Jiangsu Key Laboratory of Marine Pharmaceutical Compound Screening, Huaihai Institute of Technology, Lianyungang, 222005, China.
Co-Innovation Center of Jiangsu Marine Bio-industry Technology, Lianyungang, 222005, China.
Plant Cell Rep. 2016 May;35(5):1071-80. doi: 10.1007/s00299-016-1939-5. Epub 2016 Feb 16.
Arabidopsis CK2 α4 subunit regulates the primary root and hypocotyl elongation, lateral root formation, cotyledon expansion, rosette leaf initiation and growth, flowering, and anthocyanin biosynthesis. Casein kinase 2 (CK2) is a conserved tetrameric kinase composed of two α and two β subunits. The inhibition of CK2 activity usually results in severe developmental deficiency. Four genes (CKA1-CKA4) encode CK2 α subunit in Arabidopsis. Single mutations of CKA1, CKA2, and CKA3 do not affect the normal growth of Arabidopsis, while the cka1 cka2 cka3 triple mutants are defective in cotyledon and hypocotyl growth, lateral root development, and flowering. The inhibition of CKA4 expression in cka1 cka2 cka3 background further reduces the number of lateral roots and delays the flowering time. Here, we report the characterization of a novel knockout mutant of CKA4, which exhibits various developmental defects including reduced primary root and hypocotyl elongation, increased lateral root density, delayed cotyledon expansion, retarded rosette leaf initiation and growth, and late flowering. The examination of the cellular basis for abnormal root development of this mutant revealed reduced root meristem cells with enhanced RETINOBLASTOMA-RELATED (RBR) expression that promotes cell differentiation in root meristem. Moreover, this cka4-2 mutant accumulates higher anthocyanin in the aerial part and shows an increased expression of anthocyanin biosynthetic genes, suggesting a novel role of CK2 in modulating anthocyanin biosynthesis. In addition, the complementation test using primary root elongation assay as a sample confirms that the changed phenotypes of this cka4-2 mutant are due to the lack of CKA4. Taken together, this study reveals an essential role of CK2 α4 subunit in multiple developmental processes in Arabidopsis.
拟南芥 CK2α4 亚基调节主根和下胚轴伸长、侧根形成、子叶扩张、莲座叶起始和生长、开花和花色素苷生物合成。酪蛋白激酶 2(CK2)是一种保守的四聚体激酶,由两个α和两个β亚基组成。CK2 活性的抑制通常导致严重的发育缺陷。拟南芥中有四个基因(CKA1-CKA4)编码 CK2α 亚基。单个突变 cka1、cka2 和 cka3 不会影响拟南芥的正常生长,而 cka1cka2cka3 三重突变体在子叶和下胚轴生长、侧根发育和开花方面存在缺陷。cka1cka2cka3 背景下 CKA4 表达的抑制进一步减少了侧根的数量并延迟了开花时间。在这里,我们报道了 CKA4 的一种新型敲除突变体的特征,该突变体表现出各种发育缺陷,包括主根和下胚轴伸长减少、侧根密度增加、子叶扩张延迟、莲座叶起始和生长受阻以及开花时间延迟。对该突变体异常根发育的细胞基础的检查表明,根分生组织细胞减少,RETINOBLASTOMA-RELATED(RBR)表达增强,促进根分生组织中的细胞分化。此外,该 cka4-2 突变体在地上部分积累了更高水平的花色素苷,并显示出花色素苷生物合成基因的表达增加,表明 CK2 在调节花色素苷生物合成中具有新的作用。此外,使用主根伸长测定作为样本的互补测试证实,该 cka4-2 突变体的表型变化是由于 CKA4 的缺失。总之,这项研究揭示了 CK2α4 亚基在拟南芥多个发育过程中的重要作用。