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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Microstructural changes in rice (Oryza sativa L.) leaves under varying low pH levels: a swept-source optical coherence tomography approach
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Microstructural changes in rice (Oryza sativa L.) leaves under varying low pH levels: a swept-source optical coherence tomography approach

机译:微观结构变化的大米(栽培稻l .)叶子不同低pH值:下一个swept-source光学相干断层扫描方法

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摘要

Soil acidification has shown detrimental effects on rice plants that lead to decreased rice production. In the present study, we aim to study the microstructural changes in rice leaves under acidic stress through swept-source optical coherence tomography (SS-OCT). To achieve this, rice seeds were germinated, subsequently these germinated seedlings were further grown under varying pH conditions for 14 d. Growth in root and shoot of plants and chlorophyll content of leaf samples were studied at varying pH levels. Similarly, acidic stress treated rice leaves were also subjected to SS-OCT image analysis revealing several features present in the layers of leaves. Seedling growth was greatly reduced at pH 3.5 while it was maximum at pH 6.5 treatment, which might be the result of cumulative altered physiological parameters. The thickness between different layers of leaves starts disintegrating at low pH conditions, thickness of parenchyma cells was greatly reduced. The attenuated growth of rice seedlings at low pH conditions, as inferred from results of SS-OCT, was further corroborated by decreased root and shoot growth and chlorophyll content. Therefore, cross-sectional OCT images are very much helpful in identifying the morphological changes occurring in the leaves under low pH that cannot be observed by the naked eye. Results of the study could be applied for the identification of cross-sectional changes in the leaf of low pH affected plants and to take remedial measures towards boosting rice production and benefiting the agriculture sector.
机译:土壤酸化产生不利影响在水稻导致减少大米生产。水稻叶的显微结构的变化通过swept-source光学酸性压力相干断层扫描(SS-OCT)。水稻种子发芽,随后这些发芽幼苗进一步增长不同pH条件14 d。根的增长和拍摄的植物和叶绿素含量叶样品在不同pH值进行了研究。同样,酸性压力处理水稻叶子也受到SS-OCT图像分析揭示层层的叶子中几个特性。幼苗生长是大大降低pH值3.5最大值时pH值6.5治疗,可能是累积改变的结果生理参数。不同层的叶子开始瓦解在低pH值条件下,薄壁组织的厚度细胞是大大减少。水稻幼苗在低pH值条件下,从SS-OCT结果推断,进一步证实了通过降低增长里生根发芽和叶绿素含量。10月横断面图像是很有帮助的在确定形态的变化发生在低pH值不能下的树叶被肉眼观察到。研究可以应用的识别横断面的叶低pH值的变化影响植物和采取补救措施对提高水稻产量和受益农业部门。

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