Bacillus: A Biological Tool for Crop Improvement through Bio-Molecular Changes in Adverse Environments

R Radhakrishnan, A Hashem, EF Abd_Allah - Frontiers in physiology, 2017 - frontiersin.org
Crop productivity is affected by environmental and genetic factors. Microbes that are
beneficial to plants are used to enhance the crop yield and are alternatives to chemical …

[HTML][HTML] Potential use of Bacillus spp. as an effective biostimulant against abiotic stresses in crops—A review

H Etesami, BR Jeong, BR Glick - Current Research in Biotechnology, 2023 - Elsevier
Environmental (abiotic) stresses significantly threaten the worldwide crop production and
food security. Rapid, drastic changes in the global climate have exacerbated such stresses …

PGPR regulate caspase-like activity, programmed cell death, and antioxidant enzyme activity in paddy under salinity

Y Jha, RB Subramanian - Physiology and Molecular Biology of Plants, 2014 - Springer
The response of two root associated bacteria Pseudomonas pseudoalcaligenes and
Bacillus pumilus were studied in the (salt-sensitive) rice GJ17 cultivar to salinity under …

Inoculation with plant growth-promoting bacteria (PGPB) improves salt tolerance of maize seedling

HQ Li, XW Jiang - Russian Journal of Plant Physiology, 2017 - Springer
Our objective was to evaluate the role of plant growth-promoting bacteria to protect maize
(Zea mays L.) plants against salt damage. Bacillus aquimaris DY-3 based on their 16S rDNA …

Influence of Bacillus spp. strains on seedling growth and physiological parameters of sorghum under moisture stress conditions

M Grover, R Madhubala, SZ Ali… - Journal of Basic …, 2014 - Wiley Online Library
Microorganisms isolated from stressed ecosystem may prove as ideal candidates for
development of bio‐inoculants for stressed agricultural production systems. In the present …

[图书][B] Industrially important fungi for sustainable development

AM Abdel-Azeem, AN Yadav, N Yadav, Z Usmani - 2021 - Springer
Fungi are an essential, fascinating, and biotechnologically useful group of organisms with
an incredible biotechnological potential for industrial exploitation. Knowledge of the world's …

[HTML][HTML] Mining of halo-tolerant plant growth promoting rhizobacteria and their impact on wheat (Triticum aestivum L.) under saline conditions

M Babar, S Rasul, K Aslam, R Abbas, I Manzoor… - Journal of King Saud …, 2021 - Elsevier
Plant growth promoting rhizobacteria have the potential to mitigate abiotic stressors to
improve plant productivity. The current study was conducted to isolate and characterize halo …

Boosting the Brassica napus L. tolerance to salinity by the halotolerant strain Pseudomonas stutzeri ISE12

S Szymańska, GB Dąbrowska, J Tyburski… - … and experimental botany, 2019 - Elsevier
Soil salinisation is one of the major pervasive environmental hazards and abiotic stress
factors limiting plant productivity worldwide. Since most of the known crops are susceptible …

[PDF][PDF] Potassium mobilizing bacteria: enhance potassium intake in paddy to regulates membrane permeability and accumulate carbohydrates under salinity stress

Y Jha - Brazilian Journal of Biological Sciences, 2017 - revista.rebibio.net
Potassium is one of the important key elements in terms of quantitative plant requirement.
Although it is abundant in soils, in both organic and inorganic forms, but its availability is …

[PDF][PDF] Alleviation of salt stress on wheat (Triticum aestivum L.) by plant growth promoting bacteria strains Bacillus halotolerans MSR-H4 and Lelliottia amnigena MSR …

I El-Akhdar, T Elsakhawy, HA Abo-Koura - J. Adv. Microbiol, 2020 - academia.edu
The plant growth-promoting rhizobacteria (PGPR) application could reduce the use of
synthetic fertilizers and increase the sustainability of crop production. Halophilic bacteria that …