首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Production of lytic enzymes and siderophores, and inhibition of germination of basidiospores of Moniliophthora (ex Crinipellis) perniciosa by phylloplane actinomycetes
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Production of lytic enzymes and siderophores, and inhibition of germination of basidiospores of Moniliophthora (ex Crinipellis) perniciosa by phylloplane actinomycetes

机译:叶面放线菌抑制裂解酶和铁载体的产生,并抑制多年生Moniliophthora(ex Crinipellis)的担子孢子的萌发

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摘要

Streptomyces albovinaceus, Streptomyces caviscabies, Streptomyces griseus, Streptomyces setonii, and Streptomyces virginiae selected as antagonists of Moniliophthora (ex Crinipellis) perniciosa, the causal agent of cacao Witches' broom, were examined in vitro to detect production of chitinases, o-1,3-glucanases, and cellulases. All the species produced chitinases, but not o-1,3-glucanases or cellulases, when grown on a liquid mineral medium containing glucose, colloidal chitin, or cell walls of M. perniciosa as a carbon source. There were no quantitative differences among species in the production of chitinase, however, the germination inhibition of basidiospores of M. perniciosa was higher when they were cultivated using glucose as a carbon source, followed by colloidal chitin and cell walls. All the species also produced hydroxymate type siderophores in similar quantities, and the quantity of siderophores did not correlate with the inhibition of basidiospore germination. The germination inhibition was more pronounced when S. albovinaceus, S. griseus, and S. virginiae were cultivated on iron-deficient medium, suggesting involvement of siderophores in the antagonism by these species of actinomycetes.
机译:在体外检查了被选为可可女巫扫帚的病原体Moniliophthora(ex Crinipellis)的拮抗物的白链霉菌,caviscabies的链霉菌,灰链霉菌,setonii的链霉菌和维吉尼亚的链霉菌的拮抗剂,以检测出几丁质酶3的产生, -葡聚糖酶和纤维素酶。当在含有葡萄糖,胶体甲壳质或多年生分支杆菌细胞壁作为碳源的液体矿物培养基上生长时,所有物种均产生几丁质酶,但不产生o-1,3-葡聚糖酶或纤维素酶。几丁质酶的生产在物种之间没有数量上的差异,但是,当使用葡萄糖作为碳源,其次是胶体几丁质和细胞壁培养时,多年生分支杆菌的孢子孢子的萌发抑制作用更高。所有物种还产生了类似数量的羟基酸酯型铁载体,并且铁载体的数量与对担子孢子萌发的抑制作用无关。当在缺铁的培养基上培养白糖链霉菌,灰链霉菌和弗吉尼亚链霉菌时,发芽抑制作用更加明显,这表明铁载体参与了这些放线菌物种的拮抗作用。

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