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7 期 吴会会等: 丛枝菌根真菌和根瘤菌对白三叶氮同化的影响 1 2 2 1
酸双向 运 转 并 分 解 为 鸟 氨 酸 [ J]. 中 国 科 学: C 辑ꎬ synthase (NADH) activity in maize seedlings in response to
38(11): 1048-1055.] nitrate and ammonium nitrogen [J]. Physiol Plantꎬ 66(3):
LIANG CGꎬ ZHANG Qꎬ LI Jꎬ et al.ꎬ 2013. Effect of high 413-416.
temperature on aspartate metabolism enzyme activities and TALAAT NBꎬ ABDALLAH AMꎬ 2008. Response of faba bean
aspartate ̄family amino acids contents at rice grain ̄filling (Vicia fava L.) to dual inoculation with Rhizobium and VA
stage [J]. Chin J Rice Sciꎬ 27(1): 71-76. [梁成刚ꎬ 张 mycorrhiza under different levels of N and P fertilization
青ꎬ 李敬ꎬ 等ꎬ 2013. 水稻灌浆期高温对天冬氨酸代谢酶 [J]. J Appl Sci Resꎬ 4(9): 1092-1102.
活性及其家族氨基酸含量的影响 [J]. 中国水稻科学ꎬ TIAN Cꎬ LI Qꎬ XU QFꎬ et al.ꎬ 2020. Effects of AMF and
27(1): 71-76.] rhizobium inoculation on the nitrogen and phosphorus of
LIU CYꎬ ZHANG Fꎬ ZHANG DJꎬ et al.ꎬ 2020. Transcriptome alfalfa and soil in mining areas [ J]. J Shanxi Agric Sciꎬ
analysis reveals improved root hair growth in trifoliate orange 48(4): 580-583. [田超ꎬ 李倩ꎬ 许庆芳ꎬ 等ꎬ 2020. 矿区
seedlings by arbuscular mycorrhizal fungi [J]. Plant Growth 土接种 AMF 和根瘤菌对紫花苜蓿及土壤氮磷的影响
Regulꎬ 92(5): 195-203. [J]. 山西农业科学ꎬ 48(4): 580-583.]
LIU SYꎬ DONG STꎬ ZHAO BQꎬ et al.ꎬ 2007. Effects of long ̄ WANG XKꎬ 2016. Principles and techniques of plant
term fertilization on activities of key enzymes related to physiological biochemical experiment [M]. Beijing: Higher
nitrogen metabolism (ENM) of maize leaf [J]. Acta Agron Education Press: 134-136. [王学奎ꎬ 2016. 植物生理生化
Sinꎬ 33(2): 278-283. [刘淑云ꎬ 董树亭ꎬ 赵秉强ꎬ 等ꎬ 实 验 原 理 和 技 术 [ M ]. 北 京: 高 等 教 育 出 版
2007. 长期施肥对夏玉米叶片氮代谢关键酶活性的影响 社: 134-136.]
[J]. 作物学报ꎬ 33(2): 278-283.] XAVIER LJCꎬ GERMIDA JJꎬ 2003. Selective interactions
LIYANAARACHCHI GVVꎬ MAHANAMA KRRꎬ SOMASIRI between arbuscular mycorrhizal fungi and Rhizobium
HPPSꎬ et al.ꎬ 2018. Development and validation of a method leguminosarum bv. viceae enhance pea yield and nutrition
for directꎬ underivatized analysis of free amino acids in rice [J]. Biol Fert Soilsꎬ 37(5): 261-267.
using liquid chromatography ̄tandem mass spectrometry XIE Kꎬ REN Yꎬ CHEN Aꎬ et al.ꎬ 2022. Plant nitrogen
[J]. J Chromatogr Aꎬ 1568(9): 131-139. nutrition: The roles of arbuscular mycorrhizal fungi [ J].
MASSON ̄BOIVIN Cꎬ SACHS JLꎬ 2018. Symbiotic nitrogen J Plant Physiolꎬ 269: 153591.
fixation by rhizobia—the roots of a success story [J]. Curr XIE MMꎬ ZOU YNꎬ WU QSꎬ et al.ꎬ 2020. Single or dual
Opin Plant Biolꎬ 44(8): 7-15. inoculation of arbuscular mycorrhizal fungi and rhizobia
OGAWA Tꎬ FUKUOKA Hꎬ YANO Hꎬ et al.ꎬ 1999. regulates plant growth and nitrogen acquisition in white clover
Relationships between nitrite reductase activity and genotype ̄ [J]. Plant Soil Environꎬ 66(6): 287-294.
dependent callus growth in rice cell cultures [J]. Plant Cell XUE YBꎬ 2018. Transcriptomics analysis of soybean nodules
Repꎬ 18(7): 576-581. responsive to phosphorus deficiency and GmSPX5 functions
PHILLIPS JMꎬ HAYMAN DSꎬ 1970. Improved procedures for in regulating nodule growth [D]. Guangzhou: S China Agric
clearing roots and staining parasitic and vesicular ̄arbuscular Univ: 36-97. [薛迎斌ꎬ 2018. 大豆根瘤缺磷响应基因的
mycorrhizal fungi for rapid assessment of infection [J]. Trans 表达谱及 GmSPX5 调控根瘤生长的研究 [D]. 广州: 华
Br Mycol Socꎬ 55(1): 158-161. 南农业大学: 36-97.]
REN CGꎬ KONG CCꎬ WANG SXꎬ et al.ꎬ 2019. Enhanced YANG HQꎬ GAO HJꎬ 2007. Physiological function of arginine
phytoremediation of uranium ̄contaminated soils by arbuscular and its metabolites in plants [J]. J Plant Physiol Mol Biolꎬ
mycorrhiza and rhizobium [ J ]. Chemosphereꎬ 217: 33(1): 1-8. [杨洪强ꎬ 高华军ꎬ 2007. 植物精氨酸及其代
773-779. 谢产物的生理功能 [J]. 植物生理与分子生物学学报ꎬ
SAXENA AKꎬ RATHI SKꎬ TILAK KVBRꎬ 1997. Differential 33(1): 1-8.]
effect of various endomycorrhizal fungi on nodulating ability ZHANG Lꎬ YANG CXꎬ 2018. Enzyme activities and free amino
of green gram by Bradyrhizobium sp. ( Vigna) strain S24 acids of Puccinellia tenuiflora ̄arbuscular mycorrhizal
[J]. Biol Fert Soilsꎬ 24(2): 175-178. symbiont under saline alkali stress [ J]. J NE For Univꎬ
SERRALTA ̄INTERIAN AAꎬ MIRANDA ̄HAM Mꎬ 46(11): 91-96. [张良ꎬ 杨春雪ꎬ 2018. 盐碱胁迫对星星
ECHEVARRIA ̄MACHADO Iꎬ 2020. Stimulation of root 草-丛枝菌根真菌共生体酶活性及游离氨基酸的影响
growth and enhanced nitrogenous metabolite content in [J]. 东北林业大学学报ꎬ 46(11): 91-96.]
habanero pepper (Capsicum chinense Jacq.) treated with a D ̄ ZHAO GQꎬ WANG SMꎬ REN JZꎬ 2004. Research progress on
amino acid mixture [J]. Theor Exp Plant Physiolꎬ 32(1): genetic transformation and ecological adaptability in white
31-47. clover [J]. Acta Ecol Sinꎬ 24(3): 592-598. [赵桂琴ꎬ 王
SHIDRIN Sꎬ PARROTT CLꎬ 1974. In vitro assembly of L ̄ 锁民ꎬ 任继周ꎬ 2004. 白三叶转基因及其生态适应性研究
asparaginase subunits [ J ]. J Biol Chemꎬ 249 ( 13 ): 进展 [J]. 生态学报ꎬ 24(3): 592-598.]
4175-4180.
SINGH RPꎬ SRIVASTAVA HSꎬ 1986. Increase in glutamate (责任编辑 蒋巧媛 王登惠)