Elevated CO2alters tissue balance of nitrogen metabolism and downregulates nitrogen assimilation and signalling gene expression in wheat seedlings receiving high nitrate supply
被引:19
作者:
Adavi, Sandeep B.
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机构:
ICAR Indian Agr Res Inst, Div Plant Physiol, New Delhi, IndiaICAR Indian Agr Res Inst, Div Plant Physiol, New Delhi, India
Adavi, Sandeep B.
[1
]
Sathee, Lekshmy
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机构:
ICAR Indian Agr Res Inst, Div Plant Physiol, New Delhi, IndiaICAR Indian Agr Res Inst, Div Plant Physiol, New Delhi, India
Sathee, Lekshmy
[1
]
机构:
[1] ICAR Indian Agr Res Inst, Div Plant Physiol, New Delhi, India
Elevated CO2;
Nitrogen assimilation;
Nitrogen signalling;
ATMOSPHERIC CO2 CONCENTRATION;
CARBON-DIOXIDE CONCENTRATION;
USE EFFICIENCY;
REDUCTASE-ACTIVITY;
PLANT-GROWTH;
N-METABOLISM;
AMINO-ACIDS;
PHOTOSYNTHESIS;
ENRICHMENT;
NUTRITION;
D O I:
10.1007/s00709-020-01564-3
中图分类号:
Q94 [植物学];
学科分类号:
071001 ;
摘要:
Tissue and canopy-level evidence suggests that elevated carbon dioxide (EC) inhibits shoot nitrate assimilation in plants and thereby affects nitrogen (N) and protein content of the economic produce. It is speculated that species or genotypes relying more on root nitrate assimilation can adapt better under EC due to the improved/steady supply of reductants required for nitrate assimilation. A study was conducted to examine the effect of EC on N assimilation and associated gene expression in wheat seedlings. Wheat genotypes, BT-Schomburgk (BTS) with comparatively high leaf nitrate reductase (NR) activity and Gluyas Early (GE) with high root NR activity were grown in hydroponic culture for 30 days with two different nitrate levels (0.05 mM and 5 mM) in the climate controlled growth chambers maintained at either ambient (400 +/- 10 mu mol mol(-1)) or EC (700 +/- 10 mu mol mol(-1)) conditions. Exposure to EC downregulated the activity of enzyme NR and glutamate synthase (GOGAT) in leaf tissues, whereas in roots, activities of both the enzymes were upregulated by exposure to EC. In addition, EC downregulated N assimilation and signalling gene expression under high N availability. Root N assimilation was less affected in comparison with shoot N assimilation; thereby, the proportion of root contribution towards total assimilation was higher. The results suggest that EC could alter and re-programme N assimilation and signalling in wheat seedlings. The genotype and tissue-specific effects of EC on N assimilation also warrants the need for identification of suitable genotypes and revision of fertiliser regime for tapping the beneficial effects of EC conditions.
机构:
CSIRO, Wembley, WA 6913, AustraliaUniv Cordoba, Dept Agron, Escuela Tecn Super Ingenieros Agronomos & Montes, E-14071 Cordoba, Spain
Berger, Jens
;
Bramley, Helen
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机构:
Univ Western Australia, UWA Inst Agr, Crawley, WA 6009, AustraliaUniv Cordoba, Dept Agron, Escuela Tecn Super Ingenieros Agronomos & Montes, E-14071 Cordoba, Spain
机构:
CSIRO, Wembley, WA 6913, Australia
Univ Western Australia, UWA Inst Agr, Crawley, WA 6009, AustraliaUniv Cordoba, Dept Agron, Escuela Tecn Super Ingenieros Agronomos & Montes, E-14071 Cordoba, Spain
机构:
CSIRO, Wembley, WA 6913, AustraliaUniv Cordoba, Dept Agron, Escuela Tecn Super Ingenieros Agronomos & Montes, E-14071 Cordoba, Spain
Berger, Jens
;
Bramley, Helen
论文数: 0引用数: 0
h-index: 0
机构:
Univ Western Australia, UWA Inst Agr, Crawley, WA 6009, AustraliaUniv Cordoba, Dept Agron, Escuela Tecn Super Ingenieros Agronomos & Montes, E-14071 Cordoba, Spain
机构:
CSIRO, Wembley, WA 6913, Australia
Univ Western Australia, UWA Inst Agr, Crawley, WA 6009, AustraliaUniv Cordoba, Dept Agron, Escuela Tecn Super Ingenieros Agronomos & Montes, E-14071 Cordoba, Spain