Programmed cell death in floral organs: how and why do flowers die?
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Evolution of plant senescenceCaspases in plants: metacaspase gene family in plant stress responses.A comparison of leaf and petal senescence in wallflower reveals common and distinct patterns of gene expression and physiology.Characterization and structural analysis of wild type and a non-abscission mutant at the development funiculus (Def) locus in Pisum sativum L.Chapter 5. Nuclear actin-related proteins in epigenetic control.Cellular localization of ROS and NO in olive reproductive tissues during flower development.Programmed cell death in kiwifruit stigmatic arms and its relationship to the effective pollination period and the progamic phase.Mastoparan-induced programmed cell death in the unicellular alga Chlamydomonas reinhardtiiMembers of the XB3 family from diverse plant species induce programmed cell death in Nicotiana benthamianaA Petunia homeodomain-leucine zipper protein, PhHD-Zip, plays an important role in flower senescenceProteomics and transcriptomics analyses of Arabidopsis floral buds uncover important functions of ARABIDOPSIS SKP1-LIKE1.Interaction of plant growth regulators and reactive oxygen species to regulate petal senescence in wallflowers (Erysimum linifolium).Arabinogalactan-protein secretion is associated with the acquisition of stigmatic receptivity in the apple flower.Intracellular energy depletion triggers programmed cell death during petal senescence in tulip.Mineral nutrient remobilization during corolla senescence in ethylene-sensitive and -insensitive flowersIntegrated signaling in flower senescence: an overview.Programmed cell death promotes male sterility in the functional dioecious Opuntia stenopetala (Cactaceae)Infection of Ustilaginoidea virens intercepts rice seed formation but activates grain-filling-related genes.Transglutaminases: widespread cross-linking enzymes in plants.Senescence and programmed cell death in plants: polyamine action mediated by transglutaminase.Is there an important role for reactive oxygen species and redox regulation during floral senescence?From models to ornamentals: how is flower senescence regulated?Flower senescence: some molecular aspects.Polyamines are common players in different facets of plant programmed cell death.Morphological changes in senescing petal cells and the regulatory mechanism of petal senescence.Genetic regulation of maize flower development and sex determination.Xylogenesis in zinnia (Zinnia elegans) cell cultures: unravelling the regulatory steps in a complex developmental programmed cell death event.Cellular and Molecular Changes Associated with Onion Skin Formation Suggest Involvement of Programmed Cell Death.Peroxynitrite mediates programmed cell death both in papillar cells and in self-incompatible pollen in the olive (Olea europaea L.).A specific group of genes respond to cold dehydration stress in cut Alstroemeria flowers whereas ambient dehydration stress accelerates developmental senescence expression patterns.Expression analysis of the BFN1 nuclease gene promoter during senescence, abscission, and programmed cell death-related processes.Physiological and biochemical changes associated with flower development and senescence in so far unexplored Helleborus orientalis Lam. cv. Olympicus.The acropetal wave of developmental cell death of tobacco corolla is preceded by activation of transglutaminase in different cell compartments.Epigenetic changes accompany developmental programmed cell death in tapetum cells.Ricinosomes predict programmed cell death leading to anther dehiscence in tomato.Programmed cell death during floral nectary senescence in Ipomoea purpurea.Variation in floral longevity in the genus Leptosiphon: mating system consequences.InPSR26, a putative membrane protein, regulates programmed cell death during petal senescence in Japanese morning glory.Transglutaminase activity changes during the hypersensitive reaction, a typical defense response of tobacco NN plants to TMV.Identification of a NAC transcription factor, EPHEMERAL1, that controls petal senescence in Japanese morning glory.
P2860
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P2860
Programmed cell death in floral organs: how and why do flowers die?
description
2006 nî lūn-bûn
@nan
2006 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2006 թվականի հունվարին հրատարակված գիտական հոդված
@hy
2006年の論文
@ja
2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
name
Programmed cell death in floral organs: how and why do flowers die?
@ast
Programmed cell death in floral organs: how and why do flowers die?
@en
Programmed cell death in floral organs: how and why do flowers die?
@nl
type
label
Programmed cell death in floral organs: how and why do flowers die?
@ast
Programmed cell death in floral organs: how and why do flowers die?
@en
Programmed cell death in floral organs: how and why do flowers die?
@nl
prefLabel
Programmed cell death in floral organs: how and why do flowers die?
@ast
Programmed cell death in floral organs: how and why do flowers die?
@en
Programmed cell death in floral organs: how and why do flowers die?
@nl
P2860
P356
P1433
P1476
Programmed cell death in floral organs: how and why do flowers die?
@en
P2860
P304
P356
10.1093/AOB/MCJ051
P407
P577
2006-01-04T00:00:00Z