Roles of Plant Growth-Promoting Rhizobacteria (PGPR) in Stimulating Salinity Stress Defense in Plants: A Review
Роль ризобактерий, стимулирующих рост растений (PGPR), в активации защиты растений от солевого стресса: обзор
2021-03-19
SCID: 54.1/y37evhs6
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antioxidants and osmolytesgreen bioinoculantsplant growth-promoting rhizobacteriasalinity stressseed biopriming
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Abstract (AI)
To date, soil salinity becomes a huge obstacle for food production worldwide since salt stress is one of the major factors limiting agricultural productivity. It is estimated that a significant loss of crops (20-50%) would be due to drought and salinity. To embark upon this harsh situation, numerous strategies such as plant breeding, plant genetic engineering, and a large variety of agricultural practices including the applications of plant growth-promoting rhizobacteria (PGPR) and seed biopriming technique have been developed to improve plant defense system against salt stress, resulting in higher crop yields to meet human's increasing food demand in the future. In the present review, we update and discuss the advantageous roles of beneficial PGPR as green bioinoculants in mitigating the burden of high saline conditions on morphological parameters and on physio-biochemical attributes of plant crops via diverse mechanisms. In addition, the applications of PGPR as a useful tool in seed biopriming technique are also updated and discussed since this approach exhibits promising potentials in improving seed vigor, rapid seed germination, and seedling growth uniformity. Furthermore, the controversial findings regarding the fluctuation of antioxidants and osmolytes in PGPR-treated plants are also pointed out and discussed.
Key Findings
1
PGPR applications in seed biopriming can improve seed vigor, accelerate germination, and promote more uniform seedling growth under saline conditions.
2
Soil salinity is a major global constraint on agricultural productivity, with drought and salinity estimated to cause 20–50% of crop losses.
3
The review highlights contradictory findings concerning antioxidant and osmolyte fluctuations in PGPR-treated plants, indicating unresolved responses to salinity mitigation.
4
The review synthesizes evidence that plant growth-promoting rhizobacteria function as green bioinoculants mitigating salinity impacts on plant morphology and physio-biochemical traits through diverse mechanisms.
Research Object
Crop plants exposed to salinity stress and treated with plant growth-promoting rhizobacteria (PGPR), including PGPR-based seed biopriming
Research Subject
The roles and mechanisms of PGPR in mitigating salinity-induced damage and improving plant morphology, physiological and biochemical traits, seed vigor, germination, seedling uniformity, antioxidant and osmolyte responses, and crop yield
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2021-03-19
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