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Plant Disease|January 26, 2019
Biological Control of Meloidogyne incognita by Spore-forming Plant Growth-promoting Rhizobacteria on CottonNi Xiang, Kathy S Lawrence, Joseph W Kloepper, et al.Phytopathology|April 15, 2024
Evaluation of the Genetic Diversity, Haplotype, and Virulence of Fusarium oxysporum f. sp. vasinfectum Field Isolates from AlabamaMiranda Otero, Ambika Pokhrel, Seungyeon Seo, et al.Systematic and Applied Microbiology|January 30, 2025
Flavobacterium plantiphilum sp. nov., Flavobacterium rhizophilum sp. nov., Flavobacterium rhizosphaerae sp. nov., Chryseobacterium terrae sp. nov., and Sphingomonas plantiphila sp. nov. isolated from salty soil showing plant growth promoting potentialPeter Kämpfer, André Lipski, Kathy S Lawrence, et al.Systematic and Applied Microbiology|September 18, 2025
Chryseobacterium hilariae sp. nov., Sphingomonas larreae sp. nov., Sphingomonas astragali sp. nov., Sphingomonas radicis sp. nov., Variovorax stachyos sp. nov., Parapedobacter brassicae sp. nov., Neorhizobium descurainiae sp. nov., and Erwinia artemisiae sp. nov. isolated from dry soils revealing a diverse plant growth promoting potentialPeter Kämpfer, André Lipski, Kathy S Lawrence, et al.Frontiers in Plant Science|December 8, 2025
Approaches to organic sweet potato cultivation: managing nematodes, pests, and soil health with winter cover crops and biopesticidesClaire M Schloemer, Scott H Graham, Koon-Hui Wang, et al.Systematic and Applied Microbiology|May 6, 2026
Pseudomonas corni sp. nov., Pseudomonas oplopanacis sp. nov., Pseudomonas salicis sp. nov., Pseudomonas rosaeacicularis sp. nov., Pseudomonas artemisiae sp. nov., Pseudomonas imperatae sp. nov. and Zestomonas ipomoeae sp. nov., isolated from rhizospheres showing plant growth promoting potentialPeter Kämpfer, André Lipski, Kathy S Lawrence, et al.Plant Disease|January 2, 2025
Identifying the distribution and causal pathogens of blueberry stem blight disease in Alabama and nearby statesAyodele Amodu, Jonathan E Oliver, Kathy S Lawrence, et al.Transgenic Research|June 28, 2022
The heterologous expression of conserved Glycine max (soybean) mitogen activated protein kinase 3 (MAPK3) paralogs suppresses Meloidogyne incognita parasitism in Gossypium hirsutum (upland cotton)Vincent P Klink, Nadim W Alkharouf, Kathy S Lawrence, et al.Plant Physiology and Biochemistry : PPB|June 14, 2024
Glycine max polygalacturonase inhibiting protein 11 (GmPGIP11) functions in the root to suppress Heterodera glycines parasitismSudha Acharya, Hallie A Troell, Rebecca L Billingsley, et al.Plant Science : an International Journal of Experimental Plant Biology|February 21, 2025
Cyclophilin 20-3 coordinates plant root hair growth and resistance against parasitic nematodesSimrandeep Kaur, Ashna Adhikari, Benjamin Welsh, et al.Pageof 5