[1] 洪琳, 邵清松, 周爱存, 王红珍, 张爱莲, 徐建伟, 黄瑜秋. 金线莲产业现状及可持续发展对策[J]. 中国中药杂志, 2016, 41(3): 553–558.
[2] 徐宇, 肖化云, 郑能建, 张忠义, 瞿玲露. 植物组织中游离氨基酸在盐胁迫下响应的研究进展[J]. 环境科学与技术, 2016, 39(7): 40–47.
[3] Zhang P, Fu J, Hu L. Effects of alkali stress on growth, free amino acids and carbohydrates metabolism in Kentucky bluegrass (Poa pratensis)[J]. Ecotoxicology, 2012, 21(7): 1911–1918.
[4] 宋奇超, 曹凤秋, 巩元勇, 程晓园, 毕昕媛, 刘来华. 高等植物氨基酸吸收与转运及生物学功能的研究进展[J]. 植物营养与肥料学报, 2012, 18(6): 1507–1517.
[5] Zhang Z, Mao C Y, Shi Z, Kou X H. The amino acid metabolic and carbohydrate metabolic pathway play important roles during salt-stress response in tomato[J]. Frontiers in Plant Science, 2017, 8: 1231.
[6] Diniz A L, Silva D, Lembke C G, Costa D B L, Souza G M. Amino acid and carbohydrate metabolism are coordinated to maintain energetic balance during drought in sugarcane[J]. International Journal of Molecular Sciences, 2020, 21(23): 9124.
[7] Ye S Y, Shao Q S, Xu M J, Li S L, Wu M, Tan S, Su L Y. Effects of light quality on morphology, enzyme activities, and bioactive compound contents in Anoectochilus roxburghii[J]. Frontiers in Plant Science, 2017, 8: 857.
[8] 冼康华, 苏江, 黄宁珍, 何金祥, 付传明. 光调控对金线莲生长发育的影响[J]. 广西科学院学报, 2019, 35(1): 36–44.
[9] 吴水华, 程伟青, 罗明可. 柱前自动衍生HPLC-FLD法测定不同金线莲中氨基酸含量[J]. 海峡药学, 2015, 27(10): 49–52.
[10] 许梦洁, 叶申怡, 吴梅, 邵清松, 谭欣, 李明焱. 不同种质金线莲氨基酸和矿物质元素量的比较[J]. 中草药, 2017, 48(2): 368–372.
[11] 陈思肜, 赵峰, 王淑燕, 金珊, 周鹏, 危赛明, 叶乃兴. 基于AQC衍生和液质联用的茶叶游离氨基酸分析[J]. 南方农业学报, 2019, 50(10): 2278–2285.
[12] 张俊, 颜新培, 龚昕, 龙唐忠, 李飞鸣, 徐瑛, 邹湘月, 雷语. 15个桑品种不同季节桑叶的游离氨基酸含量及主成分分析[J]. 蚕业科学, 2016, 42(1): 131–142.
[13] Hildebrandt T M, Nunes Nesi A, Araujo W, Hans P B. Amino acid catabolism in plants[J]. Molecular Plant, 2015, 8(11): 1563–1579.
[14] 钟添华, 黄丽英, 房静. 阴离子色谱–积分脉冲安培法测定珍稀药材金线莲中游离氨基酸[J]. 分析测试技术与仪器, 2011, 17(2): 74–78.
[15] Koppitz H, Dewender M, Ostendorp W, Schmeider K. Amino acids as indicators of physiological stress in common reed Phragmites australis affected by an extreme flood[J]. Aquatic Botany, 2004, 79(4): 277–294.
[16] Leap J, Sodek L, Parryma J. Asparagine in plants[J]. Annals of Applied Biology, 2010, 150(1): 1–26.
[17] 黄爱萍, 郑少泉. 龙眼果实发育过程果肉黄酮和氨基酸含量的变化[J]. 热带作物学报, 2010, 31(9): 1519–1523.
[18] 赖媛媛. 植物中游离氨基酸在水淹胁迫下响应的研究进展[J]. 安徽农业科学, 2018, 46(10): 25–27.
[19] Xing S G, Yu B J, Zhang W H, Liang L Y. Higher accumulation of gamma-aminobutyric acid induced by salt stress through stimulating the activity of diamine oxidases in Glycine max (L.) Merr. roots[J]. Plant Physiology & Biochemistry Ppb, 2007, 45(8): 560–566.
[20] Li Y J, Wei H B, Wang T, Xu Q Y, Xie X X. Current status on metabolic engineering for the production of l-aspartate family amino acids and derivatives[J]. Bioresource Technology, 2017, 245: 1588–1602.
[21] Han M, Zhang C, Suglo P, Sun S, Tao S. l-Aspartate: an essential metabolite for plant growth and stress acclimation[J]. Molecules, 2021, 26(7): 1887.
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