Department of Botany and Plant Pathology, Michigan State University, East Lansing, Michigan 48824-1312.
Plant Physiol. 1988 Jan;86(1):187-91. doi: 10.1104/pp.86.1.187.
A new and simpler purification procedure was developed for host selective toxins from Helminthosporium carbonum race 1. Four analogs or forms of toxin with the same selectivity as the fungus were isolated from culture fluids; two forms (HC toxins III and IV) have not been reported by other workers. Crystals of the major form of toxin (HC toxin I) were recovered in high yields (>80 milligrams per liter of culture fluid) without the use of high performance or preparative thin layer liquid chromatography. ED(50) values, based on inhibition of root growth of susceptible seedlings, for HC toxins I, II, III, and IV were 0.2, 0.4, 2.0, and 20 micrograms per milliliter, respectively. The specific activity of crystalline HC toxin I matched the most active preparation reported previously; the preparation of HC toxin II was more active than that reported previously. Resistant seedlings tolerated 100-fold higher concentrations of each form of toxin than did susceptible seedlings. Hydrolysis of the epoxide group of HC toxin I to a diol destroyed toxicity to susceptible and resistant seedlings. The data suggest that the same mechanisms are affected in resistant and susceptible plants.
一种新的、更简单的从 Helminthosporium carbonum race 1 中宿主选择性毒素的纯化方法得到了发展。从培养液中分离出了四种与真菌具有相同选择性的毒素类似物或形式;其中两种形式(HC 毒素 III 和 IV)尚未被其他研究人员报道。主要形式的毒素(HC 毒素 I)的晶体在没有使用高效或制备性薄层层析的情况下以高产率(>80 毫克/升培养液)回收。基于对敏感幼苗根生长抑制的 ED(50)值,HC 毒素 I、II、III 和 IV 的值分别为 0.2、0.4、2.0 和 20 微克/毫升。结晶 HC 毒素 I 的比活性与之前报道的最活跃制剂相匹配;HC 毒素 II 的制剂比之前报道的更活跃。抗性幼苗能耐受每种毒素形式的浓度比敏感幼苗高 100 倍。HC 毒素 I 的环氧化物基团水解为二醇会破坏对敏感和抗性幼苗的毒性。数据表明,抗性和敏感植物受到相同机制的影响。