水稻幼苗对酸性pH值的差异响应

IF 0.5 Q4 AGRONOMY
J. Awasthi, Bedabrata Saha, Bhaben Chowardhara, Pankaj Borgohain, Smita Sahoo, B. Tanti, S. Panda
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引用次数: 0

摘要

酸性土壤是严重危害水稻生产的土壤问题。世界上大约50%的潜在耕地土壤是酸性的,而在印度东北部,80%的耕地土壤受到影响。在自然界中,它与其他金属应力协同存在。因此,迄今为止的大多数研究都是联合进行的。本文强调了酸度对植物的有害影响,以区分酸度对植物生长的影响和组合胁迫的影响。我们通过一系列的形态和生理分析,包括生长、活性氧(ROS)和光合作用相关参数,在酸性和非酸性根际条件下对迪桑和Joymati水稻幼苗进行了描述。Joymati的根长减少了31%,Disang的根长减少了17%;而地桑品种的根相对含水量下降了3%,欢地品种的根相对含水量下降了9%。总的来说,我们观察到对根系长度、生物量和叶绿素含量等形态计量参数的影响有限,与分析的品种无关。相反,活性氧积累显著增加;敏感品种Joymati比耐药品种Disang含量高。虽然叶绿素含量没有明显下降,但从叶绿素荧光参数可以看出,光合作用受到了很大的影响。因此,通过本研究,我们假设植物对酸性胁迫的反应相当缓慢。
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 to acidic pH in rice seedlings
Acidic soil is a serious harmful problem for rice crop productivity. Approximately 50% of the world’s potentially arable soils are acidic, whereas in North East (NE) India 80% of arable soils are effected. In nature, it exists synergistically with other metal stresses. Hence most of the studies to date were performed in combinations. This paper highlights the detrimental effect of acidity on plants to differentiate between the effect of acidity on plant growth to that of stress in combinations. We depict it through a cascade of morphological and physiological assays, including growth, reactive oxygen species (ROS), and photosynthesis-related parameters under acidic and non-acidic rhizospheric conditions in rice seedlings of Disang and Joymati. Up to 31% root length reduction was observed in Joymati, and up to 17 % reduction in Disang variety; whereas, root-relative water content was observed to reduce by 3% in Disang and 9% was recorded in Joymati cultivars. Overall, we observed limited effect on morphometric parameters like root length, biomass, and chlorophyll content irrespective of variety analyzed. On the contrary, ROS accumulation was observed to be significantly increased; more in Joymati (sensitive variety) when compared to Disang (tolerant variety). Although there was not much decrease in chlorophyll content, photosynthesis was affected immensely as depicted from chlorophyll fluorescence parameters. Hence through this study, we hypothesize that the response of plants to acid stress is rather slow.
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来源期刊
Sains Tanah
Sains Tanah Environmental Science-Pollution
CiteScore
1.90
自引率
0.00%
发文量
16
审稿时长
8 weeks
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