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ACTTS3 编码一种聚酮合酶,对于Alternaria alternata 蜜橘专化型中 ACT-毒素的生物合成和致病性是必需的。

ACTTS3 encoding a polyketide synthase is essential for the biosynthesis of ACT-toxin and pathogenicity in the tangerine pathotype of Alternaria alternata.

机构信息

Faculty of Agriculture and Gene Research Center, Kagawa University, Miki, Kagawa, Japan.

出版信息

Mol Plant Microbe Interact. 2010 Apr;23(4):406-14. doi: 10.1094/MPMI-23-4-0406.

Abstract

The tangerine pathotype of Alternaria alternata produces host-selective ACT-toxin and causes Alternaria brown spot disease of tangerine and tangerine hybrids. Sequence analysis of a genomic BAC clone identified part of the ACT-toxin TOX (ACTT) gene cluster, and knockout experiments have implicated several open reading frames (ORF) contained within the cluster in the biosynthesis of ACT-toxin. One of the ORF, designated ACTTS3, encoding a putative polyketide synthase, was isolated by rapid amplification of cDNA ends and genomic/reverse transcription-polymerase chain reactions using the specific primers designed from the BAC sequences. The 7,374-bp ORF encodes a polyketide synthase with putative beta-ketoacyl synthase, acyltransferase, methyltransferase, beta-ketoacyl reductase, and phosphopantetheine attachment site domains. Genomic Southern blots demonstrated that ACTTS3 is present on the smallest chromosome in the tangerine pathotype of A. alternata, and the presence of ACTTS3 is highly correlated with ACT-toxin production and pathogenicity. Targeted gene disruption of two copies of ACTTS3 led to a complete loss of ACT-toxin production and pathogenicity. These results indicate that ACTTS3 is an essential gene for ACT-toxin biosynthesis in the tangerine pathotype of A. alternata and is required for pathogenicity of this fungus.

摘要

橘生炭疽菌Alternaria alternata 的橘生炭疽菌型产生对宿主具有选择性的 ACT-毒素,并导致橘和橘杂交品种的炭疽病。对基因组 BAC 克隆的序列分析鉴定了 ACT-毒素 TOX (ACTT)基因簇的一部分,敲除实验表明簇内的几个开放阅读框 (ORF)参与了 ACT-毒素的生物合成。从 BAC 序列设计的特异性引物,通过 cDNA 末端快速扩增和基因组/反转录聚合酶链反应,分离了一个 ORF,命名为 ACTTS3,其编码一个假定的聚酮合酶。该 7374-bp 的 ORF 编码一个具有假定的β-酮酰基合酶、酰基转移酶、甲基转移酶、β-酮酰基还原酶和磷酸泛酰巯基乙胺连接酶结构域的聚酮合酶。基因组 Southern 印迹表明 ACTTS3 存在于橘生炭疽菌 A. alternata 的最小染色体上,ACTTS3 的存在与 ACT-毒素的产生和致病性高度相关。靶向基因敲除两个 ACTTS3 拷贝导致 ACT-毒素产生和致病性完全丧失。这些结果表明,ACTTS3 是橘生炭疽菌 A. alternata 中 ACT-毒素生物合成的必需基因,也是该真菌致病性所必需的。

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