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Titlebook: Ethylene in Plants; Chi-Kuang Wen Book 2015 Springer Science+Business Media Dordrecht 2015 Ethylene biosynthesis.Ethylene receptor.Ethylen

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Why the Need to Consider GIs in the South?,nsduction to give an overall picture of the ethylene signaling cascade. We also discuss regulatory components modifying the signaling components in the ethylene signaling pathway. Finally, we pose intriguing questions related to ethylene actions.
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The Aquisition of German Syntaxstalk between these hormones. As both of these hormones lead to profound changes in gene expression, genome-wide transcript abundance data sets are identifying additional genes that are induced or repressed through this hormonal crosstalk. Experimental tests of predicted regulatory networks involvin
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Education and Networks: The Meso Dimension network. In addition, ethylene is emerging as a key modulator of plant-microbe interactions beyond plant immunity. This chapter highlights the significance of and mechanisms underlying the ethylene signaling network in plant-microbe interactions.
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https://doi.org/10.1007/978-94-009-3405-4zed from .-adenosylmethionine (SAM) via 1-aminocyclopropane-1-carboxylic acid (ACC). In plants, ACC synthase (ACS) and ACC oxidase (ACO), two key enzymes in the ethylene biosynthetic pathway, are tightly regulated both transcriptionally and posttranscriptionally to modulate ethylene biosynthesis. Th
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What Policies Do You Need? And When?,pects of plant growth and development as well as the interaction of plants with their environment. The perception and signaling of ethylene in plants has intrigued many biologists since its discovery. The gaseous ethylene was established as a growth hormone in the early twentieth century, its biosyn
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https://doi.org/10.1007/978-94-017-1235-4g about how ethylene binds to the receptors and a signal is transduced. These studies have shown that a copper ion is a required cofactor that is delivered by the RAN1 (RESPONSIVE TO ANTAGONIST1) copper transporter. Additionally, biochemical studies have determined that the receptors are functional
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,Modular Programming with LÖVE,s with critical pathway components such as CTR1 and EIN2 are likely to involve multiple members of the receptor family. Additional interactions, such as that involving the receptor ETR1 and regulatory protein RTE1, may allow for isoform-specific signal output. Ethylene receptors also form higher ord
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