4.6 Article

Trichoderma longibrachiatum TG1 increases endogenous salicylic acid content and antioxidants activity in wheat seedlings under salinity stress

期刊

PEERJ
卷 10, 期 -, 页码 -

出版社

PEERJ INC
DOI: 10.7717/peerj.12923

关键词

Trichoderma spp; Wheat; Salinity stress; Antioxidants; Salicylic acid

资金

  1. Gansu Provincial Key Laboratory of Aridland Crop Science, Gansu Agricultural University [GSCS-2017-1]
  2. Fuxi Outstanding Talent Cultivation Program, Gansu Agricultural University [Gaufx-03J03]
  3. National Natural Science Foundation of China [31860526]
  4. Gansu Provincial Science Fund for Distinguished Young Scholars [18JR3RA161]
  5. Scientific Research Start-up Funds for Openly recruited Doctors [2017RCZX-07]

向作者/读者索取更多资源

This study investigated the potential of the plant-growth-promoting fungus Trichoderma longibrachiatum (TG1) to enhance plant growth and physiological responses in wheat seedlings under salt stress. The results showed that TG1 treatment significantly increased germination rate, seedling growth, salicylic acid (SA) content, and antioxidant enzyme activity in wheat seedlings, as well as upregulated the expression of stress-responsive genes under salt stress conditions.
Several studies have reported the deleterious effects of excessive salt stress on Triticum aestivum L. seedlings. Seed pretreatment with exogenous salicylic acid (SA) enhances plants to tolerate salt stress. Herein, the present study aims to investigate the potential of plant-growth-promoting fungus Trichoderma longibrachiatum (TG1) to increase the plant growth and enhance the salicylic acid (SA) contents and antioxidants activity in wheat seedlings under different concentrations of salt stress. Wheat seeds were pretreated in TG1 spore suspension before exposure to different salt stresses. Compared with 0, 50, 100, 150 salt stresses, the TG1 and NaCl increased the wheat seeds germination rate, germination potential and germination index significantly; the shoot height and root length were increased by an average of 39.45% and 29.73%, respectively. Compared to NaCl stress across the four concentrations (0, 50, 100, and 150 mM), the TG1 treated wheat seedlings increased SA concentration and phenylalanine ammonia-lyase activity (PAL) by an average of 55.87% and 24.10% respectively. In addition, the TG1+NaCl-treated seedlings increased superoxide dismutase (SOD), peroxidases (POD), and catalase (CAT) activities in the shoot by an average of 47.68%, 23.68%, and 38.65% respectively compared to NaClstressed seedlings. Significantly, the genes, SOD, CAT, and POD were relatively upregulated in the salt-tolerant TG1-treated seedlings at all NaCl concentrations in comparison to the control. Wheat seedlings treated with TG1+NaCl increased the transcript levels of SOD, POD and CAT by 1.35, 1.85 and 1.04-fold at 50 mM NaCl concentration, respectively, compared with 0 mM NaCl concentration. Our results indicated that seeds pretreatment with TG1 could increase endogenous SA of plants and promote seedling growth under salt stress by improving enzymatic antioxidant activities and gene expression.

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