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Identification and characterization of CBL and CIPK gene families in canola (Brassica napus L.)

机译:芥花油菜中CBL和CIPK基因家族的鉴定与鉴定

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Background Canola (Brassica napus L.) is one of the most important oil-producing crops in China and worldwide. The yield and quality of canola is frequently threatened by environmental stresses including drought, cold and high salinity. Calcium is a ubiquitous intracellular secondary messenger in plants. Calcineurin B-like proteins (CBLs) are Ca2+ sensors and regulate a group of Ser/Thr protein kinases called CBL-interacting protein kinases (CIPKs). Although the CBL-CIPK network has been demonstrated to play crucial roles in plant development and responses to various environmental stresses in Arabidopsis, little is known about their function in canola. Results In the present study, we identified seven CBL and 23 CIPK genes from canola by database mining and cloning of cDNA sequences of six CBLs and 17 CIPKs. Phylogenetic analysis of CBL and CIPK gene families across a variety of species suggested genome duplication and diversification. The subcellular localization of three BnaCBLs and two BnaCIPKs were determined using green fluorescence protein (GFP) as the reporter. We also demonstrated interactions between six BnaCBLs and 17 BnaCIPKs using yeast two-hybrid assay, and a subset of interactions were further confirmed by bimolecular fluorescence complementation (BiFC). Furthermore, the expression levels of six selected BnaCBL and 12 BnaCIPK genes in response to salt, drought, cold, heat, ABA, methyl viologen (MV) and low potassium were examined by quantitative RT-PCR and these CBL or CIPK genes were found to respond to multiple stimuli, suggesting that the canola CBL-CIPK network may be a point of convergence for several different signaling pathways. We also performed a comparison of interaction patterns and expression profiles of CBL and CIPK in Arabidospsis, canola and rice, to examine the differences between orthologs, highlighting the importance of studying CBL-CIPK in canola as a prerequisite for improvement of this crop. Conclusions Our findings indicate that CBL and CIPK family members may form a dynamic complex to respond to different abiotic or hormone signaling. Our comparative analyses of the CBL-CIPK network between canola, Arabidopsis and rice highlight functional differences and the necessity to study CBL-CIPK gene functions in canola. Our data constitute a valuable resource for CBL and CPK genomics.
机译:背景双低油菜籽(甘蓝型油菜)是中国乃至全球最重要的产油作物之一。双低油菜籽的产量和品质经常受到包括干旱,寒冷和高盐度在内的环境压力的威胁。钙是植物中普遍存在的细胞内二级信使。钙调神经磷酸酶B样蛋白(CBL)是Ca 2 + 传感器,调节一组称为CBL相互作用蛋白激酶(CIPK)的Ser / Thr蛋白激酶。尽管已证明CBL-CIPK网络在拟南芥的植物发育和对各种环境胁迫的响应中起关键作用,但对其在油菜中的功能了解甚少。结果在本研究中,我们通过数据库挖掘和克隆6个CBL和17个CIPK的cDNA序列,从油菜中鉴定出7个CBL和23个CIPK基因。对各种物种的CBL和CIPK基因家族进行系统发育分析,表明基因组重复和多样化。使用绿色荧光蛋白(GFP)作为报告基因,确定了三个BnaCBL和两个BnaCIPK的亚细胞定位。我们还证明了使用酵母双杂交测定法的六个BnaCBLs和17 BnaCIPK之间的相互作用,并且通过双分子荧光互补(BiFC)进一步证实了相互作用的子集。此外,通过定量RT-PCR检测了六个选定的BnaCBL和12个BnaCIPK基因对盐,干旱,寒冷,高温,ABA,甲基紫精(MV)和低钾的响应的表达水平,发现这些CBL或CIPK基因与响应多种刺激,表明双低油菜籽CBL-CIPK网络可能是几种不同信号通路的汇合点。我们还比较了拟南芥,低芥酸菜子和水稻中CBL和CIPK的相互作用模式和表达谱,以检验直系同源物之间的差异,强调了研究低芥酸菜子中CBL-CIPK作为改良该作物的前提的重要性。结论我们的发现表明CBL和CIPK家族成员可能形成动态复合体,以响应不同的非生物或激素信号传导。我们对双低油菜籽,拟南芥和水稻之间的CBL-CIPK网络进行比较分析,突出了功能差异以及研究双低油菜籽中CBL-CIPK基因功能的必要性。我们的数据构成了CBL和CPK基因组学的宝贵资源。

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