Halotolerant Mortierella alpina M01 strain alleviates salt stress by improving antioxidants and ionic homeostasis through the upregulation of ABA-stress responsive genes in wheat
Aug 2026· Environmental Sustainability· Vol 9, pp. 893 - 912· 0 citations· 115 references
TL;DR
Overall, M. alpina M01 enhances wheat salt tolerance through the coordinated regulation of hormonal, ionic, and oxidative processes, positioning this strain as a powerful bioinoculant for improving crop performance in saline environments and supporting the development of microbiome-based strategies for sustainable agriculture.
Results demonstrate that the HPGPB consortium enhances salinity tolerance through coordinated physiological, biochemical, and microbiome-associated mechanisms, highlighting the potential of HPGPB consortia as sustainable bioinoculants for improving black gram productivity in salt-affected agroecosystems.
Daniel Raphael, T. Parthasarathi· Frontiers in Microbiology· 0 citations
These findings demonstrate that Pp13 and Pp16 possess multiple stress-adaptive and plant growth-promoting traits that contribute to improved crop performance under saline-alkaline conditions.
Chih-Ning Ko, T. Lee, Wei-Yi Lin· Frontiers in Plant Science· 0 citations
Saline-alkali stress severely impairs plant growth by disrupting osmotic balance, inducing oxidative damage, and suppressing metabolic processes. This study investigates the efficacy of biostimulants including Trametes odorata extract (TOE), camphor, and xanthine, in mitigating Na2CO3-induced stress in wheat plants. Wh...
Gehad A. Ragab, K. Saad-Allah, G. Aljeddani et al.· Physiologia Plantarum : An I...· 0 citations
Soil salinity adversely affects seed germination, growth, photosynthetic performance, ionic balance, and antioxidant capacity, thereby limiting crop productivity. The present study investigated the effectiveness of seed priming treatments in improving salinity tolerance in two contrasting Mungbean (Vigna radiata (L.) R...
G. D. Mankar, O. P. Sontakke, P. V. Shelar et al.· Discover Plants· 0 citations
Findings indicate that B. cereus isolate 74 enhances maize salt tolerance through coordinated regulation of antioxidant defense systems and metabolic reprogramming, which provides novel insights into PGPR-mediated stress adaptation.
Maryam Zakavi, Hossein Askari, Mohammad Shahrooei· Microbiology Research· 0 citations
Soil salinization poses a significant threat to agricultural production, necessitating innovative agronomic strategies to mitigate its impact. Salinity stress is a critical abiotic factor that hampers tomato growth by causing ionic imbalances, oxidative damage, and disruptions in physiological systems. This study inves...
I. Badawy, H. I. Mohamed, Hossam M. Fouda et al.· BMC Plant Biology· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.