Aug 2026· Discover Plants· Vol 3· 0 citations· 51 references
Abstract
Rhizobium spp. inoculation is a strategy to promote plant growth and enhance drought tolerance, particularly in semiarid environments. This study evaluated the morphological and physiological responses of Mimosa tenuiflora (Willd.) seedlings inoculated with Rhizobium spp. under different water contents. Seeds were collected from 12 naturally growing mother trees (Patos, Paraíba, Brazil). No specific genotype or cultivar was used. A completely randomized experiment was conducted in a 5 × 2 factorial design with four replicates, comprising five treatments (inoculation with three Rhizobium spp. strains: CA19PT, RO19PT, and MK17PT; nitrogen fertilization; and a non-inoculated control) under two water-content levels (40% and 80% of pot capacity). M. tenuiflora seedlings were grown in 3 dm³ pots for 90 days, after which growth, biomass production, nodulation, relative water content (RWC), and gas exchange parameters were evaluated. The results demonstrated that physiological variables were influenced by the treatments and water availability, whereas growth variables were affected only by water availability. Among the evaluated treatments, inoculation with strain CA19PT showed physiological responses comparable to those observed under nitrogen fertilization. Even under low water availability (40% pc, seedlings maintained adequate hydration levels, with an increase in root biomass. Inoculation with selected Rhizobium isolates, particularly CA19PT, improved the physiological performance of M. tenuiflora seedlings under contrasting water-content conditions. Physiological responses observed in seedlings inoculated with CA19PT were comparable to those obtained with nitrogen fertilization. Additionally, seedlings grown under higher water content (80% pc exhibit better overall growth, whereas reducing water content to 40% pcstimulates root growth.
Cowpea (Vigna unguiculata (L.) Walp.) is an agriculturally important legume capable of establishing symbiotic associations with nitrogen-fixing bacteria. Biological nitrogen fixation through Rhizobium spp. represents a potential agroecological strategy for improving crop productivity while reducing dependence on inorga...
Bryan Ariel Burgos Arzol· International Journal of Sci...· 0 citations
Findings indicate that the selected halotolerant nitrogen-fixing endophytic bacterial isolates can promote rice seedling growth under saline conditions and have potential for further development as biological fertilizers for rice cultivation on saline soils.
M. Setiawati, F. Pamungkas, P. Suryatmana et al.· International Journal of Lif...· 0 citations
Panicum turgidum is an important keystone forage grass crucial for ecosystem stability in arid and semi-arid rangelands of Asia and Africa. This study aimed to investigate the use of beneficial bioinoculants for enhancing the growth and acclimatization of micropropagated desert grass under controlled environmental cond...
M. M. Habib, Y. Dewir, T. Alshahrani et al.· Plants· 0 citations
Plant growth-promoting rhizobacteria consortia are used in the growth and augmentation of Mustard CS61 (Brassica juncea) under saline conditions to discover novel genes associated with stress tolerance and plant growth–promoting traits.
M. Bhat, Mayuri K Auti, Prajval Poojary· Discover Biotechnology· 0 citations
The selection of high-performing plant-bacteria partnerships, adapted to local edaphic constraints, provides a promising and eco-friendly strategy for the rehabilitation of degraded ecosystems.
Youcef Dalli, N. Yahia, A. Bekki· Base· 0 citations
Reliable evaluation of rhizobial inoculant performance requires integrative assessment of nodulation and biomass responses under contrasting soil microbial environments. A controlled pot experiment was conducted to evaluate cowpea (Vigna unguiculata L. Walp.) responses to inoculation with Sinorhizobium fredii, Bradyrhi...
J. Yahaya, O. Fawole, Omoniyi Isiaq Lawal et al.· Discover Soil· 0 citations
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