基于优化的原核表达系统,鉴定园艺重要真菌病原体 Botrytis cinerea 的两种 SGNH 家族细胞死亡诱导蛋白。

IF 10.6 Q1 HORTICULTURE Molecular Horticulture Pub Date : 2024-03-07 DOI:10.1186/s43897-024-00086-3
Xiaokang Zhang, Zhanquan Zhang, Tong Chen, Yong Chen, Boqiang Li, Shiping Tian
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引用次数: 0

摘要

灰霉病菌是最具破坏性的植物病原真菌之一,会给园艺作物造成重大损失。作为一种坏死性真菌,B. cinerea 通过杀死寄主细胞来获取养分。分泌的细胞死亡诱导蛋白(CDIPs)在坏死性侵染中起着至关重要的作用,但目前报道的数量有限。为了进行高通量 CDIP 筛选,我们优化了原核表达系统,并将其效率与其他常用蛋白质表达系统进行了比较。优化后的原核表达系统显示出卓越的效果和效率,并被选中用于随后的 CDIP 筛选。筛选系统验证了 55 个候选蛋白,并确定了两个新型 SGNH 家族 CDIP:BcRAE和BcFAT。BcRAE 和 BcFAT 在整个感染过程中都表现出较高的表达水平。针对保守的 Ser 残基的定点突变消除了 BcRAE 和 BcFAT 的细胞死亡诱导活性。此外,BcRAE 和 BcFAT 在植物中的瞬时表达增强了植物对赤霉病菌的抗性,而不会诱导细胞死亡,这与它们的酶活性无关。我们的研究结果为高通量 CDIP 筛选提供了一个高效率的筛选系统,并为进一步研究 B. cinerea 与植物的相互作用提供了新的靶标。
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Characterization of two SGNH family cell death-inducing proteins from the horticulturally important fungal pathogen Botrytis cinerea based on the optimized prokaryotic expression system.

Botrytis cinerea is one of the most destructive phytopathogenic fungi, causing significant losses to horticultural crops. As a necrotrophic fungus, B. cinerea obtains nutrients by killing host cells. Secreted cell death-inducing proteins (CDIPs) play a crucial role in necrotrophic infection; however, only a limited number have been reported. For high-throughput CDIP screening, we optimized the prokaryotic expression system and compared its efficiency with other commonly used protein expression systems. The optimized prokaryotic expression system showed superior effectiveness and efficiency and was selected for subsequent CDIP screening. The screening system verified fifty-five candidate proteins and identified two novel SGNH family CDIPs: BcRAE and BcFAT. BcRAE and BcFAT exhibited high expression levels throughout the infection process. Site-directed mutagenesis targeting conserved Ser residues abolished the cell death-inducing activity of both BcRAE and BcFAT. Moreover, the transient expression of BcRAE and BcFAT in plants enhanced plant resistance against B. cinerea without inducing cell death, independent of their enzymatic activities. Our results suggest a high-efficiency screening system for high-throughput CDIP screening and provide new targets for further study of B. cinerea-plant interactions.

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来源期刊
Molecular Horticulture
Molecular Horticulture horticultural research-
CiteScore
8.00
自引率
0.00%
发文量
24
审稿时长
12 weeks
期刊介绍: Aims Molecular Horticulture aims to publish research and review articles that significantly advance our knowledge in understanding how the horticultural crops or their parts operate mechanistically. Articles should have profound impacts not only in terms of high citation number or the like, but more importantly on the direction of the horticultural research field. Scope Molecular Horticulture publishes original Research Articles, Letters, and Reviews on novel discoveries on the following, but not limited to, aspects of horticultural plants (including medicinal plants): ▪ Developmental and evolutionary biology ▪ Physiology, biochemistry and cell biology ▪ Plant-microbe and plant-environment interactions ▪ Genetics and epigenetics ▪ Molecular breeding and biotechnology ▪ Secondary metabolism and synthetic biology ▪ Multi-omics dealing with data sets of genome, transcriptome, proteome, metabolome, epigenome and/or microbiome. The journal also welcomes research articles using model plants that reveal mechanisms and/or principles readily applicable to horticultural plants, translational research articles involving application of basic knowledge (including those of model plants) to the horticultural crops, novel Methods and Resources of broad interest. In addition, the journal publishes Editorial, News and View, and Commentary and Perspective on current, significant events and topics in global horticultural fields with international interests.
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