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Impact of Combined Abiotic and Biotic Stresses on Plant Growth and Avenues for Crop Improvement by Exploiting Physio-morphological Traits

Frontiers in Plant Science · 2017 · Vol. 8 · pp. 537–537
Prachi PandeyVadivelmurugan IrulappanMuthukumar BagavathiannanMuthappa Senthil‐Kumar

Abstract

Global warming leads to the concurrence of a number of abiotic and biotic stresses, thus affecting agricultural productivity. Occurrence of abiotic stresses can alter plant-pest interactions by enhancing host plant susceptibility to pathogenic organisms, insects, and by reducing competitive ability with weeds. On the contrary, some pests may alter plant response to abiotic stress factors. Therefore, systematic studies are pivotal to understand the effect of concurrent abiotic and biotic stress conditions on crop productivity. However, to date, a collective database on the occurrence of various stress combinations in agriculturally prominent areas is not available. This review attempts to assemble published information on this topic, with a particular focus on the impact of combined drought and pathogen stresses on crop productivity. In doing so, this review highlights some agriculturally important morpho-physiological traits that can be utilized to identify genotypes with combined stress tolerance. In addition, this review outlines potential role of recent genomic tools in deciphering combined stress tolerance in plants. This review will, therefore, be helpful for agronomists and field pathologists in assessing the impact of the interactions between drought and plant-pathogens on crop performance. Further, the review will be helpful for physiologists and molecular biologists to design agronomically relevant strategies for the development of broad spectrum stress tolerant crops.

Plant responses to elevated CO2Plant Stress Responses and ToleranceWheat and Barley Genetics and PathologyAbiotic componentAbiotic stressBiologyBiotic stressCrop productivityProductivityCropAgricultureBiotechnologyEcology
Citations
919
FWCI
123.68
field-weighted impact
References
122
Percentile
100%
vs. same field & year
Citations per year
References
Abiotic and biotic stress combinations
New Phytologist · 2014 · 2,026 citations
Abiotic stress, the field environment and stress combination
Trends in Plant Science · 2005 · 3,002 citations
Root traits contributing to plant productivity under drought
Frontiers in Plant Science · 2013 · 1,526 citations
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