Elevated CO2-induced production of nitric oxide differentially modulates nitrate assimilation and root growth of wheat seedlings in a nitrate dose-dependent manner

被引:23
作者
Adavi, Sandeep B. [1 ]
Sathee, Lekshmy [1 ]
机构
[1] Indian Agr Res Inst, Div Plant Physiol, New Delhi 110012, India
关键词
Nitric oxide (NO); Elevated CO2; High affinity transport system (HATS); NITROGEN UPTAKE CAPACITY; REDUCTASE-ACTIVITY; CARBON-DIOXIDE; CROSS-TALK; ARABIDOPSIS; CO2; PLANTS; NO; EXPRESSION; TOXICITY;
D O I
10.1007/s00709-018-1285-2
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Wheat is a major staple food crop worldwide contributing approximately 20% of total protein consumed by mankind. The nitrogen and protein concentration of wheat crop and grain often decline as a result of exposure of the crop to elevated CO2 (EC). The changes in nitrogen (N) assimilation, root system architecture, and nitric oxide (NO)-mediated N signaling and expression of genes involved in N assimilation and high affinity nitrate uptake were examined in response to different nitrate levels and EC in wheat. Activity of enzyme nitrate reductase (NRA) was downregulated under EC both in leaf and root tissues. Plants grown under EC displayed enhanced production of NO and more so when nitrate supply was high. Based on exogenous supply of NO, inhibitors of NO production, and NO scavenger, regulatory role of NO on EC mediated changes in root morphology and NRA was revealed. The enhanced NO production under EC and high N levels negatively regulated the transcript abundance of NR and high affinity nitrate transporters (HATS).
引用
收藏
页码:147 / 159
页数:13
相关论文
共 67 条
[1]   How exogenous nitric oxide regulates nitrogen assimilation in wheat seedlings under different nitrogen sources and levels [J].
Balotf, Sadegh ;
Islam, Shahidul ;
Kavoosi, Gholamreza ;
Kholdebarin, Bahman ;
Juhasz, Angela ;
Ma, Wujun .
PLOS ONE, 2018, 13 (01)
[2]   Root system adjustments:: regulation of plant nutrient uptake and growth responses to elevated CO2 [J].
BassiriRad, H ;
Gutschick, VP ;
Lussenhop, J .
OECOLOGIA, 2001, 126 (03) :305-320
[3]   Dormancy of Arabidopsis seeds and barley grains can be broken by nitric oxide [J].
Bethke, PC ;
Gubler, F ;
Jacobsen, JV ;
Jones, RL .
PLANTA, 2004, 219 (05) :847-855
[4]   Nitrogen assimilation and growth of wheat under elevated carbon dioxide [J].
Bloom, AJ ;
Smart, DR ;
Nguyen, DT ;
Searles, PS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (03) :1730-1735
[5]   Photorespiration and nitrate assimilation: a major intersection between plant carbon and nitrogen [J].
Bloom, Arnold J. .
PHOTOSYNTHESIS RESEARCH, 2015, 123 (02) :117-128
[6]  
Bloom AJ, 2014, NAT CLIM CHANGE, V4, P477, DOI [10.1038/NCLIMATE2183, 10.1038/nclimate2183]
[7]   CO2 enrichment inhibits shoot nitrate assimilation in C3 but not C4 plants and slows growth under nitrate in C3 plants [J].
Bloom, Arnold J. ;
Rubio-Asensio, Jose Salvador ;
Randall, Lesley ;
Rachmilevitch, Shimon ;
Cousins, Asaph B. ;
Carlisle, Eli A. .
ECOLOGY, 2012, 93 (02) :355-367
[8]   Carbon Dioxide Enrichment Inhibits Nitrate Assimilation in Wheat and Arabidopsis [J].
Bloom, Arnold J. ;
Burger, Martin ;
Rubio-Asensio, Jose Salvador ;
Cousins, Asaph B. .
SCIENCE, 2010, 328 (5980) :899-903
[9]   The role of nitric oxide in innate immunity [J].
Bogdan, CT ;
Röllinghoff, M ;
Diefenbach, A .
IMMUNOLOGICAL REVIEWS, 2000, 173 :17-26
[10]  
BOWES G, 1993, ANNU REV PLANT PHYS, V44, P309, DOI 10.1146/annurev.pp.44.060193.001521