植物源激素独脚金内酯的研究进展
Research Progress of Plant Hormones Strigolactones
摘要: 独脚金内酯(strigolactones, SLs)是近年来植物源激素研究的热点之一,其广泛的存在于各类高等植物的根系中,是独脚金醇类化合物的总称。独脚金内酯在抑制植物腋芽分蘖、促进菌根真菌分枝和诱导根寄生植物种子萌发等方面起着重要作用。但目前关于SLs的研究集中在高等植物中,另有少数的研究也得出其在低等植物如轮藻类中也有独脚金内脂的发现,可能将独脚金内脂的进化起源进一步提前。本文从SLs的生物活性、合成途径、作用机制等方面进行阐述,为独脚金内酯的进一步开发应用提供参考。
Abstract: Strigolactones (SLs) are one of the hotspots of phytohormone research in recent years. It exists widely in the roots of various advanced plants; Strigolactones are the general name of the monopod alcohols. SLs play an important role in inhibiting axillary bud tillering, promoting mycorrhizal fungal branch and inducing seed germination of root parasitic plants. However, the current research on SLs is concentrated in advanced plant, and a few other studies have found that SLs also have its discovery in lower plants such as charophytes, which may further advance its evolutionary origin. In this paper, its biological activity, synthesis pathway and action mechanism were reviewed, which could provide reference for its further development and application.
文章引用:王碧娇, 冯德明, 孙诗清, 沈栋, 崔皙楠. 植物源激素独脚金内酯的研究进展[J]. 农业科学, 2018, 8(11): 1239-1244. https://doi.org/10.12677/HJAS.2018.811181

参考文献

[1] Gomez Roldan, V., Fermas, S., Brewer, P.B., et al. (2008) Strigolactone Inhibition of Shoot Branching. Nature, 455, 189-194. [Google Scholar] [CrossRef] [PubMed]
[2] 萧浪涛. 中国科学家在解析独脚金内酯调控水稻株型的分子机制研究中取得突破性进展[J]. 植物学报, 2015, 50(4): 407-411.
[3] 熊国胜, 李家洋, 王永红. 植物激素调控研究进展[J]. 科学通报, 2009, 54(18): 2718-2733.
[4] Cook, C.E., Whichard, L.P., Turner, B., et al. (1966) Germination of Witchweed (Striga lutea Lour.): Isolation and Properties of a Potent Stimulant. Science, 154, 1189-1190. [Google Scholar] [CrossRef] [PubMed]
[5] Cook, C.E., Whichard, L.P., Monroe, W.E., et al. (1972) Germination Stimulants. II. Structure of Strigol, a Potent Seed Germination Stimulant for Witchweed (Striga lutea). Journal of the American Chemical Society, 94, 6198-6199. [Google Scholar] [CrossRef
[6] 陈虞超, 巩檑, 张丽, 等. 新型植物激素独脚金内酯的研究进展[J]. 中国农学通报, 2015, 31(24): 157-162.
[7] Alder, A., Jamil, M., Marzorati, M., et al. (2012) The path from β-Carotene to Carlactone, a Strigo-lactone-Like Plant Hormone. Science, 335, 1348-1351. [Google Scholar] [CrossRef] [PubMed]
[8] Zwanenburg, B., Mwaka-boko, A.S., Reizelman, A., et al. (2009) Structure and Function of Natural and Synthetic Signalling Molecules in Parasitic Weed Ger-mination. Pest Management Science, 65, 478-491. [Google Scholar] [CrossRef] [PubMed]
[9] 冯丹, 陈贵林. 独脚金内酯调控侧枝发育的研究进展[J]. 生态学杂志, 2011, 30(2): 349-356.
[10] Delaux, P.M. (2017) Comparative Phylogenomics of Symbiotic Associations. New Phytologist, 213, 89. [Google Scholar] [CrossRef] [PubMed]
[11] 陈彩艳, 邹军煌, 张淑英, 等. 独角金内酯能抑制植物的分枝并介导植物与枞枝真菌及寄生植物间的相互作用[J]. 中国科学, 2009, 39(6): 525-533.
[12] 张荣祥, 杨清, 赵德刚. 新型植物激素——独脚金素内酯[J]. 生物学通报, 2011, 46(5): 10-13.
[13] 王玫, 陈洪伟, 王红利, 等. 独脚金内酯调控植物分枝的研究进展[J]. 园艺学报, 2014, 41(9): 1924-1934.
[14] 侯文君. 独脚金内酯商业化用于植物保护的潜力[J]. 世界农药, 2017, 39(2): 20-25.
[15] 段倩倩, 杨晓红, 黄先智. 植物与丛枝菌根真菌在共生早期的信号交流[J]. 微生物学报, 2015, 55(7): 819-825.
[16] 王闵霞, 彭鹏, 龙海馨, 等. 独脚金内酯途径相关基因的研究进展[J]. 分子植物育种, 2014, 12(3): 603-609.
[17] 段明, 元香梅, 蒋茂双, 等. 独脚金内酯生物学结构特性、功能基因组学、表观遗传学及应用[J]. 山西农业大学学报(自然科学版), 2016, 36(12): 868-874.
[18] Priya, R. and Siva, R. (2014) Phylogenetic Analysis and Evolutionary Studies of Plant Carotenoid Cleavage Dioxygenase Gene. Gene, 548, 223-233. [Google Scholar] [CrossRef] [PubMed]
[19] Delaux, P.M., Xie, X., Timme, R.E., et al. (2012) Origin of Strigolactones in the Green Lineage. New Phytologist, 195, 857. [Google Scholar] [CrossRef] [PubMed]
[20] Snowden, K.C. and Janssen, B.J. (2016) Structural Biology: Signal Locked. Nature, 536, 402-404. [Google Scholar] [CrossRef] [PubMed]
[21] 刘刚. 中科院遗传发育所在拟南芥独脚金内酯信号研究中取得新进展[J]. 农药市场信息, 2015(29).
[22] 常金科, 黎家. 独脚金内酯信号感知揭示配体-受体作用新机制[J]. 植物学报, 2017, 52(2): 123-127.
[23] 姚瑞枫, 娄智勇, 谢道昕. 植物分枝的奥秘——植物分枝激素独脚金内酯的感知机制[J]. 科技导报, 2018, 36(7): 20-25.
[24] 胡骁伟, 李国栋, 刘颖坤, 等. 不同竹种竹笋中5-脱氧独脚金醇的UPLC分析[J]. 核农学报, 2015, 29(6): 1114-1120.
[25] 郗琳. 独脚金内酯在缺磷条件下影响菊花侧枝伸长的研究[D]: [博士学位论文]. 北京: 中国农业大学, 2015.
[26] 冯永坤. 水稻独脚金内酯转运蛋白同源基因参与根毛发育及响应外界氮磷养分的研究[D]: [博士学位论文]. 北京: 中国农业大学, 2016.
[27] 张梦. 独脚金内酯介导的水稻和烟草化感与种间竞争的研究[D]: [博士学位论文]. 北京: 中国科学院大学, 2015.
[28] Yoneyama, K., Xie, X., Kusumoto, D., et al. (2007) Nitrogen Deficiency as Well as Phosphorus Deficiency in Sorghum Promotes the Production and Exudation of 5-Deoxystrigol, the Host Recognition Signal for Arbuscular Mycorrhizal Fungi and Root Parasites. Planta, 227, 125-132. [Google Scholar] [CrossRef] [PubMed]
[29] 赵晨晨, 范雅丽, 秦岭, 等. 森林草莓独脚金内酯合成关键基因D27的克隆与表达分析[J]. 园艺学报, 2016, 43(5): 975-982.
[30] Umehara, M., Hanada, A., Yoshida, S., et al. (2008) Inhibition of Shoot Branching by New Terpenoid Plant Hormones. Nature, 455, 195-200. [Google Scholar] [CrossRef] [PubMed]
[31] 王瑞民. 栅藻(Scenedesmus obliquus)藻菌共生体系的构建及调控[D]: [博士学位论文]. 北京: 中国科学院大学, 2015.
[32] 牛曼, 张小平, 王秀, 等. “菌藻-菌”系统处理高浓度有机废水的研究[J]. 环境工程学报, 2010, 4(8): 1819-1822.