AI Article Synopsis

  • Climatic changes are negatively impacting rice crops due to moisture deficits and pathogen infections, making them vulnerable to diseases like bacterial leaf blight.
  • While drought adaptation and disease resistance have both been studied individually, research on how these stresses interact in rice is still limited.
  • Recent studies indicate that combined drought and pathogen stress hinder carbon assimilation, involving complex cellular mechanisms including various receptors, MAP kinases, and transcription factors that help maintain cellular stability under stress.

Article Abstract

Due to climatic changes, rice crop is affected by moisture deficit stress and pathogens. Tissue water limitation besides reducing growth rates, also renders the crop susceptible to the infection by pv. () that causes bacterial leaf blight. Independently, both drought adaptation and resistance have been extensively studied. Though the cross-talk between drought and stress responses have been explored from individual stress studies, examining the combinatorial stress response is limited in rice. Recently published combined stress studies showed that under the combined stress, maintenance of carbon assimilation is hindered and such response is regulated by overlapping cellular mechanisms that are different from either of the individual stresses. Several receptors, MAP kinases, transcription factors, and ribosomal proteins, are predicted for playing a role in cellular homeostasis and protects cells from combined stress effects. Here we provide a critical analysis of these aspects using information from the recently published combined stress literature. This review is useful for researchers to comprehend combinatorial stress response of rice plants to drought and .

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6415615PMC
http://dx.doi.org/10.3389/fpls.2019.00193DOI Listing

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