[1] 徐大平, 杨曾奖, 梁坤南, 等. 华南5个珍贵树种的低温寒害调查[J]. 林业科学, 2008, 44(5):1-2. doi: 10.3321/j.issn:1001-7488.2008.05.001
[2] 王 军, 王宇光, 杨锦玲, 等. 2种白木香所产沉香的木材组织构造和化学成分比较[J]. 林业科学, 2019, 55(7):146-154. doi: 10.11707/j.1001-7488.20190716
[3] 张玉臣, 周再知, 梁坤南, 等. 不同植物生长调节剂对白木香扦插生根的影响[J]. 林业科学研究, 2010, 23(2):278-282.
[4] 高志晖, 赵文婷, 孙佩文, 等. 世界各国(地区)沉香资源与保护[J]. 中国现代中药, 2017, 19(8):1057-1063.
[5] Naziz P S, Das R, Sen S. The scent of stress: evidence from the unique fragrance of agarwood[J]. Frontiers in Plant Science, 2019, 10(6): 840.
[6] Ge L, Dong W H, Yang J L, et al. Monitoring the Chemical Profile in Agarwood Formation within One Year and Speculating on the Biosynthesis of 2-(2-Phenylethyl) Chromones[J]. Molecules, 2018, 23(6): 1261. doi: 10.3390/molecules23061261
[7] Akter S, Islam M T, Zulkefeli M, et al. Agarwood production-a multidisciplinary field to be explored in Bangladesh[J]. International Journal of Pharmaceutical and Life Sciences, 2013, 1(2): 22-32.
[8] Jung D. The cultural biography of agarwood–perfumery in Eastern Asia and the Asian neighbourhood[J]. Journal of the Royal Asiatic Society, 2013, 23(1): 103-125.
[9] Turjaman M, Hidayat A, Santoso E. Development of agarwood induction technology using endophytic fungi[M]. Singapore: Springer, 2016: 57-71.
[10] 张 争, 杨 云, 魏建和, 等. 白木香结香机制研究进展及其防御反应诱导结香假说[J]. 中草药, 2010, 41(1):156-159.
[11] Li W, Chen H, Wang H, et al. Natural products in agarwood and Aquilaria plants: chemistry, biological activities and biosynthesis[J]. Natural Product Reports, 2020, 38(3): 528-565.
[12] 廖 格, 赵美丽, 宋希强, 等. 整树结香法所产沉香的GC-MS分析[J]. 热带作物学报, 2016, 37(2):411-417. doi: 10.3969/j.issn.1000-2561.2016.02.031
[13] 王东光, 张宁南, 杨曾奖, 等. 20种真菌对白木香挥发油成分的影响[J]. 华南农业大学学报, 2016, 37(5):77-83. doi: 10.7671/j.issn.1001-411X.2016.05.014
[14] Zhang Z, Wei J, Han X, et al. The sesquiterpene biosynthesis and vessel-occlusion formation in stems of Aquilaria sinensis (Lour. ) Gilg trees induced by wounding treatments without variation of microbial communities[J]. International journal of molecular sciences, 2014, 15(12): 23589-23603. doi: 10.3390/ijms151223589
[15] 邓加艾, 戴好富, 王宇光, 等. 沉香样品中曲霉属真菌菌株HNWSW-20的分离鉴定及其次生代谢产物的研究[J]. 热带作物学报, 2018, 39(8):1618-1624. doi: 10.3969/j.issn.1000-2561.2018.08.022
[16] Liu Y, Chen H, Yang Y, et al. Whole-tree agarwood-inducing technique: an efficient novel technique for producing high-quality agarwood in cultivated Aquilaria sinensis trees[J]. Molecules, 2013, 18(3): 3086-3106. doi: 10.3390/molecules18033086
[17] Xu Y, Liao Y, Zhang Z, et al. Jasmonic acid is a crucial signal transducer in heat shock induced sesquiterpene formation in Aquilaria sinensis[J]. Scientific Reports, 2016, 6(1): 1-9. doi: 10.1038/s41598-016-0001-8
[18] Liu J, Xu Y, Zhang Z, et al. Hydrogen peroxide promotes programmed cell death and salicylic acid accumulation during the induced production of sesquiterpenes in cultured cell suspensions of Aquilaria sinensis[J]. Functional Plant Biology, 2015, 42(4): 337-346. doi: 10.1071/FP14189
[19] 吕菲菲, 孙佩文, 刘培卫, 等. 伤害诱导白木香愈伤组织形成倍半萜过程中活性氧的产生和积累[J]. 中国药学杂志, 2019, 54(23):1939-1944.
[20] Sun P, Xu Y, Yu C, et al. WRKY44 represses expression of the wound-induced sesquiterpene biosynthetic gene ASS1 in Aquilaria sinensis[J]. Journal of Experimental Botany, 2020, 71(3): 1128-1138.
[21] 宋晓琛, 黄桂华, 王西洋, 等. 无机盐、激素与真菌联合诱导土沉香抗逆能力的研究[J]. 植物研究, 2019, 39(4):505-513. doi: 10.7525/j.issn.1673-5102.2019.04.004
[22] Chang C, Yang M, Wen H, et al. Estimation of total flavonoid content in propolis by two complementary colorimetric methods[J]. Journal of food and drug analysis, 2002, 10(3): 178-182.
[23] Ghorai N, Chakraborty S, Gucchait S, et al. Estimation of total Terpenoids concentration in plant tissues using a monoterpene, Linalool as standard reagent[J]. Protocol Exchange, 2012.
[24] 郭 燕, 沈雅飞, 程瑞梅, 等. 水淹持续胁迫对湿地松光合特性及生理生化的影响[J]. 林业科学研究, 2021, 34(2):141-148.
[25] Aerts N, Pereira M M, Van W S C. Multiple levels of crosstalk in hormone networks regulating plant defense[J]. The Plant Journal, 2021, 105(2): 489-504. doi: 10.1111/tpj.15124
[26] Yu S, Lo S, Ho T D. Source–sink communication: regulated by hormone, nutrient, and stress cross-signaling[J]. Trends in Plant Science, 2015, 20(12): 844-857. doi: 10.1016/j.tplants.2015.10.009
[27] Zhang H, Zhao Y, Zhu J. Thriving under Stress: How Plants Balance Growth and the Stress Response[J]. Developmental Cell, 2020, 55(5): 529-543. doi: 10.1016/j.devcel.2020.10.012
[28] Hou X, Ding L, Yu H. Crosstalk between GA and JA signaling mediates plant growth and defense[J]. Plant Cell Reports, 2013, 32(7): 1067-1074. doi: 10.1007/s00299-013-1423-4
[29] 石 婧, 刘东洋, 张凤华. 棉花幼苗对盐胁迫的生理响应与耐盐机理[J]. 浙江农业学报, 2020, 32(7):1141-1148. doi: 10.3969/j.issn.1004-1524.2020.07.01
[30] 张 慧, 黄秀凤, 徐华潮. 松材线虫自然侵染后松树感病进程中光合作用及抗氧化酶活性的变化[J]. 环境昆虫学报, 2014, 36(2):139-144.
[31] Shikano I, Pan Q, Hoover K, et al. Herbivore-induced defenses in tomato plants enhance the lethality of the entomopathogenic bacterium, Bacillus thuringiensis var. kurstaki[J]. Journal of Chemical Ecology, 2018, 44(10): 947-956. doi: 10.1007/s10886-018-0987-4
[32] 柯笑楠, 胡海超, 黄 霞, 等. 水稻抗坏血酸氧化酶基因家族生物信息学分析[J]. 分子植物育种, 2020, 18(1):11-19.
[33] 林源秀, 顾欣昕, 汤浩茹. 植物谷胱甘肽还原酶的生物学特性及功能[J]. 中国生物化学与分子生物学报, 2013, 29(6):534-542.
[34] Li J, Zhou H, Zhang Y, et al. The GSK3-like kinase BIN2 is a molecular switch between the salt stress response and growth recovery in Arabidopsis thaliana[J]. Developmental Cell, 2020, 55(3): 367-380. doi: 10.1016/j.devcel.2020.08.005
[35] 夏 蕴, 巢建国, 谷 巍, 等. 倒春寒胁迫与恢复对茅苍术生长、生理及关键酶基因的影响[J]. 中成药, 2020, 42(8):2187-2191. doi: 10.3969/j.issn.1001-1528.2020.08.045
[36] Ahuja I, Kissen R, Bones A M. Phytoalexins in defense against pathogens[J]. Trends in Plant Science, 2012, 17(2): 73-90. doi: 10.1016/j.tplants.2011.11.002
[37] 张 争, 杨 云, 魏建和, 等. 白木香茎中内源茉莉酸类和倍半萜类物质对机械伤害的响应[J]. 园艺学报, 2013, 40(1):163-168.
[38] 郑春芳, 陈 威, 刘伟成, 等. 低温胁迫后红树植物秋茄幼苗光合特性及蔗糖代谢的恢复机制[J]. 生态学杂志, 2020, 39(12):4048-4056.
[39] 郭菊兰, 朱耀军, 文菀玉, 等. 秋茄幼苗光合特性对寒害的响应[J]. 林业科学研究, 2018, 31(6):63-68.
[40] 华建峰, 韩路弯, 王芝权, 等. 完全淹水解除后‘中山杉407’生长及光合特性的恢复[J]. 南京林业大学学报:自然科学版, 2017, 41(5):191-196.
[41] 王树凤, 施 翔, 陈益泰, 等. 遮荫对弗吉尼亚栎苗木生长及光合-荧光参数的影响[J]. 林业科学研究, 2019, 32(5):99-106.
[42] 李秋利, 高登涛, 魏志峰, 等. 桃幼苗叶片叶绿素荧光特性和抗氧化酶活性对二氧化硫胁迫的响应[J]. 果树学报, 2018, 35(11):1374-1384.
[43] 马迎莉, 高 雨, 袁婷婷, 等. 重金属铬胁迫对髯毛箬竹光合特性的影响[J]. 南京林业大学学报:自然科学版, 2019, 43(1):54-60.
[44] 何天友, 于增金, 沈少炎, 等. 花吊丝竹对干旱胁迫的光合和生理响应[J]. 森林与环境学报, 2020, 40(1):68-75.