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黑麦(Secale cereale)种子几丁质酶的抗真菌活性:I类和II类几丁质酶与真菌细胞壁的不同结合方式。

Antifungal activity of rye (Secale cereale) seed chitinases: the different binding manner of class I and class II chitinases to the fungal cell walls.

作者信息

Taira Toki, Ohnuma Takayuki, Yamagami Takeshi, Aso Yoichi, Ishiguro Masatsune, Ishihara Masanobu

机构信息

Department of Bioscience and Biotechnology, Faculty of Agriculture, Ryukyu University, Okinawa, Japan.

出版信息

Biosci Biotechnol Biochem. 2002 May;66(5):970-7. doi: 10.1271/bbb.66.970.

Abstract

The antifungal activities of rye seed chitinase-a (RSC-a, class I) and -c (RSC-c, class II) were studied in detail using two different bioassays with Trichoderma sp. as well as binding and degradation experiments with the cell walls prepared from its mycelia. RSC-a inhibited more strongly the re-extension of the hyphae, containing mainly mature cells, than RSC-c did. Upon incubation of the fungus with fluorescent chitinases, FITC-labeled RSC-a was found to be located in the hyphal tips, lateral walls, and septa, while FITC-labeled RSC-c was only in the hyphal tip. RSC-a had a greater affinity for the cell walls than RSC-c. RSC-a liberated a larger amount of reducing sugar from the cell walls than RSC-c did. These results inferred that RSC-a first binds to the lateral walls and septa, consisting of the mature cell walls, and degrades mature chitin fiber, while RSC-c binds only to the hyphal tip followed by degradation of only nascent chitin. As a result, RSC-a inhibited fungal growth more effectively than RSC-c. Furthermore, it was suggested that the chitin-binding domain in RSC-a assists the antifungal action of RSC-a by binding to the fungal hypha.

摘要

利用针对木霉属真菌的两种不同生物测定法以及对其菌丝体制备的细胞壁进行的结合和降解实验,详细研究了黑麦种子几丁质酶 -a(RSC -a,I类)和 -c(RSC -c,II类)的抗真菌活性。与RSC -c相比,RSC -a对主要包含成熟细胞的菌丝体重新延伸的抑制作用更强。在用荧光几丁质酶孵育真菌后,发现异硫氰酸荧光素(FITC)标记的RSC -a位于菌丝尖端、侧壁和隔膜中,而FITC标记的RSC -c仅位于菌丝尖端。RSC -a对细胞壁的亲和力比RSC -c更大。RSC -a从细胞壁中释放出的还原糖比RSC -c更多。这些结果推断,RSC -a首先与由成熟细胞壁组成的侧壁和隔膜结合,并降解成熟的几丁质纤维,而RSC -c仅与菌丝尖端结合,随后仅降解新生几丁质。因此,RSC -a比RSC -c更有效地抑制真菌生长。此外,有人提出RSC -a中的几丁质结合结构域通过与真菌菌丝结合来辅助RSC -a的抗真菌作用。

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