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Divergence of Phyllosphere Microbial Communities Between Females and Males of the Dioecious Populus cathayana

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (4)

Females and males of dioecious plants have evolved sex-specific characteristics in terms of their morphological and physiological properties. However,......

Wheat Thioredoxin (TaTrxh1) Associates With RD19-Like Cysteine Protease TaCP1 to Defend Against Stripe Rust Fungus Through Modulation of Programmed Cell Death

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (4)

Thioredoxins (Trxs) function within the antioxidant network through modulation of one or more redox reactions involved in oxidative-stress signaling. ......

Proteomic Analysis of Potato Responding to the Invasion of Ralstonia solanacearum UW551 and Its Type III Secretion System Mutant

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (4)

The infection of potato with Ralstonia solanacearum UW551 gives rise to bacterial wilt disease via colonization of roots. The type III secretion syste......

TRAPPC13 Is a Novel Target of Mesorhizobium amorphae Type III Secretion System Effector NopP

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (5)

Similar to pathogenic bacteria, rhizobia can inject effector proteins into host cells directly to promote infection via the type III secretion system ......

Complete Genome Sequence Data of Rare Actinomycetes Strain Saccharothrix texasensis 6-C, a Biological Control Agent for Potato Late Blight

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (5)

A rare actinomycetes strain of Saccharothrix texasensis, strain 6-C, has been isolated from the potato rhizosphere and it was shown to act as a biolog......

A Seed Mucilage-Degrading Fungus Fromthe Rhizosphere Strengthens the Plant-Soil-Microbe Continuum and Potentially Regulates Root Nutrients of a Cold Desert Shrub

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (5)

Seed mucilage plays important roles in the adaptation of desert plants to the stressful environment. Artemisia sphaerocephala is an important pioneer ......

The CHY-Type Zinc Finger Protein FgChy1 Regulates Polarized Growth, Pathogenicity, and Microtubule Assembly in Fusarium graminearum

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (4)

Microtubules (MTs), as transport tracks, play important roles in hyphal-tip growth in filamentous fungi, but MT-associated proteins involved in polari......

Maintaining Symbiotic Homeostasis: How Do Plants Engage With Beneficial Microorganisms While at the Same Time Restricting Pathogens?

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (5)

That plants recruit beneficial microbes while simultaneously restricting pathogens is critical to their survival. Plants must exclude pathogens; howev......

Investigating the Involvement of Cytoskeletal Proteins MreB and FtsZ in the Origin of Legume-Rhizobial Symbiosis

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (5)

Rhizobia are rod-shaped bacteria that form nitrogen-fixing root nodules on leguminous plants; however, they don't carry MreB, a key determinant of rod......

Evolution and Regulation of a Large Effector Family of Pyricularia oryzae

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (3)

Plant pathogen effectors play important roles in parasitism, including countering plant immunity. However, investigations of the emergence and diversi......

The Cotton Lignin Biosynthetic Gene Gh4CL30 Regulates Lignification and Phenolic Content and Contributes to Verticillium Wilt Resistance

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (3)

Verticillium wilt is a vascular disease causing tremendous damage to cotton production worldwide. However, our knowledge of the mechanisms of cotton r......

Integrated mRNA and Small RNA Sequencing for Analyzing Leaf Spot Pathogen Didymella segeticola and Its Host, Tea (Camellia sinensis), During Infection

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (1)

Leaf spot on tea plants (Camellia sinensis [L.] Kuntze), caused by the fungus Didymella segeticola (Q. Chen) Q. Chen, Crous & L. Cai (syn. Phoma s......

Genome Sequence Resource for Colletotrichum scovillei, the Cause of Anthracnose Disease of Chili

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (1)

Colletotrichum species cause anthracnose disease on the economically important spice crop chili. A total of 24 Colletotrichum species are known to inf......

Transcriptome Analysis of the Grape-Elsinoe ampelina Pathosystem Reveals Novel Effectors and a Robust Defense Response

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (1)

Elsinoe ampelina is an ascomycetous fungus that causes grape anthracnose, a potentially devastating disease worldwide. In this study, a dual RNA-seq a......

Genome Sequencing of Ciboria shiraiana Provides Insights into the Pathogenic Mechanisms of Hypertrophy Sorosis Scleroteniosis

期刊: MOLECULAR PLANT-MICROBE INTERACTIONS, 2021; 34 (1)

Ciboria shiraiana causes hypertrophy sorosis scleroteniosis in mulberry trees, resulting in huge economic losses, and exploring its pathogenic mechani......

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