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A cold inducible multidomain cystatin from winter wheat inhibits growth of the snow mold fungus, Microdochium nivale

机译:冬小麦的冷诱导多域半胱氨酸蛋白酶抑制剂抑制雪霉菌Nivale的生长

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A novel cold-induced cystatin cDNA clone (TaMDC1) was isolated from cold acclimated winter wheat crown tissue by using a macroarray-based differential screening method. The deduced amino acid sequence consisted of a putative N-terminal secretory signal peptide of 37 amino acids and a mature protein (mTaMDC1) with a molecular mass of 23 kDa. The mTaMDC1 had a highly conserved N-terminal cystatin domain and a long C-terminal extension containing a second region, which exhibited partial similarity to the cystatin domain. The recombinant mTaMDC1 was purified from Escherichia coli and its cysteine proteinase inhibitory activity against papain was analyzed. The calculated Ki value of 5.8×10−7 M is comparable to those reported for other phytocystatins. Northern and western blot analyses showed elevated expression of TaMDC1 mRNA and protein during cold acclimation of wheat. In addition to cold, accumulation of the TaMDC1 message was induced by other abiotic stresses including drought, salt and ABA treatment. Investigation of in vitro antifungal activity of mTaMDC1 showed strong inhibition on the mycelium growth of the snow mold fungus Microdochium nivale. Hyphae growth was totally inhibited in the presence of 50 μg/ml mTaMDC1 and morphological changes such as swelling, fragmentation and sporulation of the fungus were observed. The mechanisms of the in vitro antifungal effects and the possible involvement of TaMDC1 in cold induced snow mold resistance of winter wheat are discussed.
机译:使用基于宏阵列的差异筛选方法从冷驯化的冬小麦冠冠组织中分离了一种新型的冷诱导的胱抑素cDNA克隆(TaMDC1)。推导的氨基酸序列由一个推定的37个氨基酸的N末端分泌信号肽和一个分子量为23 kDa的成熟蛋白(mTaMDC1)组成。 mTaMDC1具有高度保守的N端半胱氨酸蛋白酶抑制剂结构域和一个长的C端延伸序列,其中包含第二个区域,与第二个区域具有部分相似性。从大肠杆菌中纯化了重组mTaMDC1,并分析了其对木瓜蛋白酶的半胱氨酸蛋白酶抑制活性。计算得出的Ki值为5.8×10-7 M,与其他植物半胱氨酸蛋白酶抑制剂报道的Ki值相当。北方和西方印迹分析表明,小麦冷驯化过程中TaMDC1 mRNA和蛋白的表达升高。除感冒外,其他非生物胁迫(包括干旱,盐和ABA处理)还诱导了TaMDC1信息的积累。对mTaMDC1的体外抗真菌活性的研究表明,对雪地霉菌小孢霉微孢子菌的菌丝体生长有很强的抑制作用。在存在50μg/ ml mTaMDC1的情况下,菌丝的生长被完全抑制,并且观察到了真菌的肿胀,破碎和孢子形成等形态变化。讨论了体外抗真菌作用的机理以及TaMDC1可能参与的冷诱导的冬小麦抗霉菌性。

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