Vinale Francesco, Manganiello Gelsomina, Nigro Marco, Mazzei Pierluigi, Piccolo Alessandro, Pascale Alberto, Ruocco Michelina, Marra Roberta, Lombardi Nadia, Lanzuise Stefania, Varlese Rosaria, Cavallo Pierpaolo, Lorito Matteo, Woo Sheridan L
Istituto per la Protezione Sostenibile delle Piante, Consiglio Nazionale delle Ricerche, via Università 133, 80055 Portici, Italy.
Dipartimento di Agraria, Università di Napoli 'Federico II', Portici, 80055 Naples, Italy.
Molecules. 2014 Jul 8;19(7):9760-72. doi: 10.3390/molecules19079760.
Trichoderma are ubiquitous soil fungi that include species widely used as biocontrol agents in agriculture. Many isolates are known to secrete several secondary metabolites with different biological activities towards plants and other microbes. Harzianic acid (HA) is a T. harzianum metabolite able to promote plant growth and strongly bind iron. In this work, we isolated from the culture filtrate of a T. harzianum strain a new metabolite, named isoharzianic acid (iso-HA), a stereoisomer of HA. The structure and absolute configuration of this compound has been determined by spectroscopic methods, including UV-Vis, MS, 1D and 2D NMR analyses. In vitro applications of iso-HA inhibited the mycelium radial growth of Sclerotinia sclerotiorum and Rhizoctonia solani. Moreover, iso HA improved the germination of tomato seeds and induced disease resistance. HPLC-DAD experiments showed that the production of HA and iso HA was affected by the presence of plant tissue in the liquid medium. In particular, tomato tissue elicited the production of HA but negatively modulated the biosynthesis of its analogue iso-HA, suggesting that different forms of the same Trichoderma secondary metabolite have specific roles in the molecular mechanism regulating the Trichoderma plant interaction.
木霉菌是普遍存在的土壤真菌,其中一些种类在农业中被广泛用作生物防治剂。许多分离株已知能分泌几种对植物和其他微生物具有不同生物活性的次生代谢产物。哈茨酸(HA)是哈茨木霉的一种代谢产物,能够促进植物生长并强烈结合铁。在这项工作中,我们从哈茨木霉菌株的培养滤液中分离出一种新的代谢产物,命名为异哈茨酸(iso-HA),它是HA的立体异构体。该化合物的结构和绝对构型已通过光谱方法确定,包括紫外可见光谱、质谱、一维和二维核磁共振分析。异哈茨酸的体外应用抑制了核盘菌和立枯丝核菌的菌丝径向生长。此外,异哈茨酸提高了番茄种子的发芽率并诱导了抗病性。高效液相色谱-二极管阵列检测实验表明,HA和异哈茨酸的产生受液体培养基中植物组织的影响。特别是,番茄组织诱导了HA的产生,但对其类似物异哈茨酸的生物合成产生负调控,这表明同一木霉菌次生代谢产物的不同形式在调节木霉菌与植物相互作用的分子机制中具有特定作用。