Overview of biofertilizers in crop production and stress management for sustainable agriculture

P Chaudhary, S Singh, A Chaudhary… - Frontiers in Plant …, 2022 - frontiersin.org
With the increase in world population, the demography of humans is estimated to be
exceeded and it has become a major challenge to provide an adequate amount of food …

Bacterial indole-3-acetic acid: A key regulator for plant growth, plant-microbe interactions, and agricultural adaptive resilience

H Etesami, BR Glick - Microbiological Research, 2024 - Elsevier
Abstract Indole-3-acetic acid (IAA), a fundamental phytohormone categorized under auxins,
not only influences plant growth and development but also plays a critical role in plant …

Metal-tolerant and siderophore producing Pseudomonas fluorescence and Trichoderma spp. improved the growth, biochemical features and yield attributes of …

A Syed, AM Elgorban, AH Bahkali, R Eswaramoorthy… - Scientific Reports, 2023 - nature.com
Industrialization and human urbanization have led to an increase in heavy metal (HM)
pollution which often cause negative/toxic effect on agricultural crops. The soil-HMs cannot …

[HTML][HTML] Interactions between beneficial soil microorganisms (PGPR and AMF) and host plants for environmental restoration: A systematic review

M Hnini, K Rabeh, M Oubohssaine - Plant Stress, 2024 - Elsevier
In response to mounting concerns over heavy metal contamination in soils, this review
explores the potential of beneficial soil microorganisms, particularly Plant Growth-Promoting …

Phyto-microbiome to mitigate abiotic stress in crop plants

A Singh, S Mazahar, SS Chapadgaonkar… - Frontiers in …, 2023 - frontiersin.org
Plant-associated microbes include taxonomically diverse communities of bacteria,
archaebacteria, fungi, and viruses, which establish integral ecological relationships with the …

Bioremediation of heavy metals by rhizobacteria

RS Riseh, MG Vazvani, N Hajabdollahi… - Applied Biochemistry and …, 2023 - Springer
Heavy elements accumulate rapidly in the soil due to industrial activities and the industrial
revolution, which significantly impact the morphology, physiology, and yield of crops. Heavy …

N fertilizers promote abscisic acid-catabolizing bacteria to enhance heavy metal phytoremediation from metalliferous soils

Y Zhu, Y Wang, H Zheng, X **ang, H Wang… - Science of the Total …, 2023 - Elsevier
Bacterial-assisted phytoextraction is an attractive strategy to enhance the phytoremediation
efficiency of heavy metal (HM)-contaminated soils. In the present study, we investigated the …

Exploiting the role of plant growth promoting rhizobacteria in reducing heavy metal toxicity of pepper (Capsicum annuum L.)

MT El-Saadony, ESM Desoky, KA El-Tarabily… - … Science and Pollution …, 2024 - Springer
Microorganisms are cost-effective and eco-friendly alternative methods for removing heavy
metals (HM) from contaminated agricultural soils. Therefore, this study aims to identify and …

Response of antioxidant activity, active constituent and rhizosphere microorganisms of Salvia miltiorrhiza to combined application of microbial inoculant, microalgae …

Y Ren, G Wang, Y Su, J Li, H Zhang, J Han - Science of The Total …, 2024 - Elsevier
Salvia miltiorrhiza, a widely used medicinal herb renowned for its properties in promoting
blood circulation, removing blood stasis and alleviating pain, is currently facing quality …

Effect of a native bacterial consortium on growth, yield, and grain quality of durum wheat (Triticum turgidum L. subsp. durum) under different nitrogen rates in the …

AL Ibarra-Villarreal, MF Villarreal-Delgado… - Plant Signaling & …, 2023 - Taylor & Francis
ABSTRACT A field experiment was carried out to quantify the effect of a native bacterial
inoculant on the growth, yield, and quality of the wheat crop, under different nitrogen (N) …