Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniospores

Nitric oxide (NO) and reactive oxygen species (ROS) function as signaling molecules in a number of critical signal transduction pathways in plants, including plant biotic interactions. In addition to the role of plant-derived NO and ROS in plant resistance, which has been well documented, pathogen-p...

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Main Authors: Shuining eYin, Zhijuan eGao, Chenfang eWang, Lili eHuang, Zhensheng eKang, Hongchang eZhang
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-02-01
Series:Frontiers in Microbiology
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fmicb.2016.00178/full
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author Shuining eYin
Shuining eYin
Zhijuan eGao
Chenfang eWang
Chenfang eWang
Lili eHuang
Lili eHuang
Zhensheng eKang
Zhensheng eKang
Hongchang eZhang
Hongchang eZhang
author_facet Shuining eYin
Shuining eYin
Zhijuan eGao
Chenfang eWang
Chenfang eWang
Lili eHuang
Lili eHuang
Zhensheng eKang
Zhensheng eKang
Hongchang eZhang
Hongchang eZhang
author_sort Shuining eYin
collection DOAJ
description Nitric oxide (NO) and reactive oxygen species (ROS) function as signaling molecules in a number of critical signal transduction pathways in plants, including plant biotic interactions. In addition to the role of plant-derived NO and ROS in plant resistance, which has been well documented, pathogen-produced NO and ROS have recently emerged as important players in fungal development and pathogenesis. However, the effects of pathogenic fungi-derived NO and ROS on signaling pathways during fungal pre-infection development remain unknown. Here, using a combination of pharmacological approaches and confocal microscopy, we investigated the roles of NO and ROS during the germination of Puccinia striiformis Westend f. sp. tritici (Pst) the wheat stripe rust pathogen. Both NO and ROS have a crucial role in uredinial germination. The scavengers of NO and ROS delayed spore germination and decreased the lengths of germ tubes. A similar phenotype was produced after treatment with the promoter. However, the spores germinated and grew normally when the levels of NO and ROS were simultaneously elevated by the application of a promoter of NO and a donor of ROS. Confocal laser microscopy indicated that both NO and ROS preferentially localized at the germ pores and apexes of growing germ tubes when the ROS/NO ratio in the spores was maintained in a specific range. We concluded that both NO and ROS are critical signaling molecules in the pre-infection development of Pst and that the polar growth of the germ tube is coordinately regulated by NO and ROS.
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spelling doaj.art-4f31fe41473049a08d482500adfd45ba2022-12-22T01:44:42ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2016-02-01710.3389/fmicb.2016.00178164503Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniosporesShuining eYin0Shuining eYin1Zhijuan eGao2Chenfang eWang3Chenfang eWang4Lili eHuang5Lili eHuang6Zhensheng eKang7Zhensheng eKang8Hongchang eZhang9Hongchang eZhang10State Key Laboratory of Crop Stress Biology for Arid AreasNorthwest A&F UniversityNorthwest A&F UniversityState Key Laboratory of Crop Stress Biology for Arid AreasNorthwest A&F UniversityState Key Laboratory of Crop Stress Biology for Arid AreasNorthwest A&F UniversityState Key Laboratory of Crop Stress Biology for Arid AreasNorthwest A&F UniversityState Key Laboratory of Crop Stress Biology for Arid AreasNorthwest A&F UniversityNitric oxide (NO) and reactive oxygen species (ROS) function as signaling molecules in a number of critical signal transduction pathways in plants, including plant biotic interactions. In addition to the role of plant-derived NO and ROS in plant resistance, which has been well documented, pathogen-produced NO and ROS have recently emerged as important players in fungal development and pathogenesis. However, the effects of pathogenic fungi-derived NO and ROS on signaling pathways during fungal pre-infection development remain unknown. Here, using a combination of pharmacological approaches and confocal microscopy, we investigated the roles of NO and ROS during the germination of Puccinia striiformis Westend f. sp. tritici (Pst) the wheat stripe rust pathogen. Both NO and ROS have a crucial role in uredinial germination. The scavengers of NO and ROS delayed spore germination and decreased the lengths of germ tubes. A similar phenotype was produced after treatment with the promoter. However, the spores germinated and grew normally when the levels of NO and ROS were simultaneously elevated by the application of a promoter of NO and a donor of ROS. Confocal laser microscopy indicated that both NO and ROS preferentially localized at the germ pores and apexes of growing germ tubes when the ROS/NO ratio in the spores was maintained in a specific range. We concluded that both NO and ROS are critical signaling molecules in the pre-infection development of Pst and that the polar growth of the germ tube is coordinately regulated by NO and ROS.http://journal.frontiersin.org/Journal/10.3389/fmicb.2016.00178/fullGerminationNOROSRegulatePST
spellingShingle Shuining eYin
Shuining eYin
Zhijuan eGao
Chenfang eWang
Chenfang eWang
Lili eHuang
Lili eHuang
Zhensheng eKang
Zhensheng eKang
Hongchang eZhang
Hongchang eZhang
Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniospores
Frontiers in Microbiology
Germination
NO
ROS
Regulate
PST
title Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniospores
title_full Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniospores
title_fullStr Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniospores
title_full_unstemmed Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniospores
title_short Nitric oxide and reactive oxygen species coordinately regulate the germination of Puccinia striiformis f. sp. tritici urediniospores
title_sort nitric oxide and reactive oxygen species coordinately regulate the germination of puccinia striiformis f sp tritici urediniospores
topic Germination
NO
ROS
Regulate
PST
url http://journal.frontiersin.org/Journal/10.3389/fmicb.2016.00178/full
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