Isolation and Characterisation of Culturable Thermophilic Cyanobacteria from Perak Hot Springs and their Plant Growth Promoting Properties Effects on Rice Seedlings (Oryza sativa L.).

IF 1.1 Q3 BIOLOGY Tropical life sciences research Pub Date : 2023-09-01 Epub Date: 2023-09-30 DOI:10.21315/tlsr2023.34.3.1
Clement Kiing Fook Wong, Tzu Yee Chong, Ji Tan, Wey Lim Wong
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Abstract

Malaysia is home to a number of hot springs that are rich in microbial diversity including the photosynthetic cyanobacteria. Although this microbial community has been characterised based on metagenomics approach, the culturable thermophilic isolates have not been isolated and characterised extensively. Compared to the mesophiles, information on plant growth promoting (PGP) properties of these thermophiles remain largely untapped. As the amount of arable land for microbial bioprospecting is decreasing due to extensive human activities, the search for alternative source for microbial strains with PGP properties is important for the development of potential biofertilisers. This study sought to isolate and characterise culturable cyanobacteria strains from two local hot springs - Sungai Klah (SK) and Lubuk Timah (LT) located in Perak using morphological and molecular methods. The IAA production from the axenic cultures were measured. The PGP properties were also measured by priming the rice seeds with cyanobacterial water extracts. A total of six strains were isolated from both hot springs. Strains LTM and LTW from LT were identified as Leptolyngbya sp. whereas strains SEM, SEH, STH and STM were identified as Thermosynechococcus elongatus. All six strains produced IAA ranged from 670.10 pg/μL to 2010 pg/μL. The water extracts were found to increase the seed amylase activity of the rice seeds from 5th day of germination (DAG) to 10th DAG. In general, the IAA production and increased seed amylase activity might have contributed in enhancing the longest root length, shoot length and root-to-shoot (RS) ratio. To conclude, the thermophilic cyanobacteria from hot springs can be further exploited as a novel source of PGP microbes for the development of biofertilsers.

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霹雳温泉可培养嗜热蓝细菌的分离鉴定及其对水稻幼苗生长促进特性的影响。
马来西亚有许多富含微生物多样性的温泉,包括光合蓝藻。尽管这种微生物群落已经基于宏基因组学方法进行了表征,但可培养的嗜热分离株尚未得到广泛的分离和表征。与嗜温菌相比,关于这些嗜热菌的植物生长促进(PGP)特性的信息在很大程度上尚未开发。由于人类活动的广泛,用于微生物生物勘探的耕地数量正在减少,寻找具有PGP特性的微生物菌株的替代来源对于开发潜在的生物肥料非常重要。本研究试图使用形态学和分子方法从位于霹雳州的两个当地温泉Sungai Klah(SK)和Lubuk Timah(LT)中分离和鉴定可培养的蓝藻菌株。测定了无菌培养物产生的IAA。还通过用蓝藻水提取物引发水稻种子来测量PGP特性。从这两个温泉中共分离出6个菌株。来自LT的菌株LTM和LTW被鉴定为Leptilyngbya sp.,而菌株SEM、SEH、STH和STM被鉴定为Thermosynechoccus elongatus。所有6株菌株产生IAA的范围为670.10 pg/μL至2010 pg/μL。从发芽第5天到第10天,水提取物能提高水稻种子的淀粉酶活性。总的来说,IAA的产生和种子淀粉酶活性的增加可能有助于提高最长根长、地上部长度和根冠比。总之,温泉中的嗜热蓝藻可以作为PGP微生物的新来源进一步开发生物肥料。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
40
审稿时长
20 weeks
期刊介绍: Tropical Life Sciences Research (TLSR) formerly known as Journal of Bioscience seeks to publish relevant ideas and knowledge addressing vital life sciences issues in the tropical region. The Journal’s scope is interdisciplinary in nature and covers any aspects related to issues on life sciences especially from the field of biochemistry, microbiology, biotechnology and animal, plant, environmental, biomedical and pharmaceutical sciences. TLSR practices double blind peer review system to ensure and maintain the good quality of articles published in this journal. Two issues are published annually in printed and electronic form. TLSR also accepts review articles, experimental papers and short communications. The Chief Editor would like to invite researchers to use this journal as a mean to rapidly promote their research findings.
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