1 | 尹雪,穆立蔷,李中跃,等.3种鸟类对东北红豆杉的取食方式及传播[J].东北林业大学学报,2016,44(1):81-84,89. |
1 | Yin X,Mu L Q,Li Z Y,et al.Fruits foraging patterns and seed dispersal effect of three kinds of birds on Taxus cuspidata[J].Journal of Northeast Forestry University,2016,44(1):81-84,89. |
2 | 刘彤,胡林林,郑红,等.天然东北红豆杉土壤种子库研究[J].生态学报,2009,29(4):1869-1876. |
2 | Liu T,Hu L L,Zheng H,et al.Researchs on soil seed bank of Japanese yew[J].Acta Ecologica Sinica,2009,29(4):1869-1876. |
3 | 费永俊,雷泽湘,余昌均,等.中国红豆杉属植物的濒危原因及可持续利用对策[J].自然资源,1997,19(5):59-63. |
3 | Fei Y J,Lei Z X,Yu C J,et al.The cause for endangerment of Taxus L. and measures for its sustainable development in china [J].Natural Resources,1997,19(5):59-63. |
4 | 臧润国,董鸣,李俊清,等.典型极小种群野生植物保护与恢复技术研究[J].生态学报,2016,36(22):7130-7135. |
4 | Zang R G,Dong M,Li J Q,et al.Conservation and restoration for typical critically endangered wild plants with extremely small population[J].Acta Ecologica Sinica,2016,36(22):7130-7135. |
5 | 张银,李文杰,李玲丽,等.模拟酸雨对3种红豆杉幼苗生理指标的影响[J].西部林业科学,2020,49(1):120-127. |
5 | Zhang Y,Li W J,Li L L,et al.Effects of simulated acid rain on physiological indexes of three species of Taxus seedlings[J].Journal of West China Forestry Science,2020,49(1):120-127. |
6 | 刁云飞,刘延坤,刘玉龙,等.穆棱东北红豆杉种群结构特征[J].中国科学:生命科学,2020,50(4):391-397. |
6 | Diao Y F,Liu Y K,Liu Y L,et al.Population structure characteristics of Taxus cuspidata[J].Scientia Sinica Vitae,2020,50(4):391-397. |
7 | Zu Y G,Chen H F,Wang W J,et al.Population structure and distribution pattern of Taxus cuspidata in Muling region of Heilongjiang Province,China[J].Journal of Forestry Research,2006,17(1):80-82. |
8 | 曹聪梅,李作平,史清文.东北红豆杉的化学成分和药理作用研究进展[J].天然产物研究与开发,2006,18(2):330-342,259. |
8 | Cao C M,Li Z P,Shi Q W.Chemical constituents in Taxus cuspidata and their bioactivities[J].Natural Product Research and Development,2006,18(2):330-342,259. |
9 | 邓立新.抗癌新药紫杉醇简介[J].化学教学,2006(1):46-48. |
9 | Deng L X Brief introduction of the anti-cancer medicine Peclitaxel[J].Education in Chemistry,2006(1):46-48. |
10 | 王楠楠,黄飞华.红豆杉有效成分及其药理作用研究进展[J].浙江中医杂志,2018,53(8):621-623. |
10 | Wang N N,Huang F H.Zhejiang Journal of Traditional Chinese Medicine[J].Zhejiang Journal of Traditional Chinese Medicine,2018,53(8):621-623. |
11 | 汤彬, 薛平, 李祥,等.南方红豆杉多糖的含量测定及体外降血糖活性研究[J].食品工业科技,2013,34(009):128-131. |
11 | Tang B,Xue P,Li X,et al.Study on the determination and hypoglycemic activity in vitro of Taxus chinensis var.mairei polysaccharide[J].Science and Technology of Food Industry,2013,34(9):128-131,136. |
12 | Zhang L,Liu P Z,Li L L,et al.Identification and antioxidant activity of flavonoids extracted from Xinjiang Jujube(Ziziphus jujube Mill.) leaves with ultra-high pressure extraction technology[J].Molecules,2019,24(1):122. |
13 | Murahari M,Singh V,Chaubey P,et al.A critical review on anticancer mechanisms of natural flavonoid puerarin[J].Anti-Cancer Agents in Medicinal Chemistry,2020,20(6):678-686. |
14 | Chen Y C,Shen S C,Chow J M,et al.Flavone inhibition of tumor growth via apoptosis in vitro and in vivo[J].International Journal of Oncology,2004,25(3):661-670. |
15 | 吴世雄,刘艳红,张利民,等.不同产地东北红豆杉幼苗迁地保护的生长稳定性分析[J].北京林业大学学报,2018,40(12):27-37. |
15 | Wu S X,Liu Y H,Zhang L M,et al.Growth stability analysis of ex situ conservation of Taxus cuspidata seedlings from different sources[J].Journal of Beijing Forestry University.2018,40(12):27-37. |
16 | 苟晓莉,金晶,毕惠嫦,等.红豆杉枝叶提取物及紫杉烷类成分对4种肿瘤细胞的毒性作用研究[J].中国药理学通报,2016,32(4):591-592. |
16 | Gou X L,Jin J,Bi H C,et al.Study on antitumor activity of extracts of branches and leaves of Taxus chinensis and taxoids on four cell lines[J].Chinese Pharmacological Bulletin,2016,32(4):591-592. |
17 | Ketchum R E B,Horiguchi T,Qiu D Y,et al.Administering cultured Taxus cells with early precursors reveals bifurcations in the taxoid biosynthetic pathway[J].Phytochemistry,2007,68(3):335-341. |
18 | 陈一鸣,王涛,张凤姣,等.南方红豆杉野生种与栽培品种‘金锡杉’针叶代谢物的比较分析[J].西北植物学报,2019,39(5):801-807. |
18 | Chen Y M,Wang T,Zhang F J,et al.Comparison of metabolites in the needles of Taxus wallichiana var.mairei and Taxus wallichiana var. mairei cv.‘Jinxishan’[J].Acta Botanica Boreali-Occidentalia Sinica,2019,39(5):801-807. |
19 | 李影影,熊耀康.光照强度与南方红豆杉初生代谢产物相关性研究[J].中华中医药杂志,2018,33(6):2659-2664. |
19 | Li Y Y,Xiong Y K.Collection study between light intensity and primary metabolite content of Taxus mairei(Lemee et Levl.) S.Y.Hu ex Liu.[J].China Journal of Traditional Chinese Medicine and Pharmacy,2018,33(6):2659-2664. |
20 | 张春椿,年慧慧,李效贤,等.GC/MS法对南方红豆杉种皮抑制物分析研究[J].浙江中医药大学学报,2013,37(4):446-450. |
20 | Zhang C C,Nian H H,Li X X,et al.Study on seed coat dormancy substances of Taxusmairei(Lemee et Levl.) S.Y.Hu ex Liu by GC/MS[J].Journal of Zhejiang Chinese Medical University,2013,37(4):446-450. |
21 | Kind T,Wohlgemuth G,Lee D Y,et al.FiehnLib:mass spectral and retention index libraries for metabolomics based on quadrupole and time-of-flight gas chromatography/mass spectrometry[J].Analytical Chemistry,2009,81(24):10038-10048. |
22 | Dunn W B,Broadhurst D,Begley P,et al.Procedures for large-scale metabolic profiling of serum and plasma using gas chromatography and liquid chromatography coupled to mass spectrometry[J].Nature Protocols,2011,6(7):1060-1083. |
23 | Jolliffe I T.Principal Component Analysis[J].Journal of Marketing Research,2002,87(4):513. |
24 | Wiklund S,Johansson E,Sj?str?m L,et al.Visualization of GC/TOF-MS-based metabolomics data for identification of biochemically interesting compounds using OPLS class models[J].Analytical chemistry,2008,80(1):115-122. |
25 | Trygg J,Wold S.Orthogonal projections to latent structures(O-PLS)[J].Journal of Chemometrics,2002,16(3):119-128. |
26 | 洪森荣,吴夏俊鹏,徐文慧,等.低温离体保存黄独微型块茎转录组、蛋白质组和代谢组的关联分析[J].浙江农业学报,2017,29(11):1827-1834. |
26 | Hong S R,Wuxia J P,Xu W H,et al.Correlation analysis of transcriptome,proteome and metabolome of Dioscorea bulbifera L.microtubers conserved in vitro at low temperature[J].Acta Agriculturae Zhejiangensis,2017,29(11):1827-1834. |
27 | Kanehisa M,Goto S.KEGG:Kyoto encyclopedia of genes and genomes[J].Nucleic Acids Research,2000,28(1):27-30. |
28 | Xia J G,Sinelnikov I V,Han B,et al.MetaboAnalyst 3.0-making metabolomics more meaningful[J].Nucleic Acids Research,2015,43(W1):W251-W257. |
29 | 许祥明,叶和春,李国凤.脯氨酸代谢与植物抗渗透胁迫的研究进展[J].植物学通报,2000,17(6):536-542. |
29 | Xu X M,Ye H C,Li G F.Progress in synthesis and metabolism of proline and its relationship with osmotolerance of plants[J].Chinese Bulletin of Botany,2000,17(6):536-542. |
30 | 刘建兵.干旱胁迫对马尾松苗木脯氨酸及游离氨基酸含量的影响[J].湖南林业科技,2017,44(1):14-18. |
30 | Liu J B.Effect of drought stress on the contents of proline and free amino acid in masson pine seedlings[J].Hunan Forestry Science & Technology,2017,44(1):14-18. |
31 | 夏海威,吴娟,黄敏.外源鸟氨酸对菹草(Potamogeton crispus L.)抗镉胁迫能力的影响[J].湖泊科学,2014,26(02):288-296. |
31 | XIA H W,W J,H M,Effects of exogenous ornithine on resistance of Potamogeton crispus L.to cadmium stress[J],Journal of Lake Sciences,2014,26(02):288-296.4. |
32 | 朱虹,祖元刚,王文杰,等.逆境胁迫条件下脯氨酸对植物生长的影响[J].东北林业大学学报,2009,37(4):86-89. |
32 | Zhu H,Zu Y G,Wang W J,et al.Effect of proline on plant growth under different stress conditions[J].Journal of Northeast Forestry University,2009,37(4):86-89. |
33 | 包雨卓,杨宁,苍晶,等.冬小麦东农冬麦1号在不同温度下的代谢组学差异分析[J].麦类作物学报,2017,37(5):647-655. |
33 | Bao Y Z,Yang N,Cang J,et al.Metabolomic profiling of winter wheat dongnongdongmai 1 grown at different temperatures[J].Journal of Triticeae Crops,2017,37(5):647-655. |
34 | 黄骥,王建飞,张红生.植物戊糖磷酸途径及其两个关键酶的研究进展[J].植物学通报,2004,21(2):139-145. |
34 | Huang J,Wang J F,Zhang H S.Advances on plant pentose phosphate pathway and its key enzymes[J].Chinese Bulletin of Botany,2004,21(2):139-145. |
35 | 朱明月,杨淼,张玮琪,等.黑龙江穆棱东北红豆杉自然保护区马鹿与狍冬季食性组成的比较[J].东北林业大学学报,2019,47(5):100-104. |
35 | Zhu M Y,Yang M,Zhang W Q,et al.Wintering diet of red and roe deer in Heilongjiang Muling Japnaese Yew National Reserve[J].Journal of Northeast Forestry University,2019,47(5):100-104. |
36 | 张欣,高增平.阿魏酸的研究进展[J].中国现代中药,2020,22(01):138-147. |
36 | Zhang X,Gao Z P.Research Progress in Ferulic Acid[J].Modern Chinese Medicine,2020,22(01)138-147. |
37 | 方紫雯,张夏燕,陶俊,等.阿魏酸对凤丹干旱胁迫的缓解效应[J].植物研究,2020,40(3):353-359. |
37 | Fang Z W,Zhang X Y,Tao J,et al.Ameliorative effect of ferulic acid on Paeonia ostii under drought stress[J].Bulletin of Botanical Research,2020,40(3):353-359. |