Published in Sci Rep on January 22, 2016
A Novel Meloidogyne incognita Effector Misp12 Suppresses Plant Defense Response at Latter Stages of Nematode Parasitism. Front Plant Sci (2016) 0.77
The microbe-secreted isopeptide poly-γ-glutamic acid induces stress tolerance in Brassica napus L. seedlings by activating crosstalk between H2O2 and Ca(2). Sci Rep (2017) 0.75
Host-Induced Silencing of Two Pharyngeal Gland Genes Conferred Transcriptional Alteration of Cell Wall-Modifying Enzymes of Meloidogyne incognita vis-à-vis Perturbed Nematode Infectivity in Eggplant. Front Plant Sci (2017) 0.75
A novel Meloidogyne graminicola effector, MgGPP, is secreted into host cells and undergoes glycosylation in concert with proteolysis to suppress plant defenses and promote parasitism. PLoS Pathog (2017) 0.75
RNA Interference: A Novel Source of Resistance to Combat Plant Parasitic Nematodes. Front Plant Sci (2017) 0.75
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The interaction of the novel 30C02 cyst nematode effector protein with a plant β-1,3-endoglucanase may suppress host defence to promote parasitism. J Exp Bot (2012) 0.90
The activation and suppression of plant innate immunity by parasitic nematodes. Annu Rev Phytopathol (2014) 0.90
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The 8D05 parasitism gene of Meloidogyne incognita is required for successful infection of host roots. Phytopathology (2013) 0.88
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Effectors of root sedentary nematodes target diverse plant cell compartments to manipulate plant functions and promote infection. Plant Signal Behav (2013) 0.77