Zeng Jingjue, Haider Muhammad Salman, Huang Junbo, Xu Yanshuai, Pervaiz Tariq, Feng Jiao, Zheng Huan, Tao Jianmin
College of Horticulture, Nanjing Agricultural University, 210095 Nanjing, China.
College of Horticulture, Hunan Agricultural University, 410000 Hunan, China.
Int J Mol Sci. 2020 Jun 18;21(12):4336. doi: 10.3390/ijms21124336.
The glycogen synthase kinase 3/shaggy kinase (GSK3) is a serine/threonine kinase that plays important roles in brassinosteroid signaling, abiotic stress responses, cell division, and elongation, etc. In this study, we characterized seven grape GSK3 genes, showing high similarities with homologs from other species including , white pear, apple, orange, and peach. Gene chip microarray data derived from an online database revealed very diverse developmental and tissue-specific expression patterns of . and showed much higher expression levels in almost every tissue compared with other members. was highly enriched in young tissues like berries before the veraison stage, young leaves and green stems, etc., but immediately downregulated after these tissues entered maturation or senescence phases. Prediction of cis-elements in promoters indicated that might be sensitive to light stimulation, which is further confirmed by the qPCR data. Constitutive overexpression of in leads to dwarf plants that resembles BR-deficient mutants. The photosynthetic rate was significantly reduced in these plants, even though they accumulated more chlorophyll in leaves. Transient overexpression of in tomatoes delayed the fruit ripening process, consistent with the observation in grapevine which blocks by EBR- or BIKININ-promoted berry expansion and soluble solids accumulation. Data presented in the current study may serve as a theoretical basis for the future application of BRs or related compounds in quality grape production.
糖原合酶激酶3/蓬乱激酶(GSK3)是一种丝氨酸/苏氨酸激酶,在油菜素类固醇信号传导、非生物胁迫响应、细胞分裂和伸长等过程中发挥重要作用。在本研究中,我们鉴定了七个葡萄GSK3基因,它们与包括白梨、苹果、橙子和桃子在内的其他物种的同源物具有高度相似性。从在线数据库获得的基因芯片微阵列数据显示,其发育和组织特异性表达模式非常多样。与其他成员相比,[具体基因1]和[具体基因2]在几乎每个组织中的表达水平都要高得多。[具体基因3]在转色期前的浆果、幼叶和绿色茎等幼嫩组织中高度富集,但在这些组织进入成熟或衰老阶段后立即下调。对[具体基因3]启动子中顺式元件的预测表明,[具体基因3]可能对光刺激敏感,qPCR数据进一步证实了这一点。在[具体植物]中组成型过表达[具体基因3]会导致植株矮小,类似于油菜素类固醇缺陷型突变体。这些植株的光合速率显著降低,尽管它们叶片中积累了更多叶绿素。在番茄中瞬时过表达[具体基因3]延迟了果实成熟过程,这与在葡萄中的观察结果一致,即通过表油菜素内酯或碧卡宁促进浆果膨大及可溶性固形物积累来阻断[具体基因3]。本研究提供的数据可为未来油菜素类固醇或相关化合物在优质葡萄生产中的应用提供理论基础。