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  1. Plant Molecular Biology (20)
  2. Annual Plant Reviews, Senescence Processes in Plants / Edition 1
  3. Read Annual Plant Reviews Volume 26 Senescence Processes In Plants

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Plant Molecular Biology (20)

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Annual Plant Reviews, Senescence Processes in Plants (Volume 26)

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Annual Plant Reviews, Senescence Processes in Plants / Edition 1

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  • Wiley Titles in Plant Molecular Biology.
  • References.
  • Traveling Solo, 6th: Advice and Ideas for More than 250 Great Vacations?
  • Volume 70, | Annual Review of Plant Biology.
  • Aging in Perennials: Critical Reviews in Plant Sciences: Vol 26, No 3.
  • Plant Molecular Biology.

LibraryThing, fans, personalities, improvements, normativity theoSapiens, Amazon, info, Bruna, etc. For read Annual Plant Reviews, ' tallest Understanding '. For change, country evolution concern. Michelle L. Jones , Gunching S. Chaffin , Jocelyn R. Eason , David G Clark. Nectar traits in Nicotiana section Alatae Solanaceae in relation to floral traits, pollinators, and mating system.

Rainee L Kaczorowski , Mark C. Gardener , Timothy Philip Holtsford. Delay of Iris flower senescence by protease inhibitors. Caroline Pak , Wouter G. Gene expression patterns to define stages of post-harvest senescence in Alstroemeria petals. Emily Breeze , C. Related Papers. During the past decade, a flurry of research focusing on the role of peptides as short- and long-distance signaling molecules in plant cell communication has been undertaken.

Here, we focus on peptides derived from nonfunctional precursors, and we address Figure 1: Processing of peptides containing PTMs and Cys-rich peptides throughout the secretory pathway. Most peptide ligands are synthetized as prepropeptides containing a sorting sequence directing Figure 2: How to identify a peptide—receptor pair.

Subsequently, a synthetic or recombinant peptide can be used in a Figure 3: Acquisition of signal specificity. Specificity of a peptide ligand—induced response can arise at various stages of the signaling event. Abbreviations: MAPK, mitogen-activated protein kinase; Figure 4: Correlation between the evolution of peptide families and different plant traits.

A simplified plant evolution map illustrates the appearance of several peptide families and the peptide dive Although flavor is an essential element for consumer acceptance of food, breeding programs have focused primarily on yield, leading to significant declines in flavor for many vegetables.

The deterioration of flavor quality has concerned breeders; however, Figure 1: The content and analytical methods of big data in biological studies.

Read Annual Plant Reviews Volume 26 Senescence Processes In Plants

Big data includes information about the genome, transcriptome, proteome, and metabolome and use of multi-omics methods. Figure 2: Metabolic pathways for synthesis of flavor-associated sulfur compounds in Allium and Brassica. The biosynthetic pathways of the CSOs, glucosinolates, and their derived odor volatiles by alli Figure 3: Metabolic pathways of terpenoid-derived flavor compounds.

Both the ME Heterotrimeric GTP-binding proteins are key regulators of a multitude of signaling pathways in all eukaryotes. Although the core G-protein components and their basic biochemistries are broadly conserved throughout evolution, the regulatory mechanisms of G Figure 1: Conventional G-protein signaling mechanism.

Figure 2: Mechanistic details of the G-protein cycle in plants. Regulation during a immune response in Arabidopsis, b SAM development in maize, and c nodule development in soybean. A receptor-li RGS1 inhibits the phospholipase act Plant cells divide their cytoplasmic content by forming a new membrane compartment, the cell plate, via a rerouting of the secretory pathway toward the division plane aided by a dynamic cytoskeletal apparatus known as the phragmoplast. The phragmoplast Figure 1: The cytoskeletal cell division cycle and division site selection, establishment, and maintenance.

Figure 2: Network of genetic and molecular interactions between currently known division site residents with regard to division plane selection, establishment, and maintenance. Figure 3: Phragmoplast expansion during cytokinesis in land plants. The organization of the cytokinetic apparatus at a an early stage and b,c late stages of cytokinesis with emphases on b microt Figure 4: Different modes of cytokinesis and phylogeny of streptophytes and land plants.

Munenori Kitagawa and David Jackson Vol. A fascinating feature of plant growth and development is that plants initiate organs continually throughout their lifespan. The ability to do this relies on specialized groups of pluripotent stem cells termed meristems, which allow for the elaboration of Figure 1: Micrographs of shoot and root meristems. Figure 2: Multiple feedbacks and inputs control WUS expression in the shoot meristem. Figure 3: Meristem mutant phenotypes in Arabidopsis and dicot crop plants.

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Figure 4: Relationship between meristem size and kernel yield in maize. A gene that negatively regulates shoot meristem size can exist in different allelic states; high activity has small meristems an Bhalerao Vol. Stem cell populations in meristematic tissues at distinct locations in the plant body provide the potency of continuous plant growth.