Transgenerational effect of UV-B priming on photochemistry and associated metabolism in rice seedlings subjected to PEG-induced osmotic stress.

IF 1.6 4区 生物学 Q2 PLANT SCIENCES Photosynthetica Pub Date : 2022-03-04 eCollection Date: 2022-01-01 DOI:10.32615/ps.2022.006
A Sen, J T Puthur, D Challabathula, M Brestič
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Abstract

Rice being the major food crop for more than half of the world population is severely affected by drought stress starting from the establishment of the seedling. We focused on the UV-B priming mediated transgenerational drought tolerance of a drought-tolerant rice variety (Vaisakh) towards polyethylene glycol (PEG) 6,000 (20%)-induced drought. Results showed that priming in F0 generation and re-priming in F1 generation with UV-B enhanced the PEG stress tolerance potential of rice seedlings with increased expression of genes encoding antioxidant enzymes and stress-related proteins offering better protection to primed plants. UV-B priming maintained oxidative homeostasis of the plant cell thus ensuring uninterrupted mitochondrial and photosynthetic activities. Cumulatively, our results suggest that the transgenerational priming memory retained in the seeds is transferred to offspring without any loss. Moreover, re-priming in F1 generation further boosted the innate tolerance potential of a tolerant variety resulting in stable cellular redox homeostasis.

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UV-B启动对peg诱导渗透胁迫下水稻幼苗光化学及相关代谢的跨代影响
水稻是世界上一半以上人口的主要粮食作物,从秧苗开始就受到干旱胁迫的严重影响。我们研究了UV-B诱导的耐旱水稻品种(Vaisakh)对聚乙二醇(PEG) 6000(20%)诱导的干旱的跨代耐旱性。结果表明,在F0代和F1代用UV-B进行再激发后,水稻幼苗对PEG胁迫的耐受能力增强,抗氧化酶和胁迫相关蛋白编码基因的表达增加,从而更好地保护了被激发植株。UV-B启动维持植物细胞的氧化稳态,从而确保线粒体和光合活动的不间断。总的来说,我们的结果表明,种子中保留的跨代启动记忆可以毫无损失地转移给后代。此外,在F1代中重新启动进一步提高了耐受性品种的先天耐受性潜力,从而导致稳定的细胞氧化还原稳态。
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来源期刊
Photosynthetica
Photosynthetica 生物-植物科学
CiteScore
5.60
自引率
7.40%
发文量
55
审稿时长
3.8 months
期刊介绍: Photosynthetica publishes original scientific papers and brief communications, reviews on specialized topics, book reviews and announcements and reports covering wide range of photosynthesis research or research including photosynthetic parameters of both experimental and theoretical nature and dealing with physiology, biophysics, biochemistry, molecular biology on one side and leaf optics, stress physiology and ecology of photosynthesis on the other side. The language of journal is English (British or American). Papers should not be published or under consideration for publication elsewhere.
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