[HTML][HTML] Multifunctional role of Actinobacteria in agricultural production sustainability: A review

K Boubekri, A Soumare, I Mardad, K Lyamlouli… - Microbiological …, 2022 - Elsevier
The growing interest in low-input agriculture in recent years has focused the use of microbial
biofertilizers to improve plant growth and yield through a better mobilization of indigenous …

Salt-tolerant plant growth-promoting bacteria as a versatile tool for combating salt stress in crop plants

X ** with salinity stress
W Fan, Y **ao, J Dong, J **ng, F Tang… - Frontiers in Plant …, 2023 - frontiersin.org
Soil salinization is a global environmental issue and a significant abiotic stress that
threatens crop production. Root-associated rhizosphere microbiota play a pivotal role in …

Deep-sea actinobacteria mitigate salinity stress in tomato seedlings and their biosafety testing

P Rangseekaew, A Barros-Rodríguez, W Pathom-Aree… - Plants, 2021 - mdpi.com
Soil salinity is an enormous problem affecting global agricultural productivity. Deep-sea
actinobacteria are interesting due to their salt tolerance mechanisms. In the present study …

Impacts of salt stress on the rhizosphere and endophytic bacterial role in plant salt alleviation

HB Slama, A Chenari Bouket, FN Alenezi… - International Journal of …, 2023 - mdpi.com
Salinity stress is among the key challenges for sustainable food production. It is continuously
increasing against the backdrop of constant climate change and anthropogenic practices …

Semi-arid-habitat-adapted plant-growth-promoting rhizobacteria allows efficient wheat growth promotion

N Saadaoui, A Silini, H Cherif-Silini, AC Bouket… - Agronomy, 2022 - mdpi.com
Plant-growth-promoting rhizobacteria (PGPR) introduced into agricultural ecosystems
positively affect agricultural production and constitute an ecological method for sustainable …