Schumacher Julia, Simon Adeline, Cohrs Kim C, Traeger Stefanie, Porquier Antoine, Dalmais Bérengère, Viaud Muriel, Tudzynski Bettina
1 IBBP, WWU Münster, Schlossplatz 8, 48143 Münster, Germany;
2 BIOGER, INRA, Avenue Lucien Brétignières, 78850 Grignon, France;
Mol Plant Microbe Interact. 2015 Jun;28(6):659-74. doi: 10.1094/MPMI-12-14-0411-R. Epub 2015 Jun 23.
Botrytis cinerea, the gray mold fungus, is an important plant pathogen. Field populations are characterized by variability with regard to morphology, the mode of reproduction (conidiation or sclerotia formation), the spectrum of secondary metabolites (SM), and virulence. Natural variation in bcvel1 encoding the ortholog of Aspergillus nidulans VeA, a member of the VELVET complex, was previously shown to affect light-dependent differentiation, the formation of oxalic acid (OA), and virulence. To gain broader insight into the B. cinerea VELVET complex, an ortholog of A. nidulans LaeA, BcLAE1, a putative interaction partner of BcVEL1, was studied. BcVEL1 but not its truncated versions interacts with BcLAE1 and BcVEL2 (VelB ortholog). In accordance with the expected common as well as specific functions of BcVEL1 and BcLAE1, the deletions of both genes result in similar though not identical phenotypes. Both mutants lost the ability to produce OA, to colonize the host tissue, and to form sclerotia. However, mutants differ with regard to aerial hyphae and conidia formation. Genome-wide expression analyses revealed that BcVEL1 and BcLAE1 have common and distinct target genes. Some of the genes that are underexpressed in both mutants, e.g., those encoding SM-related enzymes, proteases, and carbohydrate-active enzymes, may account for their reduced virulence.
灰霉病菌(Botrytis cinerea)是一种重要的植物病原体。田间菌株在形态、繁殖方式(分生孢子形成或菌核形成)、次生代谢产物(SM)谱和毒力方面具有变异性。先前研究表明,编码构巢曲霉(Aspergillus nidulans)VeA(VELVET复合体成员)直系同源物的bcvel1中的自然变异会影响光依赖性分化、草酸(OA)的形成和毒力。为了更深入了解灰霉病菌的VELVET复合体,对构巢曲霉LaeA的直系同源物BcLAE1(BcVEL1的假定相互作用伙伴)进行了研究。BcVEL1而非其截短版本与BcLAE1和BcVEL2(VelB直系同源物)相互作用。根据BcVEL1和BcLAE1预期的共同及特定功能,两个基因的缺失导致了相似但不完全相同的表型。两个突变体都失去了产生OA、定殖于宿主组织和形成菌核的能力。然而,突变体在气生菌丝和分生孢子形成方面存在差异。全基因组表达分析表明,BcVEL1和BcLAE1具有共同和不同的靶基因。两个突变体中表达下调的一些基因,例如那些编码与SM相关的酶、蛋白酶和碳水化合物活性酶的基因,可能是它们毒力降低的原因。