Marit Lenman
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View article: Late blight field resistance in potatoes carrying <i>Solanum americanum</i> resistance genes (Rpi-amr3 and Rpi-amr1)
Late blight field resistance in potatoes carrying <i>Solanum americanum</i> resistance genes (Rpi-amr3 and Rpi-amr1) Open
Potato (Solanum tuberosum L.) is an important global crop, but its production is severely impacted by late blight, caused by the pathogen Phytophthora infestans. The economic burden of this disease is significant, and current control strat…
View article: CRISPR/Cas9 genome editing of potato <i>St</i>DMR6-1 results in plants less affected by different stress conditions
CRISPR/Cas9 genome editing of potato <i>St</i>DMR6-1 results in plants less affected by different stress conditions Open
Potato is the third most important food crop, but cultivation is challenged by numerous diseases and adverse abiotic conditions. To combat diseases, frequent fungicide application is common. Knocking out susceptibility genes by genome edit…
View article: Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Background Early blight, caused by the necrotrophic fungal pathogen Alternaria solani , is an economically important disease affecting the tuber yield worldwide. The disease is mainly controlled by chemical plant protection agents. However…
View article: Additional file 1 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 1 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 1.
View article: Additional file 6 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 6 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 6.
View article: Additional file 4 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 4 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 4.
View article: Additional file 3 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 3 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 3.
View article: Additional file 7 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 7 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 7.
View article: Additional file 8 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 8 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 8.
View article: Additional file 2 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 2 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 2.
View article: Additional file 5 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 5 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 5.
View article: Additional file 10 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 10 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 10.
View article: Additional file 9 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Additional file 9 of Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Additional file 9.
View article: Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani
Comprehensive transcriptome analysis of different potato cultivars provides insight into early blight disease caused by Alternaria solani Open
Background Early blight disease in potatoes is one of the economically important diseases affecting the tuber yield and quality worldwide. It is caused by the necrotrophic fungal pathogen Alternaria solani. The disease is mainly controlled…
View article: Genetically modified (GM) late blight-resistant potato and consumer attitudes before and after a field visit
Genetically modified (GM) late blight-resistant potato and consumer attitudes before and after a field visit Open
Late blight, caused by Phytophthora infestans, is the most devastating disease in potato production. Here, we show full late blight resistance in a location with a genetically diverse pathogen population with the use of GM potato stacked w…
View article: Corrigendum: Strategies for Efficient Gene Editing in Protoplasts of Solanum tuberosum Theme: Determining gRNA Efficiency Design by Utilizing Protoplast (Research)
Corrigendum: Strategies for Efficient Gene Editing in Protoplasts of Solanum tuberosum Theme: Determining gRNA Efficiency Design by Utilizing Protoplast (Research) Open
[This corrects the article DOI: 10.3389/fgeed.2021.795644.].
View article: Invited Mini-Review Research Topic: Utilization of Protoplasts to Facilitate Gene Editing in Plants: Schemes for In Vitro Shoot Regeneration From Tissues and Protoplasts of Potato and Rapeseed: Implications of Bioengineering Such as Gene Editing of Broad-Leaved Plants
Invited Mini-Review Research Topic: Utilization of Protoplasts to Facilitate Gene Editing in Plants: Schemes for In Vitro Shoot Regeneration From Tissues and Protoplasts of Potato and Rapeseed: Implications of Bioengineering Such as Gene Editing of Broad-Leaved Plants Open
Schemes for efficient regenerationand recovery of shoots from in vitro tissues or single cells, such as protoplasts, are only available for limited numbers of plant species and genotypes and are crucial for establishing gene editing tools …
View article: Strategies for Efficient Gene Editing in Protoplasts of Solanum tuberosum Theme: Determining gRNA Efficiency Design by Utilizing Protoplast (Research)
Strategies for Efficient Gene Editing in Protoplasts of Solanum tuberosum Theme: Determining gRNA Efficiency Design by Utilizing Protoplast (Research) Open
Potato ( Solanum tuberosum ) is a highly diverse tetraploid crop. Elite cultivars are extremely heterozygous with a high prevalence of small length polymorphisms (indels) and single nucleotide polymorphisms (SNPs) within and between cultiv…
View article: Mutations introduced in susceptibility genes through CRISPR/Cas9 genome editing confer increased late blight resistance in potatoes
Mutations introduced in susceptibility genes through CRISPR/Cas9 genome editing confer increased late blight resistance in potatoes Open
The use of pathogen-resistant cultivars is expected to increase yield and decrease fungicide use in agriculture. However, in potato breeding, increased resistance obtained via resistance genes (R-genes) is hampered because R-gene(s) are of…
View article: Tissue Culture and Refreshment Techniques for Improvement of Transformation in Local Tetraploid and Diploid Potato with Late Blight Resistance as an Example
Tissue Culture and Refreshment Techniques for Improvement of Transformation in Local Tetraploid and Diploid Potato with Late Blight Resistance as an Example Open
Potato (Solanum tuberosum) is among the best producers of edible biomass in terms of yield per hectare and a variety of different regional cultivars are used as a staple commodity in many countries. However, this crop is attacked by severa…
View article: Proteomics of PTI and Two ETI Immune Reactions in Potato Leaves
Proteomics of PTI and Two ETI Immune Reactions in Potato Leaves Open
Plants have a variety of ways to defend themselves against pathogens. A commonly used model of the plant immune system is divided into a general response triggered by pathogen-associated molecular patterns (PAMPs), and a specific response …
View article: RNA seq analysis of potato cyst nematode interactions with resistant and susceptible potato roots
RNA seq analysis of potato cyst nematode interactions with resistant and susceptible potato roots Open
Potato cyst nematodes (PCN) are important pests in crop production, especially since they persist in the soil and may affect further potato production for many years. Little is known about putative resistance and susceptibility targets as …
View article: Comparative Membrane-Associated Proteomics of Three Different Immune Reactions in Potato
Comparative Membrane-Associated Proteomics of Three Different Immune Reactions in Potato Open
Plants have evolved different types of immune reactions but large-scale proteomics about these processes are lacking, especially in the case of agriculturally important crop pathosystems. We have established a system for investigating PAMP…