Institut Jean Pierre Bourgin, Institut National de la Recherche Agronomique, AgroParisTech, Unité Mixte de Recherche 1318, RD10, F-78026 Versailles Cedex, France.
Plant Physiol. 2012 Nov;160(3):1204-17. doi: 10.1104/pp.112.203364. Epub 2012 Sep 14.
Monolignol glucosides are thought to be implicated in the lignin biosynthesis pathway as storage and/or transportation forms of cinnamyl alcohols between the cytosol and the lignifying cell walls. The hydrolysis of these monolignol glucosides would involve β-glucosidase activities. In Arabidopsis (Arabidopsis thaliana), in vitro studies have shown the affinity of β-GLUCOSIDASE45 (BGLU45) and BGLU46 for monolignol glucosides. BGLU45 and BGLU46 genes are expressed in stems. Immunolocalization experiments showed that BGLU45 and BGLU46 proteins are mainly located in the interfascicular fibers and in the protoxylem, respectively. Knockout mutants for BGLU45 or BGLU46 do not have a lignin-deficient phenotype. Coniferin and syringin could be detected by ultra-performance liquid chromatography-mass spectrometry in Arabidopsis stems. Stems from BGLU45 and BGLU46 mutant lines displayed a significant increase in coniferin content without any change in coniferyl alcohol, whereas no change in syringin content was observed. Other glucosylated compounds of the phenylpropanoid pathway were also deregulated in these mutants, but to a lower extent. By contrast, BGLU47, which is closely related to BGLU45 and BGLU46, is not implicated in either the general phenylpropanoid pathway or in the lignification of stems and roots. These results confirm that the major in vivo substrate of BGLU45 and BGLU46 is coniferin and suggest that monolignol glucosides are the storage form of monolignols in Arabidopsis, but not the direct precursors of lignin.
单体木酚素葡萄糖苷被认为参与木质素生物合成途径,作为细胞质和木质化细胞壁之间肉桂醇的储存和/或运输形式。这些单体木酚素葡萄糖苷的水解将涉及β-葡萄糖苷酶活性。在拟南芥(Arabidopsis thaliana)中,体外研究表明β-葡萄糖苷酶 45(BGLU45)和 BGLU46 对单体木酚素葡萄糖苷的亲和力。BGLU45 和 BGLU46 基因在茎中表达。免疫定位实验表明,BGLU45 和 BGLU46 蛋白主要位于束间纤维和原生木质部中。BGLU45 或 BGLU46 的敲除突变体没有木质素缺陷表型。超高效液相色谱-质谱法可在拟南芥茎中检测到松柏醇苷和丁香苷。BGLU45 和 BGLU46 突变体系的茎中松柏醇苷含量显著增加,而松柏醇含量没有变化,而丁香苷含量没有变化。这些突变体中还存在苯丙素途径的其他糖基化化合物的失调,但程度较低。相比之下,与 BGLU45 和 BGLU46 密切相关的 BGLU47 既不参与一般的苯丙素途径,也不参与茎和根的木质化。这些结果证实 BGLU45 和 BGLU46 的主要体内底物是松柏醇苷,并表明单体木酚素葡萄糖苷是拟南芥中单体木酚的储存形式,但不是木质素的直接前体。