicus, Medicago truncatula, Pisum sativum, Trifolium spp., and Vicia faba) clades. Using the genes of the diploid crop chickpea (C. arietinum), an exhaustive interaction analysis was performed between MKKs and MAPKs by split-ubiquitin based yeast two-hybrid (Y2H). Twenty seven interactions of varying strengths were identified between chickpea MKKs and MAPKs. These interactions were verified in planta by bimolecular fluorescence complementation (BiFC). As a first report in plants, four intra-molecular interactions of weak strength were identified within chickpea MKKs. Additionally; two TEOSINTE-BRANCHED1/CYCLOIDEA/PCF (TCP) transcription factors of class I were identified as novel down-stream interacting partners of seven MAPKs. We propose that this highly reliable MAPK interaction network, presented here for chickpea, can be utilized as a reference for legumes and thus will help in deciphering their role in legume-specific events.
丝裂原活化蛋白激酶 (MAPK) 介导的磷酸化级联反应是植物细胞信号转导的重要组成部分。尽管如此,作物豆科植物中的 MAPK 信号级联反应的特征描述较少。为了填补这一空白,我们在此介绍了从 16 种豆科植物中鉴定出的 MAPK 激酶 (MKK) 和 MAPK 的综合系统发育,这些植物属于金雀花型 (Lupinus angustifolius)、黄檀型 (Arachis spp.)、菜豆型 (Glycine max、Cajanus cajan、Phaseolus vulgaris 和 Vigna spp.) 和百脉根型 (Cicer arietinum、 Lotus japonicus、Medicago truncatula、Pisum sativum、Trifolium spp. 和 Vicia faba) 进化枝。利用二倍体作物鹰嘴豆 (C. arietinum) 的基因,通过基于分裂泛素的酵母双杂交 (Y2H) 对 MKK 和 MAPK 之间进行了详尽的相互作用分析。在鹰嘴豆 MKK 和 MAPK 之间鉴定出了 27 种不同强度的相互作用。这些相互作用通过双分子荧光互补 (BiFC) 在植物体内得到了验证。作为在植物中的第一个报告,在鹰嘴豆 MKK 内鉴定出了四个强度较弱的分子内相互作用。此外,还鉴定出了两个 I 类 TEOSINTE-BRANCHED1/CYCLOIDEA/PCF (TCP) 转录因子作为七个 MAPK 的新下游相互作用伙伴。我们提出,这里为鹰嘴豆呈现的这种高度可靠的 MAPK 相互作用网络可以作为豆科植物的参考,从而有助于破译它们在豆科植物特有的事件中的作用。