Liu TY, Lin WY, Huang TK, Chiou TJ (2014) MicroRNA-mediated surveillance of phosphate
transporters on the move. Trends Plant Sci 19(10):647–655
Liu Y, Yan J, Wang K, Li D, Han Y, Zhang W (2020a) Heteroexpression of Osa-miR319b
improved switchgrass biomass yield and feedstock quality by repression of PvPCF5. Biotechnol
Biofuels 13(1):1–13
Liu ZW, Li H, Liu JX, Wang Y, Zhuang J (2020b) Integrative transcriptome, proteome, and
microRNA analysis reveals the effects of nitrogen sufficiency and deficiency conditions on
theanine metabolism in the tea plant (Camellia sinensis). Horticult Res 7(1):1–13
Lu C, Fedoroff N (2000) A mutation in the Arabidopsis HYL1 gene encoding a dsRNA binding
protein affects responses to abscisic acid, auxin and cytokinin. Plant Cell 12:2351–2365
Lu X, Guan Q, Zhu J (2013) Downregulation of CSD2 by a heat-inducible miR398 is required for
thermotolerance in Arabidopsis. Plant Signaling Behav 8:e24952
Ma C, Burd S, Lers A (2015) miR408 is involved in abiotic stress responses in Arabidopsis. Plant J
84:169–187
Marschner H (1995) Mineral nutrition of higher plants, 2nd edn. Academic, Great Britain
Matthews C (2018) Characterizing the role of the miR156-SPL network in heat stress response in
Medicago sativa
May P, Liao W, Wu Y, Shuai B, McCombie WR, Zhang MQ, Liu QA (2013) The effects of carbon
dioxide and temperature on microRNA expression in Arabidopsis development. Nat Commun 4
(1):1–11
Mayer AM (2006) Polyphenol oxidases in plants and fungi: going places? A review. Phytochemistry 67(21):2318–2331
McAllister PH, Beatty AG (2012) Good engineering nitrogen use efficient crop plants: the current
status. Plant Biotechnol J 10:1011–1025
Mendoza-Soto AB, Sánchez F, Hernández G (2012) MicroRNAs as regulators in plant metal
toxicity response. Front Plant Sci 3:105
Millar AA (2020) The function of miRNAs in plants. Plants 9(2):198
Mitsuda N, Ohme-Takagi M (2009) Functional analysis of transcription factors in Arabidopsis.
Plant Cell Physiol 50(7):1232–1248
Mittler R, Vanderauwera S, Gollery M, Van Breusegem F (2004) Reactive oxygen gene network of
plants. Trends Plant Sci 9:490–498
Mutum RD, Kumar S, Balyan S, Kansal S, Mathur S, Raghuvanshi S (2016) Identification of novel
miRNAs from drought tolerant rice variety Nagina 22. Sci Rep 6(1):1–5
Nelson DE, Repetti PP, Adams TR, Creelman RA, Wu J, Warner DC, Anstrom DC, Bensen RJ,
Castiglioni PP, Donnarummo MG, Hinchey BS (2007) Plant nuclear factor Y (NF-Y) B
subunits confer drought tolerance and lead to improved corn yields on water-limited acres.
Proc Natl Acad Sci U S A 104(42):16450–16455
Ni Z, Hu Z, Jiang Q, Zhang H (2013) GmNFYA3, a target gene of miR169, is a positive regulator of
plant tolerance to drought stress. Plant Mol Biol 82:113–129
Nilsson L, Müller R, Nielsen TH (2010) Dissecting the plant transcriptome and the regulatory
responses to phosphate deprivation. Physiol Plant 139(2):129–143
Nolan T, Chen J, Yin Y (2017) Cross-talk of Brassinosteroid signaling in controlling growth and
stress responses. Biochem J 474:2641–2661
Noman A, Aqeel M (2017) miRNA-based heavy metal homeostasis and plant growth. Environ Sci
Pollut Res 24(11):10068–10082
Noman A et al (2019) Crosstalk between plant miRNA and heavy metal toxicity. In: Sablok G
(ed) Plant metallomics and functional omics. Springer, Cham
Pan WJ, Tao JJ, Cheng T, Bian XH, Wei W, Zhang WK, Ma B, Chen SY, Zhang JS (2016) Soybean
miR172a improves salt tolerance and can function as a long-distance signal. Mol Plant 9
(9):1337–1340
Pant BD, Musialak-Lange M, Nuc P, May P, Buhtz A, Kehr J, Walther D, Scheible WR (2009)
Identification of nutrient-responsive Arabidopsis and rapeseed microRNAs by comprehensive
8 Orchestration of MicroRNAs and Transcription Factors in the Regulation of Plant. . .
273
transporters on the move. Trends Plant Sci 19(10):647–655
Liu Y, Yan J, Wang K, Li D, Han Y, Zhang W (2020a) Heteroexpression of Osa-miR319b
improved switchgrass biomass yield and feedstock quality by repression of PvPCF5. Biotechnol
Biofuels 13(1):1–13
Liu ZW, Li H, Liu JX, Wang Y, Zhuang J (2020b) Integrative transcriptome, proteome, and
microRNA analysis reveals the effects of nitrogen sufficiency and deficiency conditions on
theanine metabolism in the tea plant (Camellia sinensis). Horticult Res 7(1):1–13
Lu C, Fedoroff N (2000) A mutation in the Arabidopsis HYL1 gene encoding a dsRNA binding
protein affects responses to abscisic acid, auxin and cytokinin. Plant Cell 12:2351–2365
Lu X, Guan Q, Zhu J (2013) Downregulation of CSD2 by a heat-inducible miR398 is required for
thermotolerance in Arabidopsis. Plant Signaling Behav 8:e24952
Ma C, Burd S, Lers A (2015) miR408 is involved in abiotic stress responses in Arabidopsis. Plant J
84:169–187
Marschner H (1995) Mineral nutrition of higher plants, 2nd edn. Academic, Great Britain
Matthews C (2018) Characterizing the role of the miR156-SPL network in heat stress response in
Medicago sativa
May P, Liao W, Wu Y, Shuai B, McCombie WR, Zhang MQ, Liu QA (2013) The effects of carbon
dioxide and temperature on microRNA expression in Arabidopsis development. Nat Commun 4
(1):1–11
Mayer AM (2006) Polyphenol oxidases in plants and fungi: going places? A review. Phytochemistry 67(21):2318–2331
McAllister PH, Beatty AG (2012) Good engineering nitrogen use efficient crop plants: the current
status. Plant Biotechnol J 10:1011–1025
Mendoza-Soto AB, Sánchez F, Hernández G (2012) MicroRNAs as regulators in plant metal
toxicity response. Front Plant Sci 3:105
Millar AA (2020) The function of miRNAs in plants. Plants 9(2):198
Mitsuda N, Ohme-Takagi M (2009) Functional analysis of transcription factors in Arabidopsis.
Plant Cell Physiol 50(7):1232–1248
Mittler R, Vanderauwera S, Gollery M, Van Breusegem F (2004) Reactive oxygen gene network of
plants. Trends Plant Sci 9:490–498
Mutum RD, Kumar S, Balyan S, Kansal S, Mathur S, Raghuvanshi S (2016) Identification of novel
miRNAs from drought tolerant rice variety Nagina 22. Sci Rep 6(1):1–5
Nelson DE, Repetti PP, Adams TR, Creelman RA, Wu J, Warner DC, Anstrom DC, Bensen RJ,
Castiglioni PP, Donnarummo MG, Hinchey BS (2007) Plant nuclear factor Y (NF-Y) B
subunits confer drought tolerance and lead to improved corn yields on water-limited acres.
Proc Natl Acad Sci U S A 104(42):16450–16455
Ni Z, Hu Z, Jiang Q, Zhang H (2013) GmNFYA3, a target gene of miR169, is a positive regulator of
plant tolerance to drought stress. Plant Mol Biol 82:113–129
Nilsson L, Müller R, Nielsen TH (2010) Dissecting the plant transcriptome and the regulatory
responses to phosphate deprivation. Physiol Plant 139(2):129–143
Nolan T, Chen J, Yin Y (2017) Cross-talk of Brassinosteroid signaling in controlling growth and
stress responses. Biochem J 474:2641–2661
Noman A, Aqeel M (2017) miRNA-based heavy metal homeostasis and plant growth. Environ Sci
Pollut Res 24(11):10068–10082
Noman A et al (2019) Crosstalk between plant miRNA and heavy metal toxicity. In: Sablok G
(ed) Plant metallomics and functional omics. Springer, Cham
Pan WJ, Tao JJ, Cheng T, Bian XH, Wei W, Zhang WK, Ma B, Chen SY, Zhang JS (2016) Soybean
miR172a improves salt tolerance and can function as a long-distance signal. Mol Plant 9
(9):1337–1340
Pant BD, Musialak-Lange M, Nuc P, May P, Buhtz A, Kehr J, Walther D, Scheible WR (2009)
Identification of nutrient-responsive Arabidopsis and rapeseed microRNAs by comprehensive
8 Orchestration of MicroRNAs and Transcription Factors in the Regulation of Plant. . .
273
