Department of Applied Plant Science, College of Agriculture and Life Science, Chonnam National University, Gwangju, 61186, Republic of Korea.
Division of Forest Biotechnology, National Institute of Forest Science, Suwon, 441-847, Republic of Korea.
Plant Sci. 2019 Nov;288:110224. doi: 10.1016/j.plantsci.2019.110224. Epub 2019 Aug 20.
Patatin-liked phospholipase A (pPLAs) are major lipid acyl hydrolases that participate in various biological functions in plant growth and development. Previously, a ginseng-derived pPLAIII homolog was reported to reduce lignin content in Arabidopsis. This led us to evaluate its possible usefulness as a biomass source in wood plant. Herein, we report that there are six members in the pPLAIII gene family in poplar. Overexpression of pPLAIIIβ derived from ginseng resulted in a reduced plant height with radially expanded stem growth in hybrid poplars. Compared with the wild type (WT), the chlorophyll content was increased in the overexpression poplar lines, whereas the leaf size was smaller. The secondary cell wall structure in overexpression lines was also altered, exhibiting reduced lignification in the xylem. Two transcription factors, MYB92 and MYB152, which control lignin biosynthesis, were downregulated in the overexpression lines. The middle xylem of the overexpression line showed heavy thickening, making it thicker than the other xylem parts and the WT xylem, which rather could have been contributed by the presence of more cellulose in the selected surface area. Taken together, the results suggest that PgpPLAIIIβ plays a role not only in cell elongation patterns, but also in determining the secondary cell wall composition.
类脂酶 PLA(pPLAs) 是主要的脂酰水解酶,参与植物生长发育的各种生物学功能。先前,有人报道从人参中分离出的 pPLAIII 同源物可降低拟南芥中的木质素含量。这促使我们评估其作为木本植物生物量来源的可能用途。在此,我们报告杨树中存在 6 种 pPLAIII 基因家族成员。从人参中衍生的 pPLAIIIβ 的过表达导致杂种杨树的株高降低,茎干生长呈放射状扩张。与野生型(WT)相比,过表达系的叶绿素含量增加,而叶片较小。过表达系的次生细胞壁结构也发生了改变,木质部的木质化程度降低。控制木质素生物合成的两个转录因子 MYB92 和 MYB152 在过表达系中下调。过表达系的中间木质部明显加厚,比其他木质部部分和 WT 木质部都厚,这可能是由于选择区域的纤维素含量较多所致。综上所述,结果表明 PgpPLAIIIβ 不仅在细胞伸长模式中起作用,而且还决定次生细胞壁的组成。