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1
Out of the mouths of plants: the molecular basis of the evolution and diversity of stomatal development.
Plant Cell. 2010 Feb;22(2):296-306. doi: 10.1105/tpc.109.072777. Epub 2010 Feb 23.
2
SCREAM/ICE1 and SCREAM2 specify three cell-state transitional steps leading to arabidopsis stomatal differentiation.
Plant Cell. 2008 Jul;20(7):1775-85. doi: 10.1105/tpc.108.060848. Epub 2008 Jul 18.
6
Termination of asymmetric cell division and differentiation of stomata.
Nature. 2007 Feb 1;445(7127):501-5. doi: 10.1038/nature05467. Epub 2006 Dec 20.
8
Stomatal development in Arabidopsis and grasses: differences and commonalities.
Int J Dev Biol. 2011;55(1):5-10. doi: 10.1387/ijdb.103094ls.
9
Emerging roles of protein phosphorylation in regulation of stomatal development.
J Plant Physiol. 2023 Jan;280:153882. doi: 10.1016/j.jplph.2022.153882. Epub 2022 Nov 26.
10
Origins and Evolution of Stomatal Development.
Plant Physiol. 2017 Jun;174(2):624-638. doi: 10.1104/pp.17.00183. Epub 2017 Mar 29.

引用本文的文献

1
Guardians of Water and Gas Exchange: Adaptive Dynamics of Stomatal Development and Patterning.
Plants (Basel). 2025 Aug 3;14(15):2405. doi: 10.3390/plants14152405.
2
Image-Based Quantitative Analysis of Epidermal Morphology in Wild Potato Leaves.
Plants (Basel). 2024 Nov 1;13(21):3084. doi: 10.3390/plants13213084.
3
A history-dependent integrase recorder of plant gene expression with single-cell resolution.
Nat Commun. 2024 Oct 30;15(1):9362. doi: 10.1038/s41467-024-53716-1.
5
Experimental validation of the mechanism of stomatal development diversification.
J Exp Bot. 2023 Sep 29;74(18):5667-5681. doi: 10.1093/jxb/erad279.
6
Stomatal clustering in improves water use efficiency by modulating stomatal movement and leaf structure.
Plant Environ Interact. 2022 Jul 4;3(4):141-154. doi: 10.1002/pei3.10086. eCollection 2022 Aug.
7
Improving crop yield potential: Underlying biological processes and future prospects.
Food Energy Secur. 2022 Dec 2;12(1):e435. doi: 10.1002/fes3.435. eCollection 2023 Jan.
8
How Does Stomatal Density and Residual Transpiration Contribute to Osmotic Stress Tolerance?
Plants (Basel). 2023 Jan 21;12(3):494. doi: 10.3390/plants12030494.
10
The Role of Grass Orthologs in GMC Progression and GC Morphogenesis.
Front Plant Sci. 2021 Jun 24;12:678417. doi: 10.3389/fpls.2021.678417. eCollection 2021.

本文引用的文献

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Selection pressures on stomatal evolution.
New Phytol. 2002 Mar;153(3):371-386. doi: 10.1046/j.0028-646X.2001.00334.x. Epub 2002 Mar 5.
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Stomatal architecture and evolution in basal angiosperms.
Am J Bot. 2005 Oct;92(10):1595-615. doi: 10.3732/ajb.92.10.1595.
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Regional specification of stomatal production by the putative ligand CHALLAH.
Development. 2010 Feb;137(3):447-55. doi: 10.1242/dev.040931. Epub 2010 Jan 7.
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Stomagen positively regulates stomatal density in Arabidopsis.
Nature. 2010 Jan 14;463(7278):241-4. doi: 10.1038/nature08682. Epub 2009 Dec 9.
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Stomatal density is controlled by a mesophyll-derived signaling molecule.
Plant Cell Physiol. 2010 Jan;51(1):1-8. doi: 10.1093/pcp/pcp180. Epub 2009 Dec 9.
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Ethylene-induced hyponastic growth in Arabidopsis thaliana is controlled by ERECTA.
Plant J. 2010 Jan;61(1):83-95. doi: 10.1111/j.1365-313X.2009.04035.x. Epub 2009 Oct 1.
9
Cryptochromes, phytochromes, and COP1 regulate light-controlled stomatal development in Arabidopsis.
Plant Cell. 2009 Sep;21(9):2624-41. doi: 10.1105/tpc.109.069765. Epub 2009 Sep 30.
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BASL controls asymmetric cell division in Arabidopsis.
Cell. 2009 Jun 26;137(7):1320-30. doi: 10.1016/j.cell.2009.04.018. Epub 2009 Jun 11.

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