首页> 外文期刊>Communications in Agricultural and Applied Biological Sciences >Host-pathogen-biocontrol agent interaction as affected by sequential application of Na2CO3 and CaCl2.
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Host-pathogen-biocontrol agent interaction as affected by sequential application of Na2CO3 and CaCl2.

机译:主机-病原体-生物防治剂的相互作用受依次施加Na2CO3和CaCl2的影响。

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Among the alternatives to synthetic postharvest fungicides encouraging results have been reported with biocontrol agents, and on Citrus fruits, their efficacy was improved when co-applied with GRAS compounds or with physical means. Still, the reason for this increased efficacy has not been explained and therefore a study was performed using orange fruit (Citrus sinensis Osbec. cv 'Washington navel') as host, P. digitatum as the pathogen, a yeast (Pichia guiliermondii, isolate 5A) as the biocontrol agent, white 2% Na2CO3 (SC) and 1% CaCl2 were employed as GRAS compounds. When treatments were combined salts were applied sequentially, and SC preceded CaCl2 followed by the yeast. As a result of large scale trait with inoculated and un-inoculated fruit a clear beneficial interaction occurred when treatments were combined. SC exerted a direct fungistatic activity and an indirect one by inducing scoparone in host tissue. Also the isolate A5 induced the phytoalexin accumulation and when combined with SC a greater accumulation occurred within the first 7 days post-treatment. The application of CaCl2 alone had no effect on pathogenesis, while when combined with SC or with the yeast, decay was towered. The yeast growth on an amended medium was negatively affected by the addition of SC; while in vivo this effect was missing. The antagonist growth in vivo was enhanced when applied together with 1% CaCl2 also when applied with SC. The results reported improve our knowledge on the complex interactions among host, pathogen and the antagonist as affected by SC and CaCl2.
机译:在合成的采后杀真菌剂的替代品中,有报道称用生物防治剂可取得令人鼓舞的结果,并且在柑橘类水果上,当与GRAS化合物或物理手段共同使用时,其功效得到改善。仍然没有解释这种功效增加的原因,因此进行了一项研究,其中使用了橙色水果(Citrus sinensis Osbec。cv“华盛顿肚脐”)作为宿主,以指状假单胞菌作为病原体,使用酵母(Pichia guiliermondii,分离株5A)进行了研究。 )作为生物防治剂,白色2%Na2CO3(SC)和1%CaCl2作为GRAS化合物。合并处理后,依次施用盐,SC先于CaCl2,然后再酵母。由于接种和未接种的果实均具有大规模的性状,因此在组合处理后会发生明显的有益相互作用。 SC通过在宿主组织中诱导scoparone发挥直接的抑菌活性和间接的活性。分离物A5还诱导植物抗毒素的积累,当与SC组合时,在处理后的前7天内发生了更大的积累。单独使用CaCl2不会对发病机理产生任何影响,而与SC或酵母菌结合使用时,衰变则更为明显。添加SC会对酵母在改良培养基上的生长产生负面影响;而在体内则没有这种效果。当与1%CaCl2一起使用时,与SC一起使用时,拮抗剂的体内生长也得到增强。报告的结果提高了我们对受SC和CaCl2影响的宿主,病原体和拮抗剂之间复杂相互作用的认识。

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