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Induction of Tolerance to Fusarium Wilt and Defense-Related Mechanisms in the Plantlets of Susceptible Berangan Banana Pre-Inoculated with Pseudomonas sp.(UPMP3) and Burkholderia sp.(UPMB3) 被引量:16

Induction of Tolerance to Fusarium Wilt and Defense-Related Mechanisms in the Plantlets of Susceptible Berangan Banana Pre-Inoculated with Pseudomonas sp.(UPMP3) and Burkholderia sp.(UPMB3)
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摘要 This study is aimed at assessing the ability of two endophytic bacteria originally isolated from healthy oil palm roots, Pseudomonas sp. (UPMP3) and Burkholderia sp. (UPMB3) to induce resistance in susceptible Berangan banana against Fusarium oxysporum race 4 (FocR4). Increased accumulation of resistance-related enzymes such as peroxidase (PO), phenylalanine ammonia lyase (PAL), lignithioglycolic acid (LTGA), and pathogenesis-related (PR) proteins (ehitinase and β-1,3-glucanase) has been observed in plantlets treated with endophytic bacteria UPMP3 and UPMB3 singly or as mixture under glasshouse conditions. Pre-inoculation of banana plantlets with UPMP3 showed a significant reduction in Fusarium wilt incidence 72 d after challenged inoculation with FocR4. UPMB3 was less effective in suppressing Fusarium wilt compared to UPMP3, whereas, the mixture of both endophytes showed an intermediate effect. Based on these results, it is concluded that UPMP3 could be a promising biological control agent that can trigger resistance against Fusarium wilt in susceptible Berangan banana. This study is aimed at assessing the ability of two endophytic bacteria originally isolated from healthy oil palm roots, Pseudomonas sp. (UPMP3) and Burkholderia sp. (UPMB3) to induce resistance in susceptible Berangan banana against Fusarium oxysporum race 4 (FocR4). Increased accumulation of resistance-related enzymes such as peroxidase (PO), phenylalanine ammonia lyase (PAL), lignithioglycolic acid (LTGA), and pathogenesis-related (PR) proteins (ehitinase and β-1,3-glucanase) has been observed in plantlets treated with endophytic bacteria UPMP3 and UPMB3 singly or as mixture under glasshouse conditions. Pre-inoculation of banana plantlets with UPMP3 showed a significant reduction in Fusarium wilt incidence 72 d after challenged inoculation with FocR4. UPMB3 was less effective in suppressing Fusarium wilt compared to UPMP3, whereas, the mixture of both endophytes showed an intermediate effect. Based on these results, it is concluded that UPMP3 could be a promising biological control agent that can trigger resistance against Fusarium wilt in susceptible Berangan banana.
出处 《Agricultural Sciences in China》 CAS CSCD 2010年第8期1140-1149,共10页 中国农业科学(英文版)
基金 the Research University Grants(RUGS 91009),Malaysia,for financing this research
关键词 BANANA Pseudomonas sp. Burkholderia sp. induce resistance Fusarium wilt banana, Pseudomonas sp., Burkholderia sp., induce resistance, Fusarium wilt
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  • 1Adeline T S Y. 2005. Endophytic microorganisms for improvement of banana vigour and tolerance to Fusarium wilt. Ph D thesis, Universiti Putra Malaysia, Serdang, Selangor, Malaysia.
  • 2Bakker P A H M, Pierterse C M J, van Loon L C. 2007. Induced systemic resistance by fluorescens Pseudomonas spp. Phytopathology, 97, 239-243.
  • 3Benbamou N, Klopper J W, Quadt-Hallman A, Tuzun S. 1996. Induction of defense related ultra structural modifications in pea root tissues inoculated with endophytic bacteria. Plant. Physiology, 112, 919-929.
  • 4Bhattacharyya M K, Ward E W B. 1981. Temperature induced susceptibility of soybeans to Phytopthora megasperma f. sp. glycinea: phenylalanine ammonia-lyase and glyceolin in the host: growth and glyceolin 1 sensitivity of the pathogens. Physiology and Molecular Plant Pathology, 31,407-419.
  • 5Campbell C L, Madden L V. 1990. Introduction to Plant Disease Epidemiology. John Wiley and Sons, New York. p. 532.
  • 6Casal J J, Mella R A, Ballare C, Maldonado S. 1994. Phytochrome-mediated effects on extracellular peroxidase activity, lignin content and bending resistance in etiolated Vicia faba epicotyls, Plant Physiology, 92, 555-562.
  • 7Crump D H. 1998. Biological control of potato and beet cyst nematodes. Aspect Applied Biology Journal, 53, 383-386.
  • 8Dean R A, Kuc J. 1987. Rapid lignifications in response to wounding and infection as a mechanism for induce systemic protection in cucumber. Physiology and Molecular Plant Pathology, 31, 69-81.
  • 9Dubois T, Coyne D, Kahangi E, Turoop L, Nsubuga E N. 2006. Endophyte-enhanced banana tissue culture: technology transfer through public-private partnerships in Kenya and Uganda. African Technology Development Forum Journal, 3, 18-23.
  • 10Gutierrez-Manero F J, Ramos-Solano B, Probanza A, Mehouachi J, Tadeo F R, Talon M. 2001. The plant growth promoting rhizobacteria Bacillus pumilus and Bacillus licheniformis produce high amounts of physiologically active gibberellins. Plant Physiology, 111,206-211.

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