Annual Plant Reviews, Intracellular Signaling in Plants by Zhenbiao Yang

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By Zhenbiao Yang

Annual Plant studies, quantity 33
Intracellular Signaling in Plants

An fascinating and demanding query in our realizing of plant developmental programming and responses to the surroundings is what forms of innovations and mechanisms plant cells use for the transmission and the combination of varied developmental and environmental signs. This booklet offers perception into this primary query in plant biology.

Intracellular Signaling in crops is a wonderful new addition to the more and more recognized and revered Annual Plant studies and provides the reader:

* Chapters ready via an esteemed group of overseas authors
* A constant and well-illustrated method of the topic matter
* a useful source for all researchers and pros in plant biochemistry and biology

this significant quantity additionally offers with significant identified signaling mechanisms and several other consultant intracellular signaling networks in vegetation, integrating accomplished reports and insights from best specialists within the field.

Libraries in all universities and study institutions the place organic sciences are studied and taught must have copies of this crucial paintings on their shelves.

additionally to be had from Wiley-Blackwell
Annual Plant experiences, quantity 32
mobilephone Cycle keep watch over and Plant Development
Edited by way of Dirk Inzé
Print: 9781405150439
on-line: 9780470988923
DOI: 10.1002/9780470988923

Annual Plant studies, quantity 31
Plant Mitochondria
Edited via David Logan
Print: 9781405149396
on-line: 9780470986592
DOI: 10.1002/9780470986592

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Additional info for Annual Plant Reviews, Intracellular Signaling in Plants (Volume 33)

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2006). , 2004). Known PAMPs are derived from essential structural component of pathogens, such as fungal cell wall fragments and bacterial flagellin fragments (Gomez-Gomez and Boller, 2002). , rapid alkalization assay of plant cell cultures), several peptide fragments have been identified as PAMPs. , 2004). A receptor for flg22, FLS2 (FLAGELLIN INSENSITIVE 2), was identified from genetic screen for Arabidopsis mutants insensitive to flg22 (Gomez-Gomez and Boller, 2000). , 2006). Strikingly, FLS2 and EFR are closely related LRR-RKs, implying that the plant LRR-RLKs underwent duplication and specification to allow detection of diverse PAMPs.

Consistently, the ERECTA-family genes display intricate overlapping expression patterns during organ primordia growth. , 2007). Therefore, ERL2 possesses the most minor role in promoting cell division and organ growth. The dispensable roles of ERLs (especially ERL2) during organ growth lead to a question: how and why were these duplicated RLK genes maintained throughout the course of evolution? Briggs et al. , 2006). 2 BRI1 and its paralogs: specialized expression domains Brassinosteroids (BRs) are growth-promoting steroid hormones in plants, and loss of their biosynthesis results in severely dwarfed plants and male sterility (Bishop and Koncz, 2002).

2006) tested the biological activities of various synthetic CLV3 peptides. The direct application of the CLV3 peptide covering the CLE motif (CLV3L) to a shoot apex resulted in SAM differentiation, while deletion of a single arginine residue within the CLE motif abolished its activity (Fig. 1, Color plate 1). , 2006). MCLV3 is a dodeca peptide with two hyrdoxyproline residues (RTVPh SGPh DPLHH) (Fig. 2), and is capable of terminating undifferentiated stem cell population when applied directly (Fig.

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