Publications by authors named "I V Maksimov"

Article Synopsis
  • SnTox1 is a virulence factor from a fungal pathogen that interacts with a host gene in a way that leads to leaf necrosis in susceptible wheat types.
  • The study investigates how SnTox1 affects plant hormonal pathways, specifically focusing on salicylic acid (SA), jasmonic acid (JA), and ethylene during pathogen infection.
  • Findings indicate that SnTox1 disrupts the interaction between SA and JA/ethylene pathways, enhancing susceptibility while suppressing resistance mechanisms in wheat, revealing new insights into how this effector manipulates plant immunity.
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Beneficial endophytic bacteria can suppress the development of insect pests through direct antagonism, with the help of metabolites, or indirectly by the induction of systemic resistance through the regulation of hormonal signaling pathways. Lipopeptides are bacterial metabolites that exhibit direct antagonistic activity against many organisms, including insects. Also, lipopeptides are able to trigger induced systemic resistance (ISR) in plants against harmful organisms, but the physiological mechanisms of their action are just beginning to be studied.

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Cytokinins (CKs) and abscisic acid (ABA) play an important role in the life of both plants and pathogenic fungi. However, the role of CKs and ABA in the regulation of fungal growth, development and virulence has not been sufficiently studied. We compared the ability of two virulent isolates (SnB and Sn9MN-3A) and one avirulent isolate (Sn4VD) of the pathogenic fungus Berk.

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At present, the National Metrology Institute of Japan provides six national primary pH buffers under the Japan Calibration Service System. Each batch of these buffers is certified by the primary pH method using a Harned cell. On the basis of these primary buffers, the designated laboratories supply the secondary and working pH standards using a high-precision pH meter.

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RNA interference is a gene silencing mechanism that plays an important role in genetic regulation in a number of eukaryotes. Argonaute (AGO) proteins are central to the complex RNA interference system. However, their role in this mechanism, both in the host plant organism and in the pathogen, has not yet been fully elucidated.

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