Literature DB >> 21956658

Mutualistic association of Paecilomyces formosus LHL10 offers thermotolerance to Cucumis sativus.

Abdul Latif Khan1, Muhammad Hamayun, Ramalingam Radhakrishnan, Muhammad Waqas, Sang-Mo Kang, Yoon-Ha Kim, Jae-Ho Shin, Yeon-Sik Choo, Jong-Guk Kim, In-Jung Lee.   

Abstract

We investigated in this study the influence of an endophytic fungus, Paecilomyces formosus LHL10, on the thermotolerance of cucumber (Cucumis sativus) upon exposure to high (38°C) and low (8°C) temperature stresses. The results showed that endophyte-inoculated plants had significantly higher plant growth attributes under high-temperature stress. However, they were either low or insignificant in non-inoculated control and inoculated plants with 8°C treatments. Lower stress-promulgated water deficit and cellular membrane damage were observed in endophyte-treated plants after 38°C treatment than in control plants under 8°C stress. Total polyphenol, reduced glutathione, and lipid peroxidation activities were reduced in endophyte-associated plants after exposure to 38°C as compared with control and 8°C-treated plants. The concentration of saturated fatty acids (palmitic-C16:0; stearic-C18:0) was lower in endophyte-treated plants with or without low-temperature stress, but after 8°C treatment increased compared with controls. Unsaturated fatty acids (oleic-C18:1; linoleic-C18:2; linolenic-C18:3 acids) were similar at normal conditions; however, at 38°C, C18:2 and C18:3 were decreased, and C18:1 was increased in endophyte-treated plants compared with controls, while the inverse relationship was found at 8°C. Low levels of abscisic acid in P. formosus-associated plants after 38°C treatments revealed stress tolerance compared with control and 8°C-treated plants. In contrast, salicylic acid was pronounced in endophyte-treated plants after low-temperature stress as compared to other treatments. The results provide evidence that the response to P. formosus association was beneficial at normal growth temperature and had varying effects in response to temperature stress.

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Year:  2011        PMID: 21956658     DOI: 10.1007/s10482-011-9630-x

Source DB:  PubMed          Journal:  Antonie Van Leeuwenhoek        ISSN: 0003-6072            Impact factor:   2.271


  6 in total

1.  Do Endophytes Promote Growth of Host Plants Under Stress? A Meta-Analysis on Plant Stress Mitigation by Endophytes.

Authors:  Hyungmin Rho; Marian Hsieh; Shyam L Kandel; Johanna Cantillo; Sharon L Doty; Soo-Hyung Kim
Journal:  Microb Ecol       Date:  2017-08-24       Impact factor: 4.552

2.  Endophytic fungal pre-treatments of seeds alleviates salinity stress effects in soybean plants.

Authors:  Ramalingam Radhakrishnan; Abdul Latif Khan; In-Jung Lee
Journal:  J Microbiol       Date:  2013-12-19       Impact factor: 3.422

3.  Additive effects due to biochar and endophyte application enable soybean to enhance nutrient uptake and modulate nutritional parameters.

Authors:  Muhammad Waqas; Yoon-Ha Kim; Abdul Latif Khan; Raheem Shahzad; Sajjad Asaf; Muhammad Hamayun; Sang-Mo Kang; Muhammad Aaqil Khan; In-Jung Lee
Journal:  J Zhejiang Univ Sci B       Date:  2017 Feb.       Impact factor: 3.066

4.  Mutualistic fungal endophytes produce phytohormones and organic acids that promote japonica rice plant growth under prolonged heat stress.

Authors:  Muhammad Waqas; Abdul Latif Khan; Raheem Shahzad; Ihsan Ullah; Abdur Rahim Khan; In-Jung Lee
Journal:  J Zhejiang Univ Sci B       Date:  2015-12       Impact factor: 3.066

5.  Endophytic Paecilomyces formosus LHL10 Augments Glycine max L. Adaptation to Ni-Contamination through Affecting Endogenous Phytohormones and Oxidative Stress.

Authors:  Saqib Bilal; Abdul L Khan; Raheem Shahzad; Sajjad Asaf; Sang-Mo Kang; In-Jung Lee
Journal:  Front Plant Sci       Date:  2017-05-29       Impact factor: 5.753

Review 6.  Microbe-Mediated Thermotolerance in Plants and Pertinent Mechanisms- A Meta-Analysis and Review.

Authors:  Khondoker M G Dastogeer; Mst I Zahan; Mohammad S Rhaman; Mohammad S A Sarker; Anindita Chakraborty
Journal:  Front Microbiol       Date:  2022-03-07       Impact factor: 5.640

  6 in total

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