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163. Nitrate, but not nitrite, derived from nitrogen dioxide accumulates in Arabidopsisleaves following exposure to 15N-labeled nitrogen dioxide

165. Differential responses of Arabidopsis thalianaaccessions to atmospheric nitrogen dioxide at ambient concentrations

166. Erratum.

168. Molecular characterization of atmospheric NO2-responsive germin-like proteins in azalea leaves

169. Atmospheric nitrogen dioxide gas is a plant vitalization signal to increase plant size and the contents of cell constituents.

170. Presence of an SAR-like sequence in junction regions between an introduced transgene and genomic DNA of cultured tobacco cells: its effect on transformation frequency.

171. Differential expression of the nitrite reductase gene family in tobacco as revealed by quantitative competitive RT-PCR.

172. Functional complementation in yeast reveals a protective role of chloroplast 2-Cys peroxiredoxin against reactive nitrogen species.

173. Atmospheric nitrogen dioxide suppresses the activity of phytochrome interacting factor 4 to suppress hypocotyl elongation.

174. Nitrogen Dioxide at Ambient Concentrations Induces Nitration and Degradation of PYR/PYL/RCAR Receptors to Stimulate Plant Growth: A Hypothetical Model.

175. Nitrate, but not nitrite, derived from nitrogen dioxide accumulates in Arabidopsis leaves following exposure to 15 N-labeled nitrogen dioxide.

176. Dual nitrogen species involved in foliar uptake of nitrogen dioxide in Arabidopsis thaliana.

177. Selective nitration of PsbO1, PsbO2, and PsbP1 decreases PSII oxygen evolution and photochemical efficiency in intact leaves of Arabidopsis.

178. Selective nitration of PsbO1 inhibits oxygen evolution from isolated Arabidopsis thylakoid membranes.

179. Light-triggered selective nitration of PsbO1 in isolated Arabidopsis thylakoid membranes is inhibited by photosynthetic electron transport inhibitors.

180. Differential abilities of nitrogen dioxide and nitrite to nitrate proteins in thylakoid membranes isolated from Arabidopsis leaves.

181. Nitration is exclusive to defense-related PR-1, PR-3 and PR-5 proteins in tobacco leaves.

182. Dual selective nitration in Arabidopsis: Almost exclusive nitration of PsbO and PsbP, and highly susceptible nitration of four non-PSII proteins, including peroxiredoxin II E.

183. Kinematic evidence that atmospheric nitrogen dioxide increases the rates of cell proliferation and enlargement to stimulate leaf expansion in Arabidopsis.

184. Nitrogen dioxide is a positive regulator of plant growth.

185. Differential responses of Arabidopsis thaliana accessions to atmospheric nitrogen dioxide at ambient concentrations.

186. X-ray crystal structure of a mutant assimilatory nitrite reductase that shows sulfite reductase-like activity.

187. The reductive reaction mechanism of tobacco nitrite reductase derived from a combination of crystal structures and ultraviolet-visible microspectroscopy.

188. Structure-function relationship of assimilatory nitrite reductases from the leaf and root of tobacco based on high-resolution structures.

189. The RNAi-mediated silencing of xanthine dehydrogenase impairs growth and fertility and accelerates leaf senescence in transgenic Arabidopsis plants.

190. Attempted reduction of 1,2,3-thiadiazole-4-carboxylates with samarium/iodine in methanol. Unexpected ring enlargement to 1,2,5-trithiepan-4,6-dicarboxylates.

191. Formation of unidentified nitrogen in plants: an implication for a novel nitrogen metabolism.

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