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Titlebook: Gasotransmitters in Plants; The Rise of a New Pa Lorenzo Lamattina,Carlos García-Mata Book 2016 Springer International Publishing Switzerla

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NO Signalling in Plant Immunity but also displays immunoregulatory functions in which S-nitrosylation represents a signalling process of major importance. Over the last two decades, a growing body of evidence suggests that NO is also a major component of plant immunity. Our understanding of its role in plant defence has been enri
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Decoding the Interaction Between Nitric Oxide and Hydrogen Sulfide in Stomatal Movementard cell volume, driven by variations in the osmotic potential of the guard cells. This process is closely regulated by a complex signaling network that involves the participation of several second messengers including gasotransmitters. The importance of gaseous molecules in signaling has been highl
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Syntactic Techniques in Scene Analysisechanisms by which NO leads to changes in seed germination and root growth. This chapter briefly introduces the key processes for the NO transmission during seed germination and root development and focuses on the sensing mechanisms underlying the effects of NO and its interaction with other plant hormones linking these changes.
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Gasotransmission of Nitric Oxide (NO) at Early Plant Developmental Stagesechanisms by which NO leads to changes in seed germination and root growth. This chapter briefly introduces the key processes for the NO transmission during seed germination and root development and focuses on the sensing mechanisms underlying the effects of NO and its interaction with other plant hormones linking these changes.
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https://doi.org/10.1007/978-981-19-4514-4nzyme system which generates H.S and removes it has been studied in both animal cells and plants. In this section, the effects of H.S on plant growth, development, and stress resistance toward heavy metals, salt, drought, etc. are reviewed, and future perspectives are discussed.
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Book 2016lar signalling molecules in plants. .Common properties are shared by NO, H.2.S and CO: they are beneficial at low concentrations but hazardous in higher amounts; they are small molecules of gas; they can freely cross cell membranes; their effects do not rely on receptors; they are generated enzymati
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