Abscisic Acid: Metabolism, Transport and Signaling by Da-Peng Zhang

By Da-Peng Zhang

This ebook offers a accomplished assessment of all points of the molecular and cellphone biology of abscisic acid (ABA) metabolism, shipping and sign transduction, masking our present realizing of ABA in addition to learn tendencies. the rural importance of ABA metabolism, delivery and sign transduction is additionally mentioned. The phytohormone ABA regulates many elements of plant improvement and performs a imperative function in plant version to environmental stresses. during the last few a long time, significant advances were made within the learn of ABA metabolism, shipping and sign transduction, tremendously deepening our realizing of the underlying mechanisms of ABA functionality on the molecular, mobile and whole-plant point and assisting us enhance vegetation’ environmental tolerance. This e-book presents a necessary source for researchers and complex scholars drawn to plant biology and agriculture.

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Cinerea and C. 1) (Hirai et al. 1986; Okamoto et al. 1988). On the other hand, 1′,4′-trans-dihydro-γ-ionylideneacetic acid is thought to be the intermediate of ABA biosynthesis in C. 1) (Oritani et al. 1985). During the conversion from ionylideneethanes to ABA, atmospheric oxygen is incorporated into ABA at C-1, -1, C-1′, and C-4′ in C. cruenta and B. cinerea (Inomata et al. 2004a, b). P450 was supposed to be involved in these oxidation steps since P450 inhibitors could effectively block ABA production (Norman et al.

The existence of 9-cis-violaxanthin could compensate for the loss of neoxanthin in the nxd1 mutant (Neuman et al. 2014). Arabidopsis NXD1 protein expressed in E. coli also failed to show NSY activity even when it was coexpressed with ABA4 (Neuman et al. 2014). Further analysis will be necessary to reveal how these genes contribute to neoxanthin synthesis. The results from the analyses of neoxanthin-deficient mutants indicate that the preferred substrate of NCED could differ according to plant species and both 9-cis-violaxanthin and 9′-cis-neoxanthin could be the in vivo substrates of NCED.

Science. 1968;159:1493. Agrawal GK, Yamazaki M, Kobayashi M, Hirochika R, Miyao A, Hirochika H. Screening of the rice viviparous mutants generated by endogenous retrotransposon Tos17 insertion. Tagging of a zeaxanthin epoxidase gene and a novel ostatc gene. Plant Physiol. 2001;125:1248–57. Al-Babili S, Hugueney P, Schledz M, Welsch R, Frohnmeyer H, Laule O, Beyer P. Identification of a novel gene coding for neoxanthin synthase from Solanum tuberosum. FEBS Lett. 2000;485:168–72. Alder A, Jamil M, Marzorati M, Bruno M, Vermathen M, Bigler P, Ghisla S, Bouwmeester H, Beyer P, Al-Babili S.

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