Agrobacterium induces plant cell death in wheat (Triticum aestivum L.)
The symptoms of gall or hairy root do not occur in the interactions between wheat (Triticum aestivum L.) and other monocotyledonous plants, with Agrobacterium tumefaciens or Agrobacterium rhizogenes. However, both bacteria colonized wheat root surfaces at similar levels (2.0×107 colony forming Ug−1...
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Published in: | Physiological and molecular plant pathology Vol. 60; no. 2; pp. 59 - 69 |
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Abstract | The symptoms of gall or hairy root do not occur in the interactions between wheat (Triticum aestivum L.) and other monocotyledonous plants, with Agrobacterium tumefaciens or Agrobacterium rhizogenes. However, both bacteria colonized wheat root surfaces at similar levels (2.0×107 colony forming Ug−1 root) and grew without inhibition in suspension with intact or wounded wheat embryos or root segments present. Suspension-cultured wheat embryo cells grown in 7.4m M O2 displayed 23% cell death after 1h exposure to Agrobacterium cells, while the extent of cell death with 2.1m M O2 averaged 8%. Cultured wheat embryo and root cells rapidly produced hydrogen peroxide (H2O2) when contacted with A. tumefaciens or A. rhizogenes. Production of H2O2 was lower at 2.1m M O2 than 7.4mM O2. Browning and autofluorescence of epidermal cells of callus derived from wheat embryos and wheat roots was observed after inoculation with Agrobacterium. An increase in ferulic acid was detected in the walls of roots exposed to Agrobacterium. However, neither lignin nor callose was detected by diagnostic staining methods. These findings suggest that Agrobacterium induced a resistance-like response in wheat that may reduce the efficacy of transformation and limit the normal symptom formation. |
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AbstractList | The symptoms of gall or hairy root do not occur in the interactions between wheat (Triticum aestivum L.) and other monocotyledonous plants, with Agrobacterium tumefaciens or Agrobacterium rhizogenes. However, both bacteria colonized wheat root surfaces at similar levels (2.0 x 10 super(7) colony forming U g super(-1) root) and grew without inhibition in suspension with intact or wounded wheat embryos or root segments present. Suspension-cultured wheat embryo cells grown in 7.4 m O sub(2) displayed 23% cell death after 1 h exposure to Agrobacterium cells, while the extent of cell death with 2.1 m O sub(2) averaged 8%. Cultured wheat embryo and root cells rapidly produced hydrogen peroxide (H sub(2)O sub(2)) when contacted with A. tumefaciens or A. rhizogenes. Production of H sub(2)O sub(2) was lower at 2.1 m O sub(2) than 7.4 m O sub(2). Browning and autofluorescence of epidermal cells of callus derived from wheat embryos and wheat roots was observed after inoculation with Agrobacterium. An increase in ferulic acid was detected in the walls of roots exposed to Agrobacterium. However, neither lignin nor callose was detected by diagnostic staining methods. These findings suggest that Agrobacterium induced a resistance-like response in wheat that may reduce the efficacy of transformation and limit the normal symptom formation. Copyright 2002 Elsevier Science Ltd. The symptoms of gall or hairy root do not occur in the interactions between wheat (Triticum aestivum L.) and other monocotyledonous plants, with Agrobacterium tumefaciens or Agrobacterium rhizogenes. However, both bacteria colonized wheat root surfaces at similar levels (2.0×107 colony forming Ug−1 root) and grew without inhibition in suspension with intact or wounded wheat embryos or root segments present. Suspension-cultured wheat embryo cells grown in 7.4m M O2 displayed 23% cell death after 1h exposure to Agrobacterium cells, while the extent of cell death with 2.1m M O2 averaged 8%. Cultured wheat embryo and root cells rapidly produced hydrogen peroxide (H2O2) when contacted with A. tumefaciens or A. rhizogenes. Production of H2O2 was lower at 2.1m M O2 than 7.4mM O2. Browning and autofluorescence of epidermal cells of callus derived from wheat embryos and wheat roots was observed after inoculation with Agrobacterium. An increase in ferulic acid was detected in the walls of roots exposed to Agrobacterium. However, neither lignin nor callose was detected by diagnostic staining methods. These findings suggest that Agrobacterium induced a resistance-like response in wheat that may reduce the efficacy of transformation and limit the normal symptom formation. |
Author | Anderson, Anne J. Carman, John G. Parrott, David L. |
Author_xml | – sequence: 1 givenname: David L. surname: Parrott fullname: Parrott, David L. organization: Department of Plants, Soils, and Biometeorology, Utah State University, Logan, UT, 84322-4820, U.S.A – sequence: 2 givenname: Anne J. surname: Anderson fullname: Anderson, Anne J. organization: Department of Biology, Utah State University, Logan, UT, 84322-5305, U.S.A – sequence: 3 givenname: John G. surname: Carman fullname: Carman, John G. organization: Department of Plants, Soils, and Biometeorology, Utah State University, Logan, UT, 84322-4820, U.S.A |
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Keywords | Agrobacterium tumefaciens Agrobacterium rhizogenes plant–micro-organism interactions hydrogen peroxide Crown gall Hairy root Monocotyledones Plant pathology Plant pathogen Pathogenesis Cereal crop Microorganism resistance Gramineae Angiospermae Bacteria Pathophysiology Antioxidant Experimental study Metabolism Hydrogen Peroxides Bacteriology Infection Symptomatology Cell death Bacteriosis Spermatophyta Rhizobiaceae Triticum aestivum Plant microorganism relation |
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Snippet | The symptoms of gall or hairy root do not occur in the interactions between wheat (Triticum aestivum L.) and other monocotyledonous plants, with Agrobacterium... |
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SubjectTerms | Agrobacterium rhizogenes Agrobacterium tumefaciens Bacterial plant pathogens Biological and medical sciences Fundamental and applied biological sciences. Psychology hydrogen peroxide Pathology. Damages, economic importance Phytopathology. Animal pests. Plant and forest protection plant–micro-organism interactions |
Title | Agrobacterium induces plant cell death in wheat (Triticum aestivum L.) |
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