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239(3): 531-541. SURABHI Gꎬ REDDY AMꎬ KUMARI GJꎬ et al.ꎬ 2008. Modu ̄
LIU Lꎬ WANG Jꎬ HAN Zꎬ et al.ꎬ 2016. Molecular analyses of lations in key enzymes of nitrogen metabolism in two high
tomato GSꎬ GOGAT and GDH gene families and their yielding genotypes of mulberry (Morus alba L.) with differ ̄
response to abiotic stresses [J]. Acta Physiol Plantꎬ 38(9): ential sensitivity to salt stress [J]. Environ Exp Botꎬ 64(2):
229-242. 171-179.
LÜ Xꎬ YU Pꎬ DENG Wꎬ et al.ꎬ 2018. Transcriptomic analysis TERCE ̄LAFORGUE Tꎬ CLEMENT Gꎬ MARCHI Lꎬ et al.ꎬ
reveals the molecular adaptation to NaCl stress in Zostera ma ̄ 2015. Resolving the role of plant NAD ̄Glutamate dehydro ̄
rina L. [J]. Plant Physiol Biochemꎬ 130: 61-68. genase: III. Overexpressing individually or simultaneously the
MANSOUR Mꎬ 2000. Nitrogen containing compounds and adap ̄ two enzyme subunits under salt stress induces changes in the
tation of plants to salinity stress [J]. Biol Plantꎬ 43(4): leaf metabolic profile and increases plant biomass production
491-500. [J]. Plant Cell Physiolꎬ 56(10): 1918-1929.
MASCLAUX ̄DAUBRESSE Cꎬ REISDORF ̄CREN Mꎬ WANG Xꎬ HU HLꎬ HU TXꎬ et al.ꎬ 2018. Effects of drought
PAGEAU Kꎬ et al.ꎬ 2006. Glutamine synthetase ̄glutamate stress on the osmotic adjustment and active oxygen
synthase pathway and glutamate dehydrogenase play distinct metabolism of Phoebe zhennan seedlings and its alleviation by
roles in the sink ̄source nitrogen cycle in tobacco [J]. Plant nitrogen application [J]. Chin J Appl Ecolꎬ 42(2): 240-
Physiolꎬ 140(2): 444-456. 251. [王曦ꎬ 胡红玲ꎬ 胡庭兴ꎬ 等ꎬ 2018. 干旱胁迫对桢楠
OLIVEIRA HCꎬ SALGADO Iꎬ SODEK Lꎬ 2013. Involvement of 幼树渗透调节与活性氧代谢的影响及施氮的缓解效应
nitrite in the nitrate ̄mediated modulation of fermentative me ̄ [J]. 植物生态学报ꎬ 42(2): 240-251.]
tabolism and nitric oxide production of soybean roots during WANG Xꎬ TAMIEV Dꎬ ALAGURAJAN Jꎬ et al.ꎬ 2018. The
hypoxia [J]. Plantaꎬ 237(1): 255-264. role of the NADH ̄dependent nitrite reductaseꎬ Nirꎬ from
ORDONEZ RAꎬ SAVIN Rꎬ MARIANO COSSANI Cꎬ et al.ꎬ Escherichia coli in fermentative ammonification [ J]. Arch
2015. Yield response to heat stress as affected by nitrogen a ̄ Microbiolꎬ https:/ / doi.org/ 10.1007/ s00203-018-1590-3.
vailability in maize [J]. Field Crop Resꎬ 183: 184-203. WANG XBꎬ 2018. Effects of nitrogen on drought tolerance in
OZAWA Kꎬ KAWAHIGASHI Hꎬ 2006. Positional cloning of the different genotypes of wheat at seedling stage under drought
nitrite reductase gene associated with good growth and regen ̄ stress [ D]. Yangling: Research Center of Soil and Water
eration ability of calli and establishment of a new selection Conservation and Ecological Environmentꎬ Chinese Academy
system for Agrobacterium - mediated transformation in rice of Sciences and Ministry of Education. [王秀波ꎬ 2018. 干旱
(Oryza sativa L.) [J]. Plant Sciꎬ 170(2): 384-393. 下氮素营养对不同穗型小麦苗期耐旱性的影响机制
PASSARELLA VSꎬ SAVIN Rꎬ SLAFER GAꎬ 2008. Are tem ̄ [D]. 杨凌:中国科学院(教育部水土保持与生态环境研
perature effects on weight and quality of barley grains 究中心).]
modified by resource availability? [J]. Aust J Agric Resꎬ XIONG BSꎬ 2016. Effects of nitrogen on leaf senescence of
59(6): 510-516. maize ( Zea mays L.) and carbon/ nitrogen balance under
ROBERTSON GPꎬ VITOUSEK PMꎬ 2009. Nitrogen in agricul ̄ drought stress [D]. Yangling: Research Center of Soil and
ture: Balancing the cost of an essential resource [ M] / / Water Conservation and Ecological Environmentꎬ Chinese A ̄
Annual review of environment and resources. Palo Alto: An ̄ cademy of Sciences and Ministry of Education. [ 熊 炳 霖ꎬ
nual Reviewsꎬ 34(34): 97-125. 2016. 干旱胁迫下氮素对玉米叶片衰老和叶片碳氮平衡
SINGH VPꎬ SINGH Mꎬ PRASAD SMꎬ 2016. Responses of pho ̄ 的影响 [D]. 杨凌:中国科学院(教育部水土保持与生态
tosynthesisꎬ nitrogen and proline metabolism to salinity stress 环境研究中心).]
in Solanum lycopersicum under different levels of nitrogen XIONG Dꎬ YU Tꎬ LIU Xꎬ et al.ꎬ 2015. Heterogeneity of photo ̄
supplementation [J]. Plant Physiol Biochemꎬ 109: 72-83. synthesis within leaves is associated with alteration of leaf
SKOPELITIS DSꎬ PARANYCHIANAKIS NVꎬ PASCHALIDIS structural features and leaf N content per leaf area in rice
KAꎬ et al.ꎬ 2006. Abiotic stress generates ROS that signal [J]. Funct Plant Biolꎬ 42(7): 687-696.
expression of anionic glutamate dehydrogenases to form gluta ̄ YAN Pꎬ CHEN Yꎬ DADOUMA Aꎬ et al.ꎬ 2017. Effect of nitro ̄
mate for proline synthesis in tobacco and grapevine [ J]. gen regimes on narrowing the magnitude of maize yield
Plant Cellꎬ 18(10): 2767-2781. penalty caused by high temperature stress in North China
SPERANDIO MVLꎬ SANTOS LAꎬ BUCHER CAꎬ et al.ꎬ Plain [J]. Plant Soil Environꎬ 63(3): 131-138.
+
2011. Isoforms of plasma membrane H  ̄ATPase in rice root YANG HBꎬ 2013. Effects of osmotic and salt stress on nitrate
and shoot are differentially induced by starvation and reductase and nitrite reductase activities of buckwheat
- +
resupply of NO or NH [J]. Plant Sciꎬ 180(2): 251-258. [J]. Cropsꎬ (3): 53-55. [杨洪兵ꎬ 2013. 渗透胁迫和盐
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