Javascript must be enabled to continue!
‘Candidatus Phytoplasma solani’ interferes with the distribution and uptake of iron in tomato
View through CrossRef
Abstract
Background
‘Candidatus Phytoplasma solani’ is endemic in Europe and infects a wide range of weeds and cultivated plants. Phytoplasmas are prokaryotic plant pathogens that colonize the sieve elements of their host plant, causing severe alterations in phloem function and impairment of assimilate translocation. Typical symptoms of infected plants include yellowing of leaves or shoots, leaf curling, and general stunting, but the molecular mechanisms underlying most of the reported changes remain largely enigmatic. To infer a possible involvement of Fe in the host-phytoplasma interaction, we investigated the effects of ‘Candidatus Phytoplasma solani’ infection on tomato plants (Solanum lycopersicum cv. Micro-Tom) grown under different Fe regimes.
Results
Both phytoplasma infection and Fe starvation led to the development of chlorotic leaves and altered thylakoid organization. In infected plants, Fe accumulated in phloem tissue, altering the local distribution of Fe. In infected plants, Fe starvation had additive effects on chlorophyll content and leaf chlorosis, suggesting that the two conditions affected the phenotypic readout via separate routes. To gain insights into the transcriptional response to phytoplasma infection, or Fe deficiency, transcriptome profiling was performed on midrib-enriched leaves. RNA-seq analysis revealed that both stress conditions altered the expression of a large (> 800) subset of common genes involved in photosynthetic light reactions, porphyrin / chlorophyll metabolism, and in flowering control. In Fe-deficient plants, phytoplasma infection perturbed the Fe deficiency response in roots, possibly by interference with the synthesis or transport of a promotive signal transmitted from the leaves to the roots.
Conclusions
‘Candidatus Phytoplasma solani’ infection changes the Fe distribution in tomato leaves, affects the photosynthetic machinery and perturbs the orchestration of root-mediated transport processes by compromising shoot-to-root communication.
Springer Science and Business Media LLC
Title: ‘Candidatus Phytoplasma solani’ interferes with the distribution and uptake of iron in tomato
Description:
Abstract
Background
‘Candidatus Phytoplasma solani’ is endemic in Europe and infects a wide range of weeds and cultivated plants.
Phytoplasmas are prokaryotic plant pathogens that colonize the sieve elements of their host plant, causing severe alterations in phloem function and impairment of assimilate translocation.
Typical symptoms of infected plants include yellowing of leaves or shoots, leaf curling, and general stunting, but the molecular mechanisms underlying most of the reported changes remain largely enigmatic.
To infer a possible involvement of Fe in the host-phytoplasma interaction, we investigated the effects of ‘Candidatus Phytoplasma solani’ infection on tomato plants (Solanum lycopersicum cv.
Micro-Tom) grown under different Fe regimes.
Results
Both phytoplasma infection and Fe starvation led to the development of chlorotic leaves and altered thylakoid organization.
In infected plants, Fe accumulated in phloem tissue, altering the local distribution of Fe.
In infected plants, Fe starvation had additive effects on chlorophyll content and leaf chlorosis, suggesting that the two conditions affected the phenotypic readout via separate routes.
To gain insights into the transcriptional response to phytoplasma infection, or Fe deficiency, transcriptome profiling was performed on midrib-enriched leaves.
RNA-seq analysis revealed that both stress conditions altered the expression of a large (> 800) subset of common genes involved in photosynthetic light reactions, porphyrin / chlorophyll metabolism, and in flowering control.
In Fe-deficient plants, phytoplasma infection perturbed the Fe deficiency response in roots, possibly by interference with the synthesis or transport of a promotive signal transmitted from the leaves to the roots.
Conclusions
‘Candidatus Phytoplasma solani’ infection changes the Fe distribution in tomato leaves, affects the photosynthetic machinery and perturbs the orchestration of root-mediated transport processes by compromising shoot-to-root communication.
Related Results
Evaluation of Selected Tomato Cultivars Effectiveness Against Tomato Yellow Leaf Curl Virus (TYLCV) and Its PCR-Based Molecular Detection
Evaluation of Selected Tomato Cultivars Effectiveness Against Tomato Yellow Leaf Curl Virus (TYLCV) and Its PCR-Based Molecular Detection
Viral diseases are the primary impediment to tomato cultivation. One of the most destructive viral diseases is Tomato yellow leaf curl virus (TYLCV) transmitted by the insect vecto...
Importance of using tomato serum in the development of functional food products
Importance of using tomato serum in the development of functional food products
Background: The significance of incorporating tomatoes in the development of functional food products is due to their content of vitamins, carotenoids, and minerals. In industrial ...
First Report of ‘Candidatus Phytoplasma australiense’ in Potato
First Report of ‘Candidatus Phytoplasma australiense’ in Potato
In January of 2009, potato plants (Solanum tuberosum) from a commercial crop in the Waikato Region, New Zealand were observed to have symptoms of upward rolling and purpling of the...
Elimination of ‘Candidatus Phytoplasma asteris’ from rose (Rosa × hybrida L.) by application of antibiotics under in-vitro and in-vivo conditions
Elimination of ‘Candidatus Phytoplasma asteris’ from rose (Rosa × hybrida L.) by application of antibiotics under in-vitro and in-vivo conditions
Rose is severely affected by phytoplasma diseases, causing significant loss in flower quality. A valid control strategy is not yet available for managing phytoplasma diseases in ro...
Molecular Characterization of a ‘Candidatus Phytoplasma trifolii’ Strain Associated with Little Leaf and Decline of Ashwagandha from Eastern Uttar Pradesh, India
Molecular Characterization of a ‘Candidatus Phytoplasma trifolii’ Strain Associated with Little Leaf and Decline of Ashwagandha from Eastern Uttar Pradesh, India
During a survey conducted in ashwagandha (Withania somnifera) fields grown at Acharya Narendra Deva University of Agriculture and Technology, Kumarganj, Ayodhya, Uttar Pradesh, Ind...
Control of Early Blight of Tomato Caused by Alternaria Solani and Screening of Tomato Varieties against the Pathogen
Control of Early Blight of Tomato Caused by Alternaria Solani and Screening of Tomato Varieties against the Pathogen
Introduction:Early blight is a common disease of tomato, which is caused byAlternaria solani.Objectives:This work was accompanied to find an alternative to chemical fungicides and ...
Dieback of apricot plantations caused by 'Ca. Phytoplasma prunorum' in Borsod-Abaúj-Zemplén county (Northern-Hungary)
Dieback of apricot plantations caused by 'Ca. Phytoplasma prunorum' in Borsod-Abaúj-Zemplén county (Northern-Hungary)
Plant diseases caused by phytoplasmas have increasing importance in all over the world for fruit growers. Lately, phytoplasma diseases occur on many fruit varieties and responsible...
Candidatus
Mancarchaeum
Candidatus
Mancarchaeum
Abstract
Manc.ar.chae'um. L. masc. adj.
mancus
, crip...

