Plant peptides in plant defense responsescysteine-rich peptidesmicrobial pathogenspeptide receptorplant defense responsesplant peptidesmall posttranslationally modified peptidesPlant peptides secreted as signal molecular to tridoi:10.1080/15592324.2018.1475175Hu Z.Zhang H.Shi K.Plant Signaling & Behavior...
Plants cannot move to escape environmental challenges. Biotic stresses result from a battery of potential pathogens: fungi, bacteria, nematodes and insects intercept the photosynthate produced by plants, and viruses use replication machinery at the host's expense. Plants, in turn, have evolved sophisti...
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Plant elicitor peptides (Peps) are endogenous molecules that induce and amplify the first line of inducible plant defense, known as pattern-triggered immunity, contributing to protect plants against attack by bacteria, fungi and herbivores. Pep topic application and transgenic expression have been found...
In nature, plants are continuously challenged by various pathogens, including bacteria, fungi, and nematodes. To survive or fend off attacks, plants have evolved multi-layered immune systems from recognizing pathogens to activating defense responses. Pattern recognition receptors can perceive “non-self”...
plants must pay defense-associatedfitness costs such as growth inhibition and cell death. Despite its importance,to date only a few components counteracting the SA-primed stress responses havebeen identified in land plants. These include other plant hormones such asjasmonic acid and abscisic acid, an...
Stimulation of plant defense responses through signaling pathways in endophytic bacteria has been reported by Montejano-Ramírez et al. (2020). The authors investigated the antifungal compound (N, N-dimethyl hexadecyl amine) produced by the facultative endophytic bacterium Arthrobacter agilis. This ...
The SA receptor, NPR1, could be a leading regulatory protein implicated in SA-based defense responses in plants (Cao et al., 1997; Kaltdorf and Naseem, 2013). NPR1 may enhance root H+-ATPase activity, control Na+ entry into roots and subsequently transport to shoots, prevent K+ leakage ...
Plants produce an array of peptides as part of their innate defense mechanism against pathogens. The potential use of these peptides for various therapeutic purposes is increasing per diem. In order to excel in this research, the community requires web r
Induced plant defense responses against insect herbivores are triggered by wounding and/or perception of herbivore elicitors from their oral secretions (OS) and/or saliva. In this study, we analyzed OS isolated from two rice chewing herbivores, Mythimna