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Systemic acquired resistance and induced systemic resistance against foliar diseases of Agrostis stolonifera and Nicotiana benthamiana.

机译:对Agrostis stolonifera和Nicotiana benthamiana的叶病的系统获得性抗性和诱导的系统抗性。

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摘要

Systemic acquired resistance (SAR) was activated by benzothiadiazole (BTH) and induced systemic resistance (ISR) was activated by (2R,3R)-butanediol or PC1, a new isoparaffin compound developed by Petro-Canada, against anthracnose caused by Colletotrichum orbiculare in Nicotiana benthamiana. BTH, (2R,3R)-butanediol and PC1 reduced the number of lesions per leaf area of C. orbiculare by 98%, 77% and 81%, respectively. Foliar application of BTH also induced expression of pathogenesis-related (PR) genes, NbPR-1a, NbPR-3Q and acidic NbPR-5, and soil application of (2R,3R)-butanediol or PC1 primed expression of NbPRb-1b, basic NbPR-2 and NbPR-5dB. BTH also activated resistance against dollar spot caused by Sclerotinia homoeocarpa in Agrostis stolonifera , reducing the percentage of diseased leaves by 50%, but BTH did not activate resistance against diseases caused by Microdochium nivale ,or Rhizoctonia solani. However, application of either (2R,3R)-butanediol or PC1 reduced the area diseased leaves by 20 to 40% for M. nivale, R. solani or S. homoeocarpa. In A. stolonifera, expression of the jasmonate-related genes, AsAOS1 and AsOPR4, and the PR gene, AsGns5 was primed by both (2R,3R)-butanediol and PC1, while BTH did not affect the expression of homologs in A. stolonifera of BTH-inducible genes identified in other monocots, the WCI-2 lipoxygenase or the BCI-4 putative calcium-binding EF-hand.
机译:苯并噻二唑(BTH)激活了全身获得性抗药性(SAR),而加拿大石油公司开发的一种新的异链烷烃化合物(2R,3R)丁二醇或PC1激活了对全身性炭疽病引起的炭疽病的全身性抗药性(ISR)。烟草BTH,(2R,3R)-丁二醇和PC1分别使球状梭菌每叶面积的病变数减少了98%,77%和81%。叶面喷施BTH还可诱导与病程相关的(PR)基因NbPR-1a,NbPR-3Q和酸性NbPR-5的表达,以及在土壤中施用(2R,3R)-丁二醇或PC1启动的NbPRb-1b的表达,碱性NbPR-2和NbPR-5dB。 BTH还激活了对食根草菌中高核小核盘菌引起的美元斑点的抗性,使患病叶片的百分比降低了50%,但BTH并未激活对短双歧杆菌或茄根霉致病性的抗性。然而,(2R,3R)-丁二醇或PC1的施用对N. mivale,R。solani或S. homoeocarpa的病叶面积降低了20%至40%。在A. stolonifera中,茉莉酸相关基因AsAOS1和AsOPR4以及PR基因的表达,AsGns5由(2R,3R)-丁二醇和PC1引发,而BTH不会影响A. stolonifera中同源物的表达。在其他单子叶植物,WCI-2脂氧合酶或BCI-4钙结合的EF手中鉴定出的BTH诱导基因。

著录项

  • 作者单位

    University of Guelph (Canada).;

  • 授予单位 University of Guelph (Canada).;
  • 学科 Biology Molecular.;Biology Plant Physiology.;Agriculture Plant Pathology.
  • 学位 M.Sc.
  • 年度 2009
  • 页码 268 p.
  • 总页数 268
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;植物病理学;植物学;
  • 关键词

  • 入库时间 2022-08-17 11:37:38

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