Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi, India.
Plant Signal Behav. 2012 Jul;7(7):847-55. doi: 10.4161/psb.20385. Epub 2012 Jul 1.
Phospholipase D is one of the crucial enzymes involved in lipid mediated signaling, triggered during various developmental and physiological processes. Different members of PLD gene family have been known to be induced under different abiotic stresses and during developmental processes in various plant species. In this report, we are presenting a detailed microarray based expression analysis and expression profiles of entire set of PLD genes in rice genome, under three abiotic stresses (salt, cold and drought) and different developmental stages (3-vegetative stages and 11-reproductive stages). Seven and nine PLD genes were identified, which were expressed differentially under abiotic stresses and during reproductive developmental stages, respectively. PLD genes, which were expressed significantly under abiotic stresses exhibited an overlapping expression pattern and were also differentially expressed during developmental stages. Moreover, expression pattern for a set of stress induced genes was validated by real time PCR and it supported the microarray expression data. These findings emphasize the role of PLDs in abiotic stress signaling and development in rice. In addition, expression profiling for duplicated PLD genes revealed a functional divergence between the duplicated genes and signify the role of gene duplication in the evolution of this gene family in rice. This expressional study will provide an important platform in future for the functional characterization of PLDs in crop plants.
磷脂酶 D 是参与脂质介导信号转导的关键酶之一,在各种发育和生理过程中被触发。不同的 PLD 基因家族成员已被证明在各种植物物种的不同非生物胁迫和发育过程中被诱导。在本报告中,我们展示了基于微阵列的详细表达分析和水稻基因组中整套 PLD 基因在三种非生物胁迫(盐、冷和干旱)和不同发育阶段(3-营养阶段和 11-生殖阶段)下的表达谱。鉴定出了 7 个和 9 个 PLD 基因,它们分别在非生物胁迫和生殖发育阶段表达差异。在非生物胁迫下表达显著的 PLD 基因表现出重叠的表达模式,并且在发育阶段也有差异表达。此外,通过实时 PCR 验证了一组应激诱导基因的表达模式,这支持了微阵列表达数据。这些发现强调了 PLD 在水稻非生物胁迫信号转导和发育中的作用。此外,对复制的 PLD 基因的表达谱分析揭示了复制基因之间的功能分化,并表明基因复制在该基因家族在水稻进化中的作用。这项表达研究将为未来在作物植物中对 PLD 的功能表征提供一个重要的平台。