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Phytoalexin Elicitor Activity of Carbohydrates from Phytophthora megasperma f.sp. glycinea and Other Sources

机译:巨大疫霉(Phytophthora megasperma f.sp.)的碳水化合物的植物抗毒素活性剂活性。甘氨酸和其他来源

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摘要

Three unique classes of carbohydrates were isolated from the hyphal cell walls of Phytophthora megasperma f.sp. glycinea (Pmg) and compared with other substances for their activity as elicitors of the phytoalexin glyceollin in soybean tissues. Glucomannans extracted from cell walls with soybean β-1,3-endoglucanase were purified and proved to be the most active elicitors yet reported. They were approximately 10 times more active in soybean cotyledons than the heterogeneous β-glucan elicitor fraction extracted from Pmg walls. In addition, the glucomannan fraction gave race-specific elicitor activity in soybean hypocotyls. Pronase was found to be a suitable reagent for the mild extraction of glycopeptides from Pmg cell walls. All of the carbohydrates isolated from Pmg cell walls possessed significant elicitor activity, but other glucans, a glucomannan and mannan from other sources, were much less active. Chitin and chitosan, reported to function as elicitors in other plants, had low activity in soybean cotyledons. Arachidonic acid was inactive, despite its previously observed elicitor activity in potato tubers. The results indicated that, for Pmg, the carbohydrate elicitor most probably involved in the initiation of phytoalexinmediated defense during fungus infection of soybean plants is the glucomannan fraction liberated by endoglucanase.
机译:从巨大疫霉菌的菌丝细胞壁中分离出三类独特的碳水化合物。甘氨酸(Pmg)并与其他物质进行比较,以其为大豆组织中植物抗毒素甘油三醇的引发剂。用大豆β-1,3-内切葡聚糖酶从细胞壁提取的葡甘露聚糖被纯化,并被证明是迄今为止报道的最活跃的引发剂。它们在大豆子叶中的活性是从Pmg壁提取的异质β-葡聚糖激发子组分的约10倍。另外,葡甘露聚糖组分在大豆下胚轴中具有种族特异性的激发子活性。发现链霉蛋白酶是从Pmg细胞壁温和提取糖肽的合适试剂。从Pmg细胞壁分离出的所有碳水化合物都具有显着的激发子活性,但是其他葡聚糖,葡甘露聚糖和其他来源的甘露聚糖的活性要低得多。据报道,几丁质和壳聚糖在其他植物中起引发剂的作用,但在大豆子叶中的活性较低。尽管花生四烯酸先前在马铃薯块茎中观察到激发子活性,但花生四烯酸没有活性。结果表明,对于Pmg,在大豆植物的真菌感染过程中最有可能参与植物抗毒素介导的防御的碳水化合物引发剂是由内切葡聚糖酶释放的葡甘露聚糖部分。

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