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1
Investigating mechanisms involved in the self-incompatibility response in Papaver rhoeas.
Philos Trans R Soc Lond B Biol Sci. 2003 Jun 29;358(1434):1033-6. doi: 10.1098/rstb.2003.1288.
2
A mitogen-activated protein kinase signals to programmed cell death induced by self-incompatibility in Papaver pollen.
Plant Physiol. 2007 Sep;145(1):236-45. doi: 10.1104/pp.107.101741. Epub 2007 Jul 27.
3
Self-incompatibility in Papaver: signalling to trigger PCD in incompatible pollen.
J Exp Bot. 2008;59(3):481-90. doi: 10.1093/jxb/erm195. Epub 2007 Sep 14.
4
Signals and targets of the self-incompatibility response in pollen of Papaver rhoeas.
J Exp Bot. 2003 Jan;54(380):141-8. doi: 10.1093/jxb/erg001.
5
Taking one for the team: self-recognition and cell suicide in pollen.
J Exp Bot. 2014 Mar;65(5):1331-42. doi: 10.1093/jxb/ert468. Epub 2014 Jan 21.
6
Self-incompatibility in Papaver: identification of the pollen S-determinant PrpS.
Biochem Soc Trans. 2010 Apr;38(2):588-92. doi: 10.1042/BST0380588.
7
Self-incompatibility in Papaver targets soluble inorganic pyrophosphatases in pollen.
Nature. 2006 Nov 23;444(7118):490-3. doi: 10.1038/nature05311. Epub 2006 Nov 5.
8
Self-incompatibility triggers programmed cell death in Papaver pollen.
Nature. 2004 May 20;429(6989):305-9. doi: 10.1038/nature02540.
9
The actin cytoskeleton is a target of the self-incompatibility response in Papaver rhoeas.
J Exp Bot. 2003 Jan;54(380):103-13. doi: 10.1093/jxb/erg003.
10
MAP Kinase PrMPK9-1 Contributes to the Self-Incompatibility Response.
Plant Physiol. 2017 Jun;174(2):1226-1237. doi: 10.1104/pp.17.00213. Epub 2017 Apr 6.

引用本文的文献

1
Studying on the strictly self-compatibility mechanism of 'Liuyefeitao' peach (Prunus persica L.).
PLoS One. 2018 Aug 1;13(8):e0200914. doi: 10.1371/journal.pone.0200914. eCollection 2018.
2
Senescence and programmed cell death in plants: polyamine action mediated by transglutaminase.
Front Plant Sci. 2014 Apr 7;5:120. doi: 10.3389/fpls.2014.00120. eCollection 2014.
4
Evolutionary genetics of an S-like polymorphism in Papaveraceae with putative function in self-incompatibility.
PLoS One. 2011;6(8):e23635. doi: 10.1371/journal.pone.0023635. Epub 2011 Aug 31.
5
MYB98 positively regulates a battery of synergid-expressed genes encoding filiform apparatus localized proteins.
Plant Cell. 2007 Aug;19(8):2557-68. doi: 10.1105/tpc.107.052076. Epub 2007 Aug 10.
6
The cytoskeleton as a regulator and target of biotic interactions in plants.
Plant Physiol. 2004 Dec;136(4):3864-76. doi: 10.1104/pp.104.052159.
7
The molecular and genetic bases of S-RNase-based self-incompatibility.
Plant Cell. 2004;16 Suppl(Suppl):S72-83. doi: 10.1105/tpc.016154. Epub 2004 Mar 9.

本文引用的文献

1
The different mechanisms of gametophytic self-incompatibility.
Philos Trans R Soc Lond B Biol Sci. 2003 Jun 29;358(1434):1025-32. doi: 10.1098/rstb.2003.1287.
2
Signals and targets of the self-incompatibility response in pollen of Papaver rhoeas.
J Exp Bot. 2003 Jan;54(380):141-8. doi: 10.1093/jxb/erg001.
3
5
Involvement of extracellular calcium influx in the self-incompatibility response of Papaver rhoeas.
Plant J. 2002 Feb;29(3):333-45. doi: 10.1046/j.1365-313x.2002.01219.x.
6
Plant mitogen-activated protein kinase signaling cascades.
Curr Opin Plant Biol. 2001 Oct;4(5):392-400. doi: 10.1016/s1369-5266(00)00191-6.

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