References
Abeles FB, Morgan PW, Saltveit ME (1992) Ethylene in plant biology, 2nd edn. Academic Press,
New York
Adams DO, Yang SF (1977) Methionine metabolism in apple tissue: implication of
S-adenosylmethionine as an intermediate in the conversion of methionine to ethylene.
Plant Physiol 60:892–896
Alcázar R, Marco F, Cuevas JC, Patron M, Ferrando A, Carrasco P, Tiburcio AF, Altabella T
(2006) Involvement of polyamines in plant response to abiotic stress. Biotechnol Lett
28:1867–1876
Amrhein N, Schneebeck D, Skorupka H, Tophof S, Stöckigt J (1981) Identification of a major
metabolite of the ethylene precursor 1-aminocyclopropane-1-carboxylic acid in higher plants.
Naturwissenschaften 68(12):619–620
Argueso CT, Hansen M, Kieber JJ (2007) Regulation of ethylene biosynthesis. J Plant Growth
Regul 262:92–105
Ayala-Rodriguez JA, Barrera-Ortiz S, Ruiz-Herrera LF, Lopez-Bucio J (2017) Folic acid orchestrates root development linking cell elongation with auxin response and acts independently of
the Target of rapamycin signaling in Arabidopsis thaliana. Plant Sci 264:168–178
Azevedo RA, Lancien M, Lea PJ (2006) The aspartic acid metabolic pathway, an exciting and
essential pathway in plants. Amino Acids 30:143–162
Baluska F, Yokawa K, Mancuso S, Baverstock K (2016) Understanding of anesthesia- why
consciousness is essential for life and not based on genes. Commun Integr Biol 9(6):1–12.
e1238118
Baur AH, Yang SF (1972) Methionine metabolism in apple tissue in relation to ethylene biosynthesis. Phytochemistry 11:3207–3214
Berger B, English S, Chan G, Knodel MH (2003) Methionine regeneration and aminotransferases in
Bacillus subtilis, Bacillus cereus, and Bacillus anthracis. J Bacteriol 185:2418–2431
Berkowitz DB, Charrette BD, Karukurichi KR, McFadden JM (2006) α-Vinylic amino acids:
occurrence, asymmetric synthesis, and biochemical mechanisms. Tetrahedron Asymmetry
17:869–882
Bi YM, Wang RL, Zhu T, Rothstein SJ (2007) Global transcription profiling reveals differential
responses to chronic nitrogen stress and putative nitrogen regulatory components in Arabidopsis.
BMC Genomics 8:281
Blackwell HE, Zhao Y (2003) Chemical genetic approaches to plant biology. Plant Physiol
133:448–455
Bleecker AB, Kende H (2000) Ethylene: a gaseous signal molecule in plants. Annu Rev Cell Dev
Biol 16:1–18
Boerjan W, Bauw G, Van Montagu M, Inze D (1994) Distinct phenotypes generated by
overexpression and suppression of S-adenosyl-L-methionine synthetase reveal developmental
patterns of gene silencing in tobacco. Plant Cell 6:1401–1414
Bonner ER, Cahoon RE, Knapke SM, Jez JM (2005) Molecular basis of cysteine biosynthesis in
plants: structural and functional analysis of O-acetylserine sulfhydrylase from Arabidopsis
thaliana. J Biol Chem 280:38803–38813
Bouzayen M, Felix G, Latché A, Pech J-C, Boller T (1991) Iron: an essential cofactor for the
conversion of 1-aminocyclopropane-1-carboxylic acid to ethylene. Planta 184:244–247
Boycheva S, Dominguez A, Rolcik J, Boller T, Fitzpatrick TB (2015) Consequences of a deficit
in vitamin B6 biosynthesis de novo for hormone homeostasis and root development in
Arabidopsis. Plant Physiol 167:102–117
Bradford KJ, Yang SF (1980) Xylem transport of 1-aminocyclopropane-1-carboxylic acid, an
ethylene precursor, in waterlogged tomato plants. Plant Physiol 65:322–326
Brunke S, Seider K, Richter ME, Bremer-Streck S, Ramachandra S, Kiehntopf M, Brock M,
Hube B (2014) Histidinedegradation via an aminotransferase increases the nutritional flexibility
of Candida glabrata. Eukaryot Cell 13(6):758–765
282
E. Le Deunff
Abeles FB, Morgan PW, Saltveit ME (1992) Ethylene in plant biology, 2nd edn. Academic Press,
New York
Adams DO, Yang SF (1977) Methionine metabolism in apple tissue: implication of
S-adenosylmethionine as an intermediate in the conversion of methionine to ethylene.
Plant Physiol 60:892–896
Alcázar R, Marco F, Cuevas JC, Patron M, Ferrando A, Carrasco P, Tiburcio AF, Altabella T
(2006) Involvement of polyamines in plant response to abiotic stress. Biotechnol Lett
28:1867–1876
Amrhein N, Schneebeck D, Skorupka H, Tophof S, Stöckigt J (1981) Identification of a major
metabolite of the ethylene precursor 1-aminocyclopropane-1-carboxylic acid in higher plants.
Naturwissenschaften 68(12):619–620
Argueso CT, Hansen M, Kieber JJ (2007) Regulation of ethylene biosynthesis. J Plant Growth
Regul 262:92–105
Ayala-Rodriguez JA, Barrera-Ortiz S, Ruiz-Herrera LF, Lopez-Bucio J (2017) Folic acid orchestrates root development linking cell elongation with auxin response and acts independently of
the Target of rapamycin signaling in Arabidopsis thaliana. Plant Sci 264:168–178
Azevedo RA, Lancien M, Lea PJ (2006) The aspartic acid metabolic pathway, an exciting and
essential pathway in plants. Amino Acids 30:143–162
Baluska F, Yokawa K, Mancuso S, Baverstock K (2016) Understanding of anesthesia- why
consciousness is essential for life and not based on genes. Commun Integr Biol 9(6):1–12.
e1238118
Baur AH, Yang SF (1972) Methionine metabolism in apple tissue in relation to ethylene biosynthesis. Phytochemistry 11:3207–3214
Berger B, English S, Chan G, Knodel MH (2003) Methionine regeneration and aminotransferases in
Bacillus subtilis, Bacillus cereus, and Bacillus anthracis. J Bacteriol 185:2418–2431
Berkowitz DB, Charrette BD, Karukurichi KR, McFadden JM (2006) α-Vinylic amino acids:
occurrence, asymmetric synthesis, and biochemical mechanisms. Tetrahedron Asymmetry
17:869–882
Bi YM, Wang RL, Zhu T, Rothstein SJ (2007) Global transcription profiling reveals differential
responses to chronic nitrogen stress and putative nitrogen regulatory components in Arabidopsis.
BMC Genomics 8:281
Blackwell HE, Zhao Y (2003) Chemical genetic approaches to plant biology. Plant Physiol
133:448–455
Bleecker AB, Kende H (2000) Ethylene: a gaseous signal molecule in plants. Annu Rev Cell Dev
Biol 16:1–18
Boerjan W, Bauw G, Van Montagu M, Inze D (1994) Distinct phenotypes generated by
overexpression and suppression of S-adenosyl-L-methionine synthetase reveal developmental
patterns of gene silencing in tobacco. Plant Cell 6:1401–1414
Bonner ER, Cahoon RE, Knapke SM, Jez JM (2005) Molecular basis of cysteine biosynthesis in
plants: structural and functional analysis of O-acetylserine sulfhydrylase from Arabidopsis
thaliana. J Biol Chem 280:38803–38813
Bouzayen M, Felix G, Latché A, Pech J-C, Boller T (1991) Iron: an essential cofactor for the
conversion of 1-aminocyclopropane-1-carboxylic acid to ethylene. Planta 184:244–247
Boycheva S, Dominguez A, Rolcik J, Boller T, Fitzpatrick TB (2015) Consequences of a deficit
in vitamin B6 biosynthesis de novo for hormone homeostasis and root development in
Arabidopsis. Plant Physiol 167:102–117
Bradford KJ, Yang SF (1980) Xylem transport of 1-aminocyclopropane-1-carboxylic acid, an
ethylene precursor, in waterlogged tomato plants. Plant Physiol 65:322–326
Brunke S, Seider K, Richter ME, Bremer-Streck S, Ramachandra S, Kiehntopf M, Brock M,
Hube B (2014) Histidinedegradation via an aminotransferase increases the nutritional flexibility
of Candida glabrata. Eukaryot Cell 13(6):758–765
282
E. Le Deunff
