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组织特异性和病原体诱导型表达一种融合蛋白,该融合蛋白含有一种镰刀菌特异性抗体和一种真菌几丁质酶,可保护小麦免受镰刀菌病原体和真菌毒素的侵害。

Tissue-specific and pathogen-inducible expression of a fusion protein containing a Fusarium-specific antibody and a fungal chitinase protects wheat against Fusarium pathogens and mycotoxins.

机构信息

Molecular Biotechnology Laboratory of Triticeae Crops, Huazhong Agricultural University, Wuhan, China.

College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.

出版信息

Plant Biotechnol J. 2015 Jun;13(5):664-74. doi: 10.1111/pbi.12289. Epub 2014 Nov 21.

Abstract

Fusarium head blight (FHB) in wheat and other small grain cereals is a globally devastating disease caused by toxigenic Fusarium pathogens. Controlling FHB is a challenge because germplasm that is naturally resistant against these pathogens is inadequate. Current control measures rely on fungicides. Here, an antibody fusion comprised of the Fusarium spp.-specific recombinant antibody gene CWP2 derived from chicken, and the endochitinase gene Ech42 from the biocontrol fungus Trichoderma atroviride was introduced into the elite wheat cultivar Zhengmai9023 by particle bombardment. Expression of this fusion gene was regulated by the lemma/palea-specific promoter Lem2 derived from barley; its expression was confirmed as lemma/palea-specific in transgenic wheat. Single-floret inoculation of independent transgenic wheat lines of the T3 to T6 generations revealed significant resistance (type II) to fungal spreading, and natural infection assays in the field showed significant resistance (type I) to initial infection. Gas chromatography-mass spectrometry analysis revealed marked reduction of mycotoxins in the grains of the transgenic wheat lines. Progenies of crosses between the transgenic lines and the FHB-susceptible cultivar Huamai13 also showed significantly enhanced FHB resistance. Quantitative real-time PCR analysis revealed that the tissue-specific expression of the antibody fusion was induced by salicylic acid drenching and induced to a greater extent by F. graminearum infection. Histochemical analysis showed substantial restriction of mycelial growth in the lemma tissues of the transgenic plants. Thus, the combined tissue-specific and pathogen-inducible expression of this Fusarium-specific antibody fusion can effectively protect wheat against Fusarium pathogens and reduce mycotoxin content in grain.

摘要

小麦和其他小谷物的镰刀菌顶腐病(FHB)是一种由产毒镰刀菌病原体引起的全球性破坏性疾病。控制 FHB 是一个挑战,因为对这些病原体具有天然抗性的种质资源不足。目前的控制措施依赖于杀菌剂。在这里,一种由鸡源 Fusarium spp.特异性重组抗体基因 CWP2 和生防真菌拟康氏木霉内切几丁质酶基因 Ech42 组成的抗体融合物,通过粒子轰击被引入到优质小麦品种郑麦 9023 中。该融合基因的表达受大麦衍生的颖片特异性启动子 Lem2 调控;在转基因小麦中证实其表达具有颖片特异性。T3 到 T6 代的独立转基因小麦系的单小花接种显示出对真菌扩散的显著抗性(II 型),田间自然感染试验显示出对初始感染的显著抗性(I 型)。气相色谱-质谱分析显示,转基因小麦系的谷物中真菌毒素明显减少。转基因系与 FHB 易感品种花麦 13 的杂交后代也表现出显著增强的 FHB 抗性。定量实时 PCR 分析显示,该抗体融合物的组织特异性表达被水杨酸浸种诱导,并且受禾谷镰刀菌感染诱导的程度更大。组织化学分析显示,转基因植物的颖片中菌丝生长受到很大限制。因此,这种镰刀菌特异性抗体融合物的组合组织特异性和病原体诱导表达可以有效地保护小麦免受镰刀菌病原体的侵害,并降低谷物中的真菌毒素含量。

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