Institute of Plant Biology, Biological Research Centre, 6726 Szeged, Hungary.
Laboratory of Growth Regulators, Institute of Experimental Botany, Czech Academy of Sciences and Palacky University, 78371 Olomouc, Czech Republic.
Int J Mol Sci. 2020 Oct 1;21(19):7266. doi: 10.3390/ijms21197266.
The plant-specific receptor-like cytoplasmic kinases (RLCKs) form a large, poorly characterized family. Members of the RLCK VI_A class of dicots have a unique characteristic: their activity is regulated by Rho-of-plants (ROP) GTPases. The biological function of one of these kinases was investigated using a T-DNA insertion mutant and RNA interference. Loss of RLCK VI_A2 function resulted in restricted cell expansion and seedling growth. Although these phenotypes could be rescued by exogenous gibberellin, the mutant did not exhibit lower levels of active gibberellins nor decreased gibberellin sensitivity. Transcriptome analysis confirmed that gibberellin is not the direct target of the kinase; its absence rather affected the metabolism and signalling of other hormones such as auxin. It is hypothesized that gibberellins and the RLCK VI_A2 kinase act in parallel to regulate cell expansion and plant growth. Gene expression studies also indicated that the kinase might have an overlapping role with the transcription factor circuit (PIF4-BZR1-ARF6) controlling skotomorphogenesis-related hypocotyl/cotyledon elongation. Furthermore, the transcriptomic changes revealed that the loss of function alters cellular processes that are associated with cell membranes, take place at the cell periphery or in the apoplast, and are related to cellular transport and/or cell wall reorganisation.
植物特异性受体样细胞质激酶(RLCKs)形成一个庞大而特征不明显的家族。双子叶植物 RLCK VI_A 类的成员具有一个独特的特征:它们的活性受到植物 Rho(ROP)GTPases 的调节。使用 T-DNA 插入突变体和 RNA 干扰研究了其中一种激酶的生物学功能。RLCK VI_A2 功能丧失导致细胞扩展和幼苗生长受限。尽管这些表型可以通过外源赤霉素挽救,但突变体并没有表现出较低水平的活性赤霉素或降低的赤霉素敏感性。转录组分析证实,赤霉素不是激酶的直接靶标;它的缺失反而影响了其他激素(如生长素)的代谢和信号转导。假设赤霉素和 RLCK VI_A2 激酶平行作用以调节细胞扩展和植物生长。基因表达研究还表明,该激酶可能与转录因子回路(PIF4-BZR1-ARF6)具有重叠作用,该回路控制与 skotomorphogenesis 相关的下胚轴/子叶伸长。此外,转录组变化表明,功能丧失会改变与细胞膜相关的细胞过程,这些过程发生在细胞边缘或质外体中,与细胞运输和/或细胞壁重组有关。