TY - JOUR
T1 - Silencing S-Adenosyl-L-Methionine Decarboxylase (SAMDC) in Nicotiana tabacum Points at a Polyamine-Dependent Trade-Off between Growth and Tolerance Responses
AU - Mellidou, Ifigeneia
AU - Moschou, Panagiotis N.
AU - Ioannidis, Nikolaos E.
AU - Pankou, Chryssa
AU - Gemes, Katalin
AU - Valassakis, Chryssanthi
AU - Andronis, Efthimios A.
AU - Beris, Despoina
AU - Haralampidis, Kosmas
AU - Roussis, Andreas
AU - Karamanoli, Aikaterini
AU - Matsi, Theodora
AU - Kotzabasis, Kiriakos
AU - Constantinidou, Helen-Isis
AU - Roubelakis-Angelakis, Kalliopi A.
PY - 2016
Y1 - 2016
N2 - Polyamines (PAs) are nitrogenous molecules that are indispensable for cell viability and with an agreed-on role in the modulation of stress responses. Tobacco plants with downregulated SAMDC (AS-SAMDC) exhibit reduced PAs synthesis but normal levels of PA catabolism. We used AS-SAMDC to increase our understanding on the role of PAs in stress responses. Surprisingly, at control conditions AS-SAMDC plants showed increased biomass and altered developmental characteristics, such as increased height and leaf number. On the contrary, during salt stress AS-SAMDC plants showed reduced vigor when compared to the WT. During salt stress, the AS-SAMDC plants although showing compensatory readjustments of the antioxidant machinery and of photosynthetic apparatus, they failed to sustain their vigor. AS-SAMDC sensitivity was accompanied by inability to effectively control H2O2 levels and concentrations of monovalent and divalent cations. In accordance with these findings, we suggest that PAs may regulate the trade-off between growth and tolerance responses.
AB - Polyamines (PAs) are nitrogenous molecules that are indispensable for cell viability and with an agreed-on role in the modulation of stress responses. Tobacco plants with downregulated SAMDC (AS-SAMDC) exhibit reduced PAs synthesis but normal levels of PA catabolism. We used AS-SAMDC to increase our understanding on the role of PAs in stress responses. Surprisingly, at control conditions AS-SAMDC plants showed increased biomass and altered developmental characteristics, such as increased height and leaf number. On the contrary, during salt stress AS-SAMDC plants showed reduced vigor when compared to the WT. During salt stress, the AS-SAMDC plants although showing compensatory readjustments of the antioxidant machinery and of photosynthetic apparatus, they failed to sustain their vigor. AS-SAMDC sensitivity was accompanied by inability to effectively control H2O2 levels and concentrations of monovalent and divalent cations. In accordance with these findings, we suggest that PAs may regulate the trade-off between growth and tolerance responses.
KW - polyamine metabolism
KW - salt tolerance
KW - silenced SAMDC
KW - SAMDC transgenics
KW - ROS
KW - transgenic assessment
KW - polyamine metabolism
KW - salt tolerance
KW - silenced SAMDC
KW - SAMDC transgenics
KW - ROS
KW - transgenic assessment
UR - https://res.slu.se/id/publ/81024
U2 - 10.3389/fpls.2016.00379
DO - 10.3389/fpls.2016.00379
M3 - Journal article
C2 - 27064210
SN - 1664-462X
VL - 7
JO - Frontiers in Plant Science
JF - Frontiers in Plant Science
M1 - 379
ER -