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  3. Plant Pathology and Microbiology / 植物病理與微生物學系
  4. Silencing of CrNPR1 and CrNPR3 Alters Plant Susceptibility to Periwinkle Leaf Yellowing Phytoplasma
 
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Silencing of CrNPR1 and CrNPR3 Alters Plant Susceptibility to Periwinkle Leaf Yellowing Phytoplasma

Journal
Frontiers in Plant Science
Journal Volume
10
Date Issued
2019
Author(s)
Sung, Y.-C.
Lin, C.-P.
Hsu, H.-J.
Chen, Y.-L.
CHAN-PIN LIN 
JEN-CHIH CHEN  
DOI
10.3389/fpls.2019.01183
URI
https://www.scopus.com/inward/record.url?eid=2-s2.0-85073681682&partnerID=40&md5=1e5ba233ea0c5aac5b606d40880d30f1
https://scholars.lib.ntu.edu.tw/handle/123456789/565946
Abstract
Phytoplasmas are prokaryotic plant pathogens that cause considerable loss in many economically important crops, and an increasing number of phytoplasma diseases are being reported on new hosts. Knowledge of plant defense mechanisms against such pathogens should help to improve strategies for controlling these diseases. Salicylic acid (SA)-mediated defense may play an important role in defense against phytoplasmas. Here, we report that SA accumulated in Madagascar periwinkle (Catharanthus roseus) infected with periwinkle leaf yellowing (PLY) phytoplasma. CrPR1a expression was induced in both symptomatic and non-symptomatic tissues of plants exhibiting PLY. NPR1 plays a central role in SA signaling, and two NPR1 homologs, CrNPR1 and CrNPR3, were identified from a periwinkle transcriptome database. Similar to CrPR1a, CrNPR1 expression was also induced in both symptomatic and non-symptomatic tissues of plants exhibiting PLY. Silencing of CrNPR1, but not CrNPR3, significantly repressed CrPR1a induction in Tobacco rattle virus-infected periwinkle plants. In addition, symptoms of PLY progressed fastest in CrNPR1-silenced plants and slowest in CrNPR3-silenced plants. Consistently, expression of CrNPR1, but not CrNPR3, was induced by phytoplasma infection as well as SA treatment. This study highlights the importance of NPR1- and SA-mediated defense against phytoplasma in periwinkle and offers insight into plant-phytoplasma interactions to improve disease control strategies.
SDGs

[SDGs]SDG2

[SDGs]SDG3

[SDGs]SDG13

Type
journal article

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