Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions

ABSTRACT Salinity and alkalinity are major abiotic stresses that limit growth and development of poplar. We investigated biocontrol potential of saline- and alkaline-tolerant mutants of Trichoderma asperellum to mediate the effects of salinity or alkalinity stresses on Populus davidiana × P. alba va...

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Main Authors: Ruiting Guo, Zhiying Wang, Ying Huang, Haijuan Fan, Zhihua Liu
Format: Article
Language:English
Published: Sociedade Brasileira de Microbiologia
Series:Brazilian Journal of Microbiology
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1517-83822018000500236&lng=en&tlng=en
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spelling doaj-2d20194cd95d47b9bf775b538da33c572020-11-24T23:52:44ZengSociedade Brasileira de MicrobiologiaBrazilian Journal of Microbiology1678-440549suppl 123624510.1016/j.bjm.2018.02.008S1517-83822018000500236Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditionsRuiting GuoZhiying WangYing HuangHaijuan FanZhihua LiuABSTRACT Salinity and alkalinity are major abiotic stresses that limit growth and development of poplar. We investigated biocontrol potential of saline- and alkaline-tolerant mutants of Trichoderma asperellum to mediate the effects of salinity or alkalinity stresses on Populus davidiana × P. alba var. pyramidalis (PdPap poplar) seedlings. A T-DNA insertion mutant library of T. asperellum was constructed using an Agrobacterium tumefaciens mediated transformation system; this process yielded sixty five positive transformants (T1–T65). The salinity tolerant mutant, T59, grew in Potato Dextrose Agar (PDA) containing up to 10% (1709.40 mM) NaCl. Under NaCl-rich conditions, T59 was most effective in inhibiting Alternaria alternata (52.00%). The alkalinity tolerant mutants, T3 and T5, grew in PDA containing up to 0.4% (47.62 mM) NaHCO3. The ability of the T3 and T5 mutants to inhibit Fusarium oxysporum declined as NaHCO3 concentrations increased. NaHCO3 tolerance of the PdPap seedlings improved following treatment with the spores of the WT, T3, and T5 strains. The salinity tolerant mutant (T59) and two alkalinity tolerant mutants (T3 and T5) generated in this study can be applied to decrease the incidence of pathogenic fungi infection under saline or alkaline stress.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1517-83822018000500236&lng=en&tlng=enBiocontrolTrichoderma asperellumMutant librarySalinity and alkalinityFungal disease
collection DOAJ
language English
format Article
sources DOAJ
author Ruiting Guo
Zhiying Wang
Ying Huang
Haijuan Fan
Zhihua Liu
spellingShingle Ruiting Guo
Zhiying Wang
Ying Huang
Haijuan Fan
Zhihua Liu
Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions
Brazilian Journal of Microbiology
Biocontrol
Trichoderma asperellum
Mutant library
Salinity and alkalinity
Fungal disease
author_facet Ruiting Guo
Zhiying Wang
Ying Huang
Haijuan Fan
Zhihua Liu
author_sort Ruiting Guo
title Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions
title_short Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions
title_full Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions
title_fullStr Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions
title_full_unstemmed Biocontrol potential of saline- or alkaline-tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions
title_sort biocontrol potential of saline- or alkaline-tolerant trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions
publisher Sociedade Brasileira de Microbiologia
series Brazilian Journal of Microbiology
issn 1678-4405
description ABSTRACT Salinity and alkalinity are major abiotic stresses that limit growth and development of poplar. We investigated biocontrol potential of saline- and alkaline-tolerant mutants of Trichoderma asperellum to mediate the effects of salinity or alkalinity stresses on Populus davidiana × P. alba var. pyramidalis (PdPap poplar) seedlings. A T-DNA insertion mutant library of T. asperellum was constructed using an Agrobacterium tumefaciens mediated transformation system; this process yielded sixty five positive transformants (T1–T65). The salinity tolerant mutant, T59, grew in Potato Dextrose Agar (PDA) containing up to 10% (1709.40 mM) NaCl. Under NaCl-rich conditions, T59 was most effective in inhibiting Alternaria alternata (52.00%). The alkalinity tolerant mutants, T3 and T5, grew in PDA containing up to 0.4% (47.62 mM) NaHCO3. The ability of the T3 and T5 mutants to inhibit Fusarium oxysporum declined as NaHCO3 concentrations increased. NaHCO3 tolerance of the PdPap seedlings improved following treatment with the spores of the WT, T3, and T5 strains. The salinity tolerant mutant (T59) and two alkalinity tolerant mutants (T3 and T5) generated in this study can be applied to decrease the incidence of pathogenic fungi infection under saline or alkaline stress.
topic Biocontrol
Trichoderma asperellum
Mutant library
Salinity and alkalinity
Fungal disease
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1517-83822018000500236&lng=en&tlng=en
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