香稻品种对盐度和富氢水的差异响应与生长和抗氧化防御机制的关系

IF 3.4 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Xiaomeng Fu, Lin Ma, Runfei Gui, Umair Ashraf, Yuzhan Li, Xiaojuan Yang, Jianwen Zhang, Muhammad Imran, Xiangru Tang, Hua Tian, Zhaowen Mo
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引用次数: 6

摘要

盐度对作物的生长和生产力有负面影响;然而,关于盐胁迫下富氢水(HRW)对香稻早期生长影响的研究却很少。本研究采用叶面施药(F-HRW)和灌水(I-HRW)两种HRW处理,分别在0和150 mmol NaCl -1盐胁迫条件下对育香优占和香雅香占两个香型水稻品种进行处理。不施用HRW的植株作为对照(CK)。结果表明:盐胁迫下,F-HRW和I-HRW处理的单位株高干重(mg cm-1)分别比对照提高了12.6%和23.0%;在不同施用方式下,HRW均可调节盐胁迫下玉米超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)的抗氧化活性,降低丙二醛(MDA)含量。总干重与地上部干重、单位株高干重、根系SOD和CAT活性呈显著正相关。综上所述,盐胁迫下,施F-HRW可调节香稻的早期生长及相关生理性状,而施I-HRW可缓解盐胁迫。新颖性陈述:植物内源H2参与调控各种生理功能,对刺激和/或激活抗氧化防御反应具有重要意义;然而,这方面的研究还比较缺乏。研究了富氢水(HRW)对盐胁迫下2个香稻品种生长和生理特性的影响。值得注意的是,无论是叶面施用还是灌水处理,均改善了水稻的形态特征,即单位株高干重,提高了抗氧化剂过氧化物酶、超氧化物歧化酶和过氧化氢酶的活性,降低了丙二醛含量。综上所述,在盐胁迫条件下,施HRW可调节香稻品种的生长和生理特性。本研究将有助于促进咸水条件下香稻苗圃的早期生长和林分建立。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential response of fragrant rice cultivars to salinity and hydrogen rich water in relation to growth and antioxidative defense mechanisms.

Salinity negatively effects the growth and productivity of crop plants; however, the effects of hydrogen rich water (HRW) on the early growth of fragrant rice under salinity stress are rarely investigated. In present study, two HRW treatments: foliar application (F-HRW) and irrigation (I-HRW) were applied on the two fragrant rice cultivars, Yuxiangyouzhan and Xiangyaxiangzhan, grown under normal and salt stress conditions, i.e., 0 and 150 mmol NaCl L-1, respectively. Plants without HRW application were grown as control (CK). Results showed that the dry weight per unit plant height (mg cm-1) was increased by 12.6% and 23.0% in F-HRW and I-HRW, respectively under salt stress as compared with CK. Application of HRW, regardless of the application method, modulated the antioxidant activities of superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT) while reduced malondialdehyde (MDA) contents under salt stress. Moreover, significant and positive relations were observed among total dry weight and shoot dry weight, dry weight per unit plant height, SOD and CAT activity in root. Overall, F-HRW application modulated the early growth and related physiological attributes in fragrant rice under salt stress whereas I-HRW was found to mitigate salt stress. Novelty statement: Involvement of endogenous H2 in plants for regulating various physiological functions is of great importance to stimulate and/or activate the antioxidant defense responses against oxidative stress; however, there is a lack of research in this aspect. The present study investigated the effects of hydrogen rich water (HRW) on the growth and physiological attributes of two fragrant rice cultivars grown under salt-stress. It was noteworthy to find that application of HRW either foliar application or irrigation improved the morphological characters, i.e., dry weight per unit plant height and enhanced the activities of antioxidants, i.e., peroxidase, superoxide dismutase and catalase whilst decreased the malonaldehyde content. Overall, the application of HRW modulates plant growth and physiological attributes in fragrant rice cultivars under salt-stress conditions. This study will be helpful in improving the early growth and/or stand establishment of fragrant rice nursery under saline conditions.

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来源期刊
International Journal of Phytoremediation
International Journal of Phytoremediation 环境科学-环境科学
CiteScore
7.60
自引率
5.40%
发文量
145
审稿时长
3.4 months
期刊介绍: The International Journal of Phytoremediation (IJP) is the first journal devoted to the publication of laboratory and field research describing the use of plant systems to solve environmental problems by enabling the remediation of soil, water, and air quality and by restoring ecosystem services in managed landscapes. Traditional phytoremediation has largely focused on soil and groundwater clean-up of hazardous contaminants. Phytotechnology expands this umbrella to include many of the natural resource management challenges we face in cities, on farms, and other landscapes more integrated with daily public activities. Wetlands that treat wastewater, rain gardens that treat stormwater, poplar tree plantings that contain pollutants, urban tree canopies that treat air pollution, and specialized plants that treat decommissioned mine sites are just a few examples of phytotechnologies.
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