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Evolution of in the angiosperms: sequence, splicing, and expression in a clade of early transitional mycoheterotrophic orchids.
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1
HO as a Feedback Signal on Dual-Located WHIRLY1 Associates with Leaf Senescence in .
Cells. 2019 Dec 6;8(12):1585. doi: 10.3390/cells8121585.
2
PBS3 and EPS1 Complete Salicylic Acid Biosynthesis from Isochorismate in Arabidopsis.
Mol Plant. 2019 Dec 2;12(12):1577-1586. doi: 10.1016/j.molp.2019.11.005. Epub 2019 Nov 22.
3
PUB25 and PUB26 Promote Plant Freezing Tolerance by Degrading the Cold Signaling Negative Regulator MYB15.
Dev Cell. 2019 Oct 21;51(2):222-235.e5. doi: 10.1016/j.devcel.2019.08.008. Epub 2019 Sep 19.
4
Isochorismate-derived biosynthesis of the plant stress hormone salicylic acid.
Science. 2019 Aug 2;365(6452):498-502. doi: 10.1126/science.aaw1720.
5
Impaired PSII Proteostasis Promotes Retrograde Signaling via Salicylic Acid.
Plant Physiol. 2019 Aug;180(4):2182-2197. doi: 10.1104/pp.19.00483. Epub 2019 Jun 3.
6
Control of retrograde signalling by protein import and cytosolic folding stress.
Nat Plants. 2019 May;5(5):525-538. doi: 10.1038/s41477-019-0415-y. Epub 2019 May 6.
7
A MYB Triad Controls Primary and Phenylpropanoid Metabolites for Pollen Coat Patterning.
Plant Physiol. 2019 May;180(1):87-108. doi: 10.1104/pp.19.00009. Epub 2019 Feb 12.
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Current understanding of GUN1: a key mediator involved in biogenic retrograde signaling.
Plant Cell Rep. 2019 Jul;38(7):819-823. doi: 10.1007/s00299-019-02383-4. Epub 2019 Jan 22.
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Plastid-to-Nucleus Retrograde Signalling during Chloroplast Biogenesis Does Not Require ABI4.
Plant Physiol. 2019 Jan;179(1):18-23. doi: 10.1104/pp.18.01047. Epub 2018 Oct 30.

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