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Comparison of the Ability of Partially N-Acetylated Chitosans and Chitooligosaccharides to Elicit Resistance Reactions in Wheat Leaves

机译:部分N-乙酰化的能力比较 壳聚糖和壳寡糖对体内抗性反应的影响。 小麦叶

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摘要

Chitin, a linear polysaccharide composed of (1→4)-linked 2-acetamido-2-deoxy-β-d-glucopyranose (GlcNAc) residues, and chitosan, the fully or partially N-acetylated, water-soluble derivative of chitin composed of (1→4)-linked GlcNAc and 2-amino-2-deoxy-β-d-glucopyranose (GlcN), have been proposed as elicitors of defense reactions in higher plants. We tested and compared the ability of purified (1→4)-linked oligomers of GlcNAc (tetramer to decamer) and of GlcN (pentamer and heptamer) and partially N-acetylated chitosans with degrees of acetylation (DA) of 1%, 15%, 35%, 49%, and 60% and average degrees of polymerization between 540 and 1100 to elicit phenylalanine ammonia-lyase (PAL) and peroxidase (POD) activities, lignin deposition, and microscopically and macroscopically visible necroses when injected into the intercellular spaces of healthy, nonwounded wheat (Triticum aestivum L.) leaves. Purified oligomers of (1→4)-linked GlcN were not active as elicitors, whereas purified oligomers of (1→4)-linked GlcNAc with a degree of polymerization ≥ 7 strongly elicited POD activities but not PAL activities. Partially N-acetylated, polymeric chitosans elicited both PAL and POD activities, and maximum elicitation was observed with chitosans of intermediate DAs. All chitosans but not the chitin oligomers induced the deposition of lignin, the appearance of necrotic cells exhibiting yellow autofluorescence under ultraviolet light, and macroscopically visible necroses; those with intermediate DAs were most active. These results suggest that different mechanisms are involved in the elicitation of POD activities by GlcNAc oligomers, and of PAL and POD activities by partially N-acetylated chitosan polymers and that both enzymes have to be activated for lignin biosynthesis and ensuing necrosis to occur.
机译:几丁质,一种线性多糖,由(1→4)连接的2-乙酰氨基-2-脱氧-β-d-吡喃葡萄糖(GlcNAc)残基和壳聚糖组成,壳聚糖是一种完全或部分被N-乙酰化的几丁质水溶性衍生物(1→4)-连接的GlcNAc和2-氨基-2-脱氧-β-d-吡喃葡萄糖(GlcN)已被提出作为高等植物防御反应的引发剂。我们测试并比较了纯化的(1→4)连接的GlcNAc(四聚体到十聚体)和GlcN(五聚体和七聚体)和部分N-乙酰化的壳聚糖的低聚物的乙酰化度(DA)为1%,15%在540和1100之间有35%,49%和60%的平均聚合度,当注入细胞间隙时会引起苯丙氨酸解氨酶(PAL)和过氧化物酶(POD)活性,木质素沉积以及在显微镜和肉眼可见的坏死健康,未受伤的小麦(Triticum aestivum L.)叶片。 (1→4)-连接的GlcN的纯化的寡聚物作为激发子没有活性,而纯化的 (1→4)-连接的GlcNAc的低聚物,具有聚合度 ≥7强烈引起POD活动,但不引起PAL活动。部分地 N-乙酰化的聚合壳聚糖同时引起PAL和 POD活性和壳聚糖的最大诱导被观察到 中间DA。所有的壳聚糖,但不是几丁质寡聚体 木质素的沉积,坏死细胞的外观表现出 在紫外光下宏观上呈黄色自发荧光 可见的坏死;那些具有中等DA的人群最为活跃。这些 结果表明,不同的机制参与了 GlcNAc低聚物和PAL诱导POD活性 N-乙酰化壳聚糖的POD和POD活性 聚合物,木质素必须同时激活这两种酶 生物合成并随后发生坏死。

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