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在无青枯病(茄科劳尔氏菌)情况下,用拟南芥EFR受体转化的抗性马铃薯基因型的田间表现。

Field Performance of Resistant Potato Genotypes Transformed with the EFR Receptor from Arabidopsis thaliana in the Absence of Bacterial Wilt (Ralstonia solanacearum).

作者信息

Dalla-Rizza Marco, Schvartzman Claudia, Murchio Sara, Berrueta Cecilia, Boschi Federico, Menoni Mariana, Lenzi Alberto, Gimenez Gustavo

机构信息

Unidad de Biotecnología, Instituto Nacional de Investigación Agropecuaria, Canelones, CP 90100, Uruguay.

Programa de Producción Hortícola, Instituto Nacional de Investigación Agropecuaria, Canelones, CP 90100, Uruguay.

出版信息

Plant Pathol J. 2022 Jun;38(3):239-247. doi: 10.5423/PPJ.OA.01.2022.0008. Epub 2022 Jun 1.

DOI:10.5423/PPJ.OA.01.2022.0008
PMID:35678057
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9343904/
Abstract

Bacterial wilt caused by the pathogen Ralstonia solanacearum is a devastating disease of potato crops. Harmonizing immunity to pathogens and crop yield is a balance between productive, economic, and environmental interests. In this work, the agronomic performance of two events of potato cultivar INIA Iporá expressing the Arabidopsis thaliana EFR gene (Iporá EFR 3 and Iporá EFR 12) previously selected for their high resistance to bacterial wilt was evaluated under pathogen-free conditions. During two cultivation cycles, the evaluated phenotypic characteristics were emergence, beginning of flowering, vigor, growth, leaf morphology, yield, number and size of tubers, analyzed under biosecurity standards. The phenotypic characteristics evaluated did not show differences, except in the morphology of the leaf with a more globose appearance and a shortening of the rachis in the transformation events with respect to untransformed Iporá. The Iporá EFR 3 genotype showed a ~40% yield decrease in reference to untransformed Iporá in the two trials, while Iporá EFR 12 did not differ statistically from untransformed Iporá. Iporá EFR 12 shows performance stability in the absence of the pathogen, compared to the untransformed control, positioning it as an interesting candidate for regions where the presence of the pathogen is endemic and bacterial wilt has a high economic impact.

摘要

由青枯雷尔氏菌引起的青枯病是马铃薯作物的一种毁灭性病害。协调对病原体的抗性和作物产量是生产、经济和环境利益之间的一种平衡。在这项研究中,在无菌条件下评估了两个表达拟南芥EFR基因的马铃薯品种INIA Iporá事件(Iporá EFR 3和Iporá EFR 12)的农艺性能,这两个事件先前因其对青枯病的高抗性而被选中。在两个种植周期中,根据生物安全标准分析了所评估的表型特征,包括出苗、开花初期、活力、生长、叶片形态、产量、块茎数量和大小。除了在转化事件中叶片形态更呈球形且叶轴缩短,与未转化的Iporá相比,所评估的表型特征没有差异。在两次试验中,Iporá EFR 3基因型相对于未转化的Iporá产量下降了约40%,而Iporá EFR 12与未转化的Iporá在统计学上没有差异。与未转化的对照相比,Iporá EFR 12在没有病原体的情况下表现出性能稳定性,使其成为病原体流行且青枯病具有高经济影响的地区的一个有吸引力的候选品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ab/9343904/c761645a2582/ppj-oa-01-2022-0008f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ab/9343904/6817f1808d1e/ppj-oa-01-2022-0008f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ab/9343904/da9245e40dd3/ppj-oa-01-2022-0008f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ab/9343904/c761645a2582/ppj-oa-01-2022-0008f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ab/9343904/6817f1808d1e/ppj-oa-01-2022-0008f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ab/9343904/da9245e40dd3/ppj-oa-01-2022-0008f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ab/9343904/c761645a2582/ppj-oa-01-2022-0008f3.jpg

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本文引用的文献

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The Arabidopsis pattern recognition receptor EFR enhances fire blight resistance in apple.拟南芥模式识别受体EFR增强苹果对火疫病的抗性。
Hortic Res. 2021 Sep 1;8(1):204. doi: 10.1038/s41438-021-00639-3.
2
Targeted DNA insertion in plants.植物的靶向 DNA 插入。
Proc Natl Acad Sci U S A. 2021 Jun 1;118(22). doi: 10.1073/pnas.2004834117. Epub 2021 Apr 30.
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The Arabidopsis immune receptor EFR increases resistance to the bacterial pathogens Xanthomonas and Xylella in transgenic sweet orange.拟南芥免疫受体EFR增强了转基因甜橙对细菌病原体黄单胞菌和木质部菌的抗性。
Plant Biotechnol J. 2021 Jul;19(7):1294-1296. doi: 10.1111/pbi.13629. Epub 2021 Jun 4.
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Intimate Association of PRR- and NLR-Mediated Signaling in Plant Immunity.PRR 和 NLR 介导的信号在植物免疫中的密切关联。
Mol Plant Microbe Interact. 2021 Jan;34(1):3-14. doi: 10.1094/MPMI-08-20-0239-IA. Epub 2020 Dec 2.
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Marker-free carotenoid-enriched rice generated through targeted gene insertion using CRISPR-Cas9.利用 CRISPR-Cas9 靶向基因插入技术生产无标记富类胡萝卜素的水稻。
Nat Commun. 2020 Mar 4;11(1):1178. doi: 10.1038/s41467-020-14981-y.
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Genetic modification to improve disease resistance in crops.基因改良以提高作物的抗病性。
New Phytol. 2020 Jan;225(1):70-86. doi: 10.1111/nph.15967. Epub 2019 Jul 11.
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Genetic Engineering for Disease Resistance in Plants: Recent Progress and Future Perspectives.植物的抗病性遗传工程:最新进展和未来展望。
Plant Physiol. 2019 May;180(1):26-38. doi: 10.1104/pp.18.01224. Epub 2019 Mar 13.
8
Expression of the Arabidopsis thaliana immune receptor EFR in Medicago truncatula reduces infection by a root pathogenic bacterium, but not nitrogen-fixing rhizobial symbiosis.拟南芥免疫受体 EFR 在蒺藜苜蓿中的表达降低了根致病性细菌的感染,但不影响固氮根瘤菌共生。
Plant Biotechnol J. 2019 Mar;17(3):569-579. doi: 10.1111/pbi.12999. Epub 2018 Sep 13.
9
Transgenic Expression of EFR and Bs2 Genes for Field Management of Bacterial Wilt and Bacterial Spot of Tomato.转 EFR 和 Bs2 基因对番茄青枯病和斑点病的田间管理。
Phytopathology. 2018 Dec;108(12):1402-1411. doi: 10.1094/PHYTO-12-17-0424-R. Epub 2018 Oct 24.
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Balancing Immunity and Yield in Crop Plants.在作物中平衡免疫和产量。
Trends Plant Sci. 2017 Dec;22(12):1069-1079. doi: 10.1016/j.tplants.2017.09.010. Epub 2017 Oct 14.