Department of Biochemistry, Purdue University, West Lafayette, IN, 47907-2063, USA.
Purdue Center for Plant Biology, Purdue University, West Lafayette, IN, 47907, USA.
Nat Commun. 2023 Jan 19;14(1):330. doi: 10.1038/s41467-023-36027-9.
For volatile organic compounds (VOCs) to be released from the plant cell into the atmosphere, they have to cross the plasma membrane, the cell wall, and the cuticle. However, how these hydrophobic compounds cross the hydrophilic cell wall is largely unknown. Using biochemical and reverse-genetic approaches combined with mathematical simulation, we show that cell-wall localized non-specific lipid transfer proteins (nsLTPs) facilitate VOC emission. Out of three highly expressed nsLTPs in petunia petals, which emit high levels of phenylpropanoid/benzenoid compounds, only PhnsLTP3 contributes to the VOC export across the cell wall to the cuticle. A decrease in PhnsLTP3 expression reduces volatile emission and leads to VOC redistribution with less VOCs reaching the cuticle without affecting their total pools. This intracellular build-up of VOCs lowers their biosynthesis by feedback downregulation of phenylalanine precursor supply to prevent self-intoxication. Overall, these results demonstrate that nsLTPs are intrinsic members of the VOC emission network, which facilitate VOC diffusion across the cell wall.
为了使挥发性有机化合物(VOCs)从植物细胞释放到大气中,它们必须穿过质膜、细胞壁和角质层。然而,这些疏水性化合物如何穿过亲水性细胞壁在很大程度上是未知的。本研究采用生化和反向遗传学方法结合数学模拟,表明定位于细胞壁的非特异性脂质转移蛋白(nsLTPs)促进了 VOC 的排放。在三种高水平表达的花瓣 nsLTPs 中,只有 PhnsLTP3 有助于将细胞壁中的苯丙烷/苯类化合物输送到角质层。PhnsLTP3 表达减少会降低挥发性化合物的排放,并导致 VOC 重新分配,到达角质层的 VOC 减少,而不会影响其总含量。这种 VOC 的细胞内积累通过反馈下调苯丙氨酸前体的供应来降低其生物合成,以防止自身中毒。总的来说,这些结果表明 nsLTPs 是 VOC 排放网络的固有成员,促进了 VOC 穿过细胞壁的扩散。