Methylotroph bacteria and cellular metabolite carotenoid alleviate ultraviolet radiation-driven abiotic stress in plants
Метилотрофные бактерии и клеточный метаболит каротиноид ослабляют абиотический стресс растений, вызванный ультрафиолетовым излучением
2023-01-06
SCID: 54.1/drpaa4sc
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Methylobacter sp. N39UV radiation abiotic stressbeta-carotene (carotenoid)foliar applicationphyllosphere Methylobacteria
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Abstract (AI)
Increasing UV radiation in the atmosphere due to the depletion of ozone layer is emerging abiotic stress for agriculture. Although plants have evolved to adapt to UV radiation through different mechanisms, but the role of phyllosphere microorganisms in counteracting UV radiation is not well studied. The current experiment was undertaken to evaluate the role of phyllosphere Methylobacteria and its metabolite in the alleviation of abiotic stress rendered by ultraviolet (UV) radiation. A potential pink pigmenting methylotroph bacterium was isolated from the phylloplane of the rice plant (o ryzae sativa ). The 16S rRNA gene sequence of the bacterium was homologous to the Methylobacter sp . The isolate referred to as Methylobacter sp N39, produced beta-carotene at a rate (μg ml –1 d –1 ) of 0.45–3.09. Biosynthesis of beta-carotene was stimulated by brief exposure to UV for 10 min per 2 days. Carotenoid biosynthesis was predicted as y = 3.09 × incubation period + 22.151 ( r 2 = 0.90). The carotenoid extract of N39 protected E. coli from UV radiation by declining its death rate from 14.67% min –1 to 4.30% min –1 under UV radiation. Application of N39 cells and carotenoid extract also protected rhizobium ( Bradyrhizobium japonicum ) cells from UV radiation. Scanning electron microscopy indicated that the carotenoid extracts protected E. coli cells from UV radiation. Foliar application of either N39 cells or carotenoid extract enhanced the plant’s (Pigeon pea) resistance to UV irradiation. This study highlight that Methylobacter sp N39 and its carotenoid extract can be explored to manage UV radiation stress in agriculture.
Key Findings
1
A pink-pigment methylotroph isolated from rice phylloplane was identified as Methylobacter sp. N39 via 16S rRNA sequencing.
2
Carotenoid extract from N39 reduced E. coli UV-induced death rate from 14.67% min–1 to 4.30% min–1 and similarly protected Bradyrhizobium japonicum cells.
3
Carotenoid production follows the relationship y = 3.09 × incubation period + 22.151 (r2 = 0.90), indicating strong correlation with incubation time.
4
Foliar application of N39 cells or its carotenoid extract increased pigeon pea resistance to UV irradiation, suggesting potential agricultural use to manage UV stress.
5
Methylobacter sp. N39 produces beta-carotene at rates of 0.45–3.09 μg ml–1 d–1, with biosynthesis stimulated by brief UV exposure (10 min every 2 days).
Research Object
Phyllosphere Methylobacterium sp. N39 and its beta-carotene (carotenoid) metabolite as applied to plants and microbial cells
Research Subject
Ability of Methylobacterium sp. N39 and its carotenoid extract (beta-carotene) to alleviate ultraviolet (UV) radiation–driven abiotic stress by protecting plants (pigeon pea) and microbial cells (E. coli, Bradyrhizobium japonicum) from UV-induced damage
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2023-01-06
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