Molecular Evolution of Grass Stomata

scientific article published on 21 October 2016

Molecular Evolution of Grass Stomata is …
instance of (P31):
scholarly articleQ13442814
review articleQ7318358

External links are
P356DOI10.1016/J.TPLANTS.2016.09.005
P698PubMed publication ID27776931

P50authorYong-Ling RuanQ48024237
Yizhou WangQ50585749
Michael R BlattQ61770393
Eviatar NevoQ100749673
P2093author name stringGuang Chen
Guoping Zhang
Zhong-Hua Chen
Peter J Franks
Fei Dai
Adrian Hills
P2860cites workThe Norway spruce genome sequence and conifer genome evolutionQ22122154
P433issue2
P921main subjectstomataQ216635
P304page(s)124-139
P577publication date2016-10-21
P1433published inTrends in Plant ScienceQ15757515
P1476titleMolecular Evolution of Grass Stomata
P478volume22

Reverse relations

cites work (P2860)
Q91640301A Nck-associated protein 1-like protein affects drought sensitivity by its involvement in leaf epidermal development and stomatal closure in rice
Q91591833A constraint-relaxation-recovery mechanism for stomatal dynamics
Q52691961A2-type Cyclin is required for the Asymmetric Entry Division in Rice Stomatal Development.
Q46316324Abscisic acid (ABA) and key proteins in its perception and signaling pathways are ancient, but their roles have changed through time.
Q94561655Are Aquaporins Expressed in Stomatal Complexes Promising Targets to Enhance Stomatal Dynamics?
Q92982549BZU2/ZmMUTE controls symmetrical division of guard mother cell and specifies neighbor cell fate in maize
Q57168454Balancing Strength and Flexibility: How the Synthesis, Organization, and Modification of Guard Cell Walls Govern Stomatal Development and Dynamics
Q88107816Cortical microtubules and fusicoccin response in clustered stomatal guard cells induced by sucrose solution immersion
Q94561613Does Molecular and Structural Evolution Shape the Speedy Grass Stomata?
Q58746533Drought Induced Signaling in Rice: Delineating Canonical and Non-canonical Pathways
Q64106755Evolution of chloroplast retrograde signaling facilitates green plant adaptation to land
Q48282986Evolution of the Stomatal Regulation of Plant Water Content
Q36289080Evolutionary Conservation of ABA Signaling for Stomatal Closure.
Q92242381Exploiting natural variation and genetic manipulation of stomatal conductance for crop improvement
Q97883580Flanking Support: How Subsidiary Cells Contribute to Stomatal Form and Function
Q90166942Genome-wide survey and expression analysis of the SLAC/SLAH gene family in pear (Pyrus bretschneideri) and other members of the Rosaceae
Q54113368Genomic adaptation to drought in wild barley is driven by edaphic natural selection at the Tabigha Evolution Slope.
Q46316704Hypoxia Sensing in Plants: On a Quest for Ion Channels as Putative Oxygen Sensors.
Q64056778Impact of Stomatal Density and Morphology on Water-Use Efficiency in a Changing World
Q48276503Leaf Hydraulic Architecture and Stomatal Conductance: A Functional Perspective.
Q104581338Light Regulation of Stomatal Development and Patterning: Shifting the Paradigm from Arabidopsis to Grasses
Q64911537Loss or duplication of key regulatory genes coincides with environmental adaptation of the stomatal complex in Nymphaea colorata and Kalanchoe laxiflora.
Q48044762Mobile MUTE specifies subsidiary cells to build physiologically improved grass stomata.
Q33611666Molecular and Evolutionary Mechanisms of Cuticular Wax for Plant Drought Tolerance
Q39207475Origins and Evolution of Stomatal Development
Q90328827Overexpression of a SDD1-Like Gene From Wild Tomato Decreases Stomatal Density and Enhances Dehydration Avoidance in Arabidopsis and Cultivated Tomato
Q38674197Permanently open stomata of aquatic angiosperms display modified cellulose crystallinity patterns.
Q89965884Pores for Thought: Can Genetic Manipulation of Stomatal Density Protect Future Rice Yields?
Q64276756Response of Tibetan Wild Barley Genotypes to Drought Stress and Identification of Quantitative Trait Loci by Genome-Wide Association Analysis
Q55099822Roles of Chloroplast Retrograde Signals and Ion Transport in Plant Drought Tolerance.
Q46334017Specialized stomatal humidity responses underpin ecological diversity in C3 bromeliads.
Q96304786Stomata and Sporophytes of the Model Moss Physcomitrium patens
Q46588356Stomatal Function across Temporal and Spatial Scales: Deep-Time Trends, Land-Atmosphere Coupling and Global Models.
Q57472242Sucrose-induced stomatal closure is conserved across evolution
Q48340244Temporal Dynamics of Stomatal Behavior: Modeling and Implications for Photosynthesis and Water Use.
Q48276655The Membrane Transport System of the Guard Cell and Its Integration for Stomatal Dynamics.
Q89966017The Role of Grass MUTE Orthologues During Stomatal Development
Q90474769The influence of stomatal morphology and distribution on photosynthetic gas exchange
Q64954015Two Clade A Phosphatase 2Cs Expressed in Guard Cells Physically Interact With Abscisic Acid Signaling Components to Induce Stomatal Closure in Rice.
Q39091520What are the evolutionary origins of stomatal responses to abscisic acid in land plants?