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乙酰羟酸合酶FgIlv2和FgIlv6参与禾谷镰刀菌的支链氨基酸生物合成、菌丝体和分生孢子形态发生以及完全致病性。

Acetohydroxyacid synthase FgIlv2 and FgIlv6 are involved in BCAA biosynthesis, mycelial and conidial morphogenesis, and full virulence in Fusarium graminearum.

作者信息

Liu Xin, Han Qi, Xu Jianhong, Wang Jian, Shi Jianrong

机构信息

Institute of Food Quality and Safety, Jiangsu Academy of Agricultural Sciences, Jiangsu, China.

State Key Laboratory Breeding Base of Food Quality and Safety in Jiangsu Province, Jiangsu, China.

出版信息

Sci Rep. 2015 Nov 10;5:16315. doi: 10.1038/srep16315.

Abstract

In this study, we characterized FgIlv2 and FgIlv6, the catalytic and regulatory subunits of acetohydroxyacid synthase (AHAS) from the important wheat head scab fungus Fusarium graminearum. AHAS catalyzes the first common step in the parallel pathways toward branched-chain amino acids (BCAAs: isoleucine, leucine, valine) and is the inhibitory target of several commercialized herbicides. Both FgILV2 and FgILV6 deletion mutants were BCAA-auxotrophic and showed reduced aerial hyphal growth and red pigmentation when cultured on PDA plates. Conidial formation was completely blocked in the FgILV2 deletion mutant ΔFgIlv2-4 and significantly reduced in the FgILV6 deletion mutant ΔFgIlv6-12. The auxotrophs of ΔFgIlv2-4 and ΔFgIlv6-12 could be restored by exogenous addition of BCAAs but relied on the designated nitrogen source the medium contained. Deletion of FgILV2 or FgILV6 also leads to hypersensitivity to various cellular stresses and reduced deoxynivalenol production. ΔFgIlv2-4 lost virulence completely on flowering wheat heads, whereas ΔFgIlv6-12 could cause scab symptoms in the inoculated spikelet but lost its aggressiveness. Taken together, our study implies the potential value of antifungals targeting both FgIlv2 and FgIlv6 in F. graminearum.

摘要

在本研究中,我们对来自重要的小麦赤霉病菌禾谷镰刀菌的乙酰羟酸合酶(AHAS)的催化亚基FgIlv2和调节亚基FgIlv6进行了表征。AHAS催化通向支链氨基酸(BCAAs:异亮氨酸、亮氨酸、缬氨酸)的平行途径中的首个共同步骤,并且是几种商业化除草剂的抑制靶点。FgILV2和FgILV6缺失突变体均为BCAA营养缺陷型,在PDA平板上培养时气生菌丝生长减少且色素沉着变红。在FgILV2缺失突变体ΔFgIlv2 - 4中分生孢子形成完全受阻,而在FgILV6缺失突变体ΔFgIlv6 - 12中显著减少。ΔFgIlv2 - 4和ΔFgIlv6 - 12的营养缺陷型可通过外源添加BCAAs恢复,但依赖于培养基中所含的特定氮源。FgILV2或FgILV6的缺失还导致对各种细胞应激的超敏反应以及脱氧雪腐镰刀菌烯醇产量降低。ΔFgIlv2 - 4在开花的小麦穗上完全丧失毒力,而ΔFgIlv6 - 12在接种的小穗中可引起赤霉病症状,但失去了其侵袭性。综上所述,我们的研究表明靶向禾谷镰刀菌中FgIlv2和FgIlv6的抗真菌剂具有潜在价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39fa/4639788/c5a7b88526c9/srep16315-f1.jpg

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