Institut de Chimie et Procédés pour l'Energie, l'Environnement et la Santé, Université de Strasbourg, ECPM, 25 rue Becquerel, 67 087 Strasbourg Cedex 2, France.
Phytochemistry. 2013 Jun;90:70-7. doi: 10.1016/j.phytochem.2013.02.013. Epub 2013 Apr 3.
Phytopathogenic fungi secrete a powerful arsenal of enzymes that are potentially active against each polysaccharide component of the plant cell wall. To defend themselves, plants synthetise a variety of molecules that inhibit the activity of cell wall-degrading enzymes. Xyloglucan-specific endoglucanase inhibitor proteins (XEGIPs) act specifically against the members of fungal glycoside hydrolase family 12 (GH12 in the CAZy database). In the present study, we describe the identification of three XEGIP homologues from hop (Humulus lupulus L.). When incubating each of the recombinant inhibitors with an enzymatic cocktail from Aspergillus aculeatus (Viscozyme®), the xyloglucan-degrading endoglucanase activity decreased to 15% and 5% for HlXEGIP1 and HlXEGIP2, respectively, whereas no inhibition of the Viscozyme® enzymes was observed for the third (also called HlXEGIP homologue 3, or HlXEGIPh3). Fungal enzymatic cocktails from 20 different species also showed xyloglucan-degrading endoglucanase activities, and most of them were inhibited by HlXEGIP1 and -2. Furthermore, a real time RT-PCR analysis revealed variations in the spatial distribution of the genes encoding the three inhibitors and differential expression during development and (a) biotic stress. The role of XEGIPs in the plant-fungus interaction is discussed, and a model suggesting a distinct role of these XEGIP homologues is proposed: HlXEGIP1 may act in cases of abiotic stress, while HlXEGIP2 reacts to biotic stress, and physiological development may be influenced by HlXEGIPh3.
植物病原真菌分泌出一整套强有力的酶,这些酶可能对植物细胞壁的每一种多糖成分都具有活性。为了保护自身,植物合成了多种抑制细胞壁降解酶活性的分子。木葡聚糖特异性内切葡聚糖酶抑制剂蛋白(XEGIPs)特异性作用于糖苷水解酶家族 12(CAZy 数据库中的 GH12)的成员。在本研究中,我们从啤酒花(Humulus lupulus L.)中鉴定了三种 XEGIP 同源物。当将每种重组抑制剂与 Aspergillus aculeatus 的酶混合物(Viscozyme®)孵育时,木葡聚糖降解内切葡聚糖酶活性分别下降到 15%和 5%,对于 HlXEGIP1 和 HlXEGIP2,而对于第三种(也称为 HlXEGIP 同源物 3,或 HlXEGIPh3),Viscozyme®酶没有被抑制。来自 20 个不同种属的真菌酶混合物也显示出木葡聚糖降解内切葡聚糖酶活性,其中大多数被 HlXEGIP1 和 -2 抑制。此外,实时 RT-PCR 分析显示编码三种抑制剂的基因在空间分布上存在差异,并且在发育和(a)生物胁迫过程中表达水平也不同。讨论了 XEGIPs 在植物-真菌相互作用中的作用,并提出了一个模型,表明这些 XEGIP 同源物具有不同的作用:HlXEGIP1 可能在非生物胁迫情况下发挥作用,而 HlXEGIP2 则对生物胁迫做出反应,生理发育可能受到 HlXEGIPh3 的影响。