Impact of Atmospheric H2S, Salinity and Anoxia on Sulfur Metabolism in Zea mays
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-56526-2_9
Reference23 articles.
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3. Bloem E, Haneklaus S, Schnug E (2014) Milestones in plant sulfur research on sulfur-induced-resistance (SIR) in Europe. Front Plant Sci 5:779
4. Bouranis DL, Chorianopoulou SN, Siyiannis VF, Protonotarios VE, Hawkesford MJ (2003) Aerenchyma formation in roots of maize during sulphate starvation. Planta 217:382–391
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1. Atmospheric H2S exposure does not affect stomatal aperture in maize;Planta;2020-09-24
2. Partitioning of dry matter and minerals in Kenyan common guava under salt stress: implications for selection of adapted accessions for saline soils;Forests, Trees and Livelihoods;2020-04-02
3. Atmospheric H2S: Impact on Plant Functioning;Frontiers in Plant Science;2019-06-11
4. DMSP: Occurrence in Plants and Response to Salinity in Zea mays;Proceedings of the International Plant Sulfur Workshop;2017
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