Feng Jie, Liu Guosheng, Selvaraj Gopalan, Hughes Geoffrey R, Wei Yangdou
Department of Plant Sciences, University of Saskatchewan, 51 Campus Drive, Saskatoon, SK, Canada S7N 5A8.
Department of Biology, University of Saskatchewan, 112 Science Place, Saskatoon, SK, Canada S7N 5E2.
Microbiology (Reading). 2005 Dec;151(Pt 12):3911-3921. doi: 10.1099/mic.0.28261-0.
A triglyceride lipase gene LIP1 was identified in the genome of Fusarium graminearum strain PH-1. The predicted protein encoded by LIP1 contains 591 amino acid residues with a putative N-terminal signal peptide and shows 57 and 40-44 % identity to a Botrytis cinerea lipase and five Candida rugosa lipases, respectively. Yeast cells overexpressing LIP1 showed lipolytic activity against a broad range of triglyceride substrates. Northern blot analyses revealed that expression of LIP1 was activated in planta during the fungal infection process. LIP1 expression was strongly induced in minimal medium supplemented with wheatgerm oil, but only weakly induced by olive oil and triolein. In contrast, supplementation with other carbon sources, including glucose, sucrose, apple pectin and wheat cell-wall material, did not induce LIP1 expression. Saturated fatty acids were the strongest inducers for LIP1 expression and this induction was suppressed proportionally by the presence of the unsaturated fatty acid. To determine the potential function of LIP1, gene replacement was conducted on strain PH-1. When compared with wild-type PH-1, DeltaLIP1 mutants showed greatly reduced lipolytic activities at the early stage of incubation on minimal medium supplemented with either saturated or unsaturated lipid as the substrate, indicating that LIP1 encodes a secreted lipase for exogenous lipid hydrolysis. Moreover, the DeltaLIP1 mutants exhibited growth deficiency on both liquid and solid minimal media supplemented with the saturated triglyceride tristearin as the sole carbon source, suggesting that LIP1 is required for utilization of this substance. Despite these differences, no variation in disease symptoms between the DeltaLIP1 mutants and the wild-type strain was observed on susceptible cereal hosts.
在禾谷镰刀菌菌株PH-1的基因组中鉴定出一个甘油三酯脂肪酶基因LIP1。LIP1编码的预测蛋白含有591个氨基酸残基,带有一个假定的N端信号肽,与灰葡萄孢脂肪酶和5种皱落假丝酵母脂肪酶的同一性分别为57%和40 - 44%。过表达LIP1的酵母细胞对多种甘油三酯底物表现出脂解活性。Northern印迹分析表明,在真菌感染过程中LIP1的表达在植物体内被激活。LIP1的表达在添加了小麦胚芽油的基本培养基中被强烈诱导,但仅被橄榄油和三油精微弱诱导。相比之下,添加其他碳源,包括葡萄糖、蔗糖、苹果果胶和小麦细胞壁材料,并未诱导LIP1的表达。饱和脂肪酸是LIP1表达的最强诱导剂,而不饱和脂肪酸的存在会按比例抑制这种诱导。为了确定LIP1的潜在功能,对菌株PH-1进行了基因替换。与野生型PH-1相比,DeltaLIP1突变体在以饱和或不饱和脂质为底物的基本培养基上培养早期的脂解活性大大降低,这表明LIP1编码一种用于外源脂质水解的分泌型脂肪酶。此外,DeltaLIP1突变体在以饱和甘油三酯三硬脂酸甘油酯作为唯一碳源的液体和固体基本培养基上均表现出生长缺陷,这表明LIP1是利用该物质所必需的。尽管存在这些差异,但在易感谷物寄主上未观察到DeltaLIP1突变体与野生型菌株之间的病害症状差异。