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首页> 外文期刊>Molecular Plant-Microbe Interactions >A Polyketide Synthase Gene, ACRTS2, Is Responsible for Biosynthesis of Host-Selective ACR-Toxin in the Rough Lemon Pathotype of Alternaria alternata
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A Polyketide Synthase Gene, ACRTS2, Is Responsible for Biosynthesis of Host-Selective ACR-Toxin in the Rough Lemon Pathotype of Alternaria alternata

机译:聚酮化合物合酶基因,ACRTS2,负责生物的链格孢菌粗糙柠檬病原体中的宿主选择性ACR毒素的生物合成。

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The rough lemon pathotype of Alternaria alternata produces host-selective ACR-toxin and causes Alternaria leaf spot disease of rough lemon (Citrus jambhiri). The structure of ACR-toxin I (MW = 496) consists of a polyketide with an α-dihydropyrone ring in a 19-carbon polyalcohol. Genes responsible for toxin production were localized to a 1.5-Mb chromosome in the genome of the rough lemon pathotype. Sequence analysis of this chromosome revealed an 8,338-bp open reading frame, ACRTS2, that was present only in the genomes of ACR-toxin-producing isolates. ACRTS2 is predicted to encode a putative polyketide synthase of 2,513 amino acids and belongs to the fungal reducing type I polyketide synthases. Typical polyketide functional domains were identified in the predicted amino acid sequence, including β-ketoacyl synthase, acyl transferase, methyl transferase, dehydratase, β-ketoreductase, and phosphopantetheine attachment site domains. Combined use of homologous recombination-mediated gene disruption and RNA silencing allowed examination of the functional role of multiple paralogs in ACR-toxin production. ACRTS2 was found to be essential for ACR-toxin production and pathogenicity of the rough lemon pathotype of A. alternata.
机译:链格孢菌的柠檬异型会产生宿主选择性ACR毒素,并导致粗柠檬链霉病(柠檬)。 ACR毒素I(MW = 496)的结构由在19碳多元醇中带有α-二氢吡喃酮环的聚酮化合物组成。负责产生毒素的基因位于柠檬异型的基因型中的1.5 Mb染色体上。此染色体的序列分析显示了一个8338 bp的开放阅读框ACRTS2,该框仅存在于产生ACR毒素的分离株的基因组中。预计ACRTS2编码2513个氨基酸的假定聚酮化合物合酶,属于真菌还原性I型聚酮化合物合酶。在预测的氨基酸序列中鉴定出典型的聚酮化合物功能域,包括β-酮酰基合酶,酰基转移酶,甲基转移酶,脱水酶,β-酮还原酶和磷酸泛肽附着位点域。同源重组介导的基因破坏和RNA沉默的组合使用允许检查多个旁系同源物在ACR毒素产生中的功能作用。发现ACRTS2对于ACR毒素的产生和交链曲霉的大致柠檬病原体的致病性至关重要。

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