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282:36292–36302
Kim SY, Kim SG, Kim YS, Seo PJ, Bae M, Yoon HK, Park CM (2007b) Exploring membraneassociated NAC transcription factors in Arabidopsis: implications for membrane biology in
genome regulation. Nucleic Acids Res 35:203–213
Kim MJ, Park MJ, Seo PJ, Song JS, Kim HJ, Park CM (2012) Controlled nuclear import of the
transcription factor NTL6 reveals a cytoplasmic role of SnRK2.8 in the drought-stress response.
Biochem J 448:353–363
Kjaersgaard T, Jensen MK, Christiansen MW, Gregersen P, Kragelund BB, Skriver K (2011)
Senescence-associated barley NAC (NAM, ATAF1,2, CUC) transcription factor interacts
with radical-induced cell death 1 through a disordered regulatory domain. J Biol Chem
14:35418–35429
Lamara M, Raherison E, Lenz P, Beaulieu J, Bousquet J, Mackay J (2016) Genetic architecture
of wood properties based on association analysis and co-expression networks in white spruce.
New Phytol 210:240–255
Larsson E, Sundström JF, Sitbon F, von Arnold S (2012) Expression of PaNAC01, a Picea abies
CUP-SHAPED COTYLEDON orthologue, is regulated by polar auxin transport and associated
with differentiation of the shoot apical meristem and formation of separated cotyledons.
Ann Bot 110:923–934
Li Q, Lin Y-C, Sun Y-H, Song J, Chen H, Zhang XH, Sederoff RR, Chiang VL (2012)
Splice variant of the SND1 transcription factor is a dominant negative of SND1 members
and their regulation in Populus trichocarpa. Proc Natl Acad Sci U S A 109:14699–14704
Lin YC, Li W, Sun YH, Kumari S, Wei H, Li Q, Tunlaya-Anukit S, Sederoff RR, Chiang VL (2013)
SND1 transcription factor-directed quantitative functional hierarchical genetic regulatory network in wood formation in Populus trichocarpa. Plant Cell 25:4324–4441
Liu C, Zhang X, Zhang K, An H, Hu K, Wen J, Shen J, Ma C, Yi B, Tu J, Fu T (2015) Comparative
analysis of the Brassica napus root and leaf transcript profiling in response to drought stress.
Int J Mol Sci 16:18752–18777
Lunden K, Danielsson M, Durling MB, Ihrmark K, Nemesio-Gorriz M, Stenlid J, Asiegbu FO,
Elfstrand M (2015) Transcriptional responses associated with virulence and defence in the
interaction between Heterobasidion annosum s. s. and Norway spruce. PLoS One 10:e0131182
Maleck K, Levine A, Eulgem T, Morgan A, Schmid J, Lawton KA, Dangl JL, Dietrich RA (2000)
The transcriptome of Arabidopsis thaliana during systemic acquired resistance. Nat Genet
26:403–410
Mao X, Zhang H, Qian X, Li A, Zhao G, Jing R (2012) TaNAC2, a NAC-type wheat transcription
factor conferring enhanced multiple abiotic stress tolerances in Arabidopsis. J Exp Bot
63:2933–2946
Maugarny A, Goncalves B, Arnaud N, Laufs P (2015) CUC transcription factors: to the meristem
and beyond. In: Gonzalez DH (ed) Plant transcription factors. Academic Press, Boston, MA,
pp 229–247
Maugarny-Calès A, Gonçalves B, Jouannic S, Melkonian M, Wong GKS, Laufs P (2016)
Apparition of the NAC transcription factors predates de emergence of land plants. Mol Plant
9:1345–1348
McAdam SA, Brodribb TJ, Ross JJ (2016) Shoot-derived abscisic acid promotes root growth.
Plant Cell Environ 39:652–659
Mitsuda N, Iwase A, Yamamoto H, Yoshida M, Seki M, Shinozaki K, Ohme-Takagi M (2007)
NAC transcription factors, NST1 and NST3, are key regulators of the formation of secondary
walls in woody tissues of Arabidopsis. Plant Cell 19:270–280
Mizrachi E, Mansfield SD, Myburg AA (2012) Cellulose factories: advancing bioenergy production
from forest trees. New Phytol 194:54–62
218
M. B. Pascual et al.
282:36292–36302
Kim SY, Kim SG, Kim YS, Seo PJ, Bae M, Yoon HK, Park CM (2007b) Exploring membraneassociated NAC transcription factors in Arabidopsis: implications for membrane biology in
genome regulation. Nucleic Acids Res 35:203–213
Kim MJ, Park MJ, Seo PJ, Song JS, Kim HJ, Park CM (2012) Controlled nuclear import of the
transcription factor NTL6 reveals a cytoplasmic role of SnRK2.8 in the drought-stress response.
Biochem J 448:353–363
Kjaersgaard T, Jensen MK, Christiansen MW, Gregersen P, Kragelund BB, Skriver K (2011)
Senescence-associated barley NAC (NAM, ATAF1,2, CUC) transcription factor interacts
with radical-induced cell death 1 through a disordered regulatory domain. J Biol Chem
14:35418–35429
Lamara M, Raherison E, Lenz P, Beaulieu J, Bousquet J, Mackay J (2016) Genetic architecture
of wood properties based on association analysis and co-expression networks in white spruce.
New Phytol 210:240–255
Larsson E, Sundström JF, Sitbon F, von Arnold S (2012) Expression of PaNAC01, a Picea abies
CUP-SHAPED COTYLEDON orthologue, is regulated by polar auxin transport and associated
with differentiation of the shoot apical meristem and formation of separated cotyledons.
Ann Bot 110:923–934
Li Q, Lin Y-C, Sun Y-H, Song J, Chen H, Zhang XH, Sederoff RR, Chiang VL (2012)
Splice variant of the SND1 transcription factor is a dominant negative of SND1 members
and their regulation in Populus trichocarpa. Proc Natl Acad Sci U S A 109:14699–14704
Lin YC, Li W, Sun YH, Kumari S, Wei H, Li Q, Tunlaya-Anukit S, Sederoff RR, Chiang VL (2013)
SND1 transcription factor-directed quantitative functional hierarchical genetic regulatory network in wood formation in Populus trichocarpa. Plant Cell 25:4324–4441
Liu C, Zhang X, Zhang K, An H, Hu K, Wen J, Shen J, Ma C, Yi B, Tu J, Fu T (2015) Comparative
analysis of the Brassica napus root and leaf transcript profiling in response to drought stress.
Int J Mol Sci 16:18752–18777
Lunden K, Danielsson M, Durling MB, Ihrmark K, Nemesio-Gorriz M, Stenlid J, Asiegbu FO,
Elfstrand M (2015) Transcriptional responses associated with virulence and defence in the
interaction between Heterobasidion annosum s. s. and Norway spruce. PLoS One 10:e0131182
Maleck K, Levine A, Eulgem T, Morgan A, Schmid J, Lawton KA, Dangl JL, Dietrich RA (2000)
The transcriptome of Arabidopsis thaliana during systemic acquired resistance. Nat Genet
26:403–410
Mao X, Zhang H, Qian X, Li A, Zhao G, Jing R (2012) TaNAC2, a NAC-type wheat transcription
factor conferring enhanced multiple abiotic stress tolerances in Arabidopsis. J Exp Bot
63:2933–2946
Maugarny A, Goncalves B, Arnaud N, Laufs P (2015) CUC transcription factors: to the meristem
and beyond. In: Gonzalez DH (ed) Plant transcription factors. Academic Press, Boston, MA,
pp 229–247
Maugarny-Calès A, Gonçalves B, Jouannic S, Melkonian M, Wong GKS, Laufs P (2016)
Apparition of the NAC transcription factors predates de emergence of land plants. Mol Plant
9:1345–1348
McAdam SA, Brodribb TJ, Ross JJ (2016) Shoot-derived abscisic acid promotes root growth.
Plant Cell Environ 39:652–659
Mitsuda N, Iwase A, Yamamoto H, Yoshida M, Seki M, Shinozaki K, Ohme-Takagi M (2007)
NAC transcription factors, NST1 and NST3, are key regulators of the formation of secondary
walls in woody tissues of Arabidopsis. Plant Cell 19:270–280
Mizrachi E, Mansfield SD, Myburg AA (2012) Cellulose factories: advancing bioenergy production
from forest trees. New Phytol 194:54–62
218
M. B. Pascual et al.
