Leibniz Universität Hannover, Institut für Zierpflanzenbau und Gehölzwissenschaften, Abt. Molekulare Ertragsphysiologie, D-30419, Hannover, Germany.
Plant Cell Environ. 2014 Jul;37(7):1626-40. doi: 10.1111/pce.12278. Epub 2014 Mar 3.
pPLA-I is the evolutionarily oldest patatin-related phospholipase A (pPLA) in plants, which have previously been implicated to function in auxin and defence signalling. Molecular and physiological analysis of two allelic null mutants for pPLA-I [ppla-I-1 in Wassilewskija (Ws) and ppla-I-3 in Columbia (Col) ] revealed pPLA-I functions in auxin and light signalling. The enzyme is localized in the cytosol and to membranes. After auxin application expression of early auxin-induced genes is significantly slower compared with wild type and both alleles show a slower gravitropic response of hypocotyls, indicating compromised auxin signalling. Additionally, phytochrome-modulated responses like abrogation of gravitropism, enhancement of phototropism and growth in far red-enriched light are decreased in both alleles. While early flowering, root coils and delayed phototropism are only observed in the Ws mutant devoid of phyD, the light-related phenotypes observed in both alleles point to an involvement of pPLA-I in phytochrome signalling.
pPLA-I 是植物中进化上最古老的与 patatin 相关的磷脂酶 A(pPLA),先前已被认为在生长素和防御信号中发挥作用。对 pPLA-I 的两个等位基因缺失突变体[Wassilewskija(Ws)中的 ppla-I-1 和哥伦比亚(Col)中的 ppla-I-3]的分子和生理学分析表明,pPLA-I 参与生长素和光信号转导。该酶定位于细胞质和膜中。与野生型相比,生长素处理后早期生长素诱导基因的表达明显较慢,两个等位基因的下胚轴向重力性反应也较慢,表明生长素信号受损。此外,光质调节反应,如向重力性的消除、光向性的增强以及远红光富集光中的生长,在两个等位基因中均减弱。虽然在没有 phyD 的 Ws 突变体中仅观察到早开花、根卷曲和延迟光向性,但在两个等位基因中观察到的与光相关的表型表明 pPLA-I 参与了光敏色素信号转导。