期刊文献+

关于青岛市三桠乌药与法国冬青温室育苗发芽时间的研究 被引量:3

下载PDF
导出
摘要 种子的发芽需要一定的积温和时间。三桠乌药出芽总发芽期为41天。发芽率较高的时间集中在4月2号到4月25号,达到总发芽率的57.4%。发芽指数为2.15,平均发芽时间为4.85天,最适发芽温度在12.5~24.5℃之间;而法国冬青总发芽期为51天。发芽率较高的时间集中在4月7号到4月22号,达到总发芽率的79.7%。发芽指数为2.50,平均发芽时间为3.22天。
出处 《山东林业科技》 2014年第1期25-27,共3页 Journal of Shandong Forestry Science and Technology
基金 山东省农业良种工程重大课题"林木种质资源收集保护与评价"(鲁农良字[2010]6号) 山东(暖温带)珍稀濒危树种种质资源保护与利用建设项目
  • 相关文献

参考文献3

二级参考文献45

  • 1党东雨.三桠乌药的特性与其开发利用[J].北京林业大学学报,2001,23(S2):134-134. 被引量:4
  • 2周佑勋,段小平,肖东玉.樟树、檫树、闽楠种子的休眠和萌发特性[J].中南林学院学报,2006,26(5):79-84. 被引量:22
  • 3Alvarez BER, Garcia BR. 1991. Seed and forest dynamics: a theoretical framework and an example from the Neotropics [J]. Am.Natu., 137:133--154.
  • 4Boehning GK, Gaese BH, Rabemanantsoa SB. 1999. Importance of primary and secondary seed dispersal in the Malagasy tree Commiphora guillaumini [J]. Ecology, 80: 821 -- 832.
  • 5Canham CD, Marks PL. 1985. The response of woody plants to disturbance patterns of establishment and growth [ M ]. In: Pickett STA, Orlando, FL. (eds). The Ecology of Natural Disturbance and Patch Dynamics. New York: Academic Press, 197-217.
  • 6Chambers JC, MacMahon JA. 1994. A day in the life of a seed:movements and fates of seeds and their implications for natural and managed systems [J]. Ann. Rev. Ecol. Syst., 25:263-292.
  • 7Clark DA, Clark DB. 1984. Spacing dynamics of a tropical rain forest tree: evaluation of the Janzen-Connell model [J]. Am.Nat., 124:769--788.
  • 8Clark JS, Macklin E, Wood L. 1998. Stages and spatial scales of recruitment limitation in southern Appalachian forests[J]. Ecol.Monog . ,68:213--235.
  • 9Clark JS, Beckagea B, Camilla P, et al.1999. Interpreting recruitment limitation in forests [J].Am. J Bot .,86:1-16.
  • 10Connell JH. 1971. On the role of natural enemies in preventing competitive exclusion is one marine mammals and in rain forest trees [M]. In: Boer PJ, Dynamics of Populations. (eds). Wageningen, The Netherlands: Center for Agricultural Publication and Documentation, 298--312.

共引文献25

同被引文献53

  • 1党东雨.三桠乌药的特性与其开发利用[J].北京林业大学学报,2001,23(S2):134-134. 被引量:4
  • 2Ambrosone C B, McCann S E, Freudenheim J L, et al. Breast cancer risk in premenopausal women is inversely associated with consumption of broccoli, a source of isothiocyanates, but is not modified by GST genotype[J]. The Journal of Nutrition, 2004, 134: 1134-1138.
  • 3Sarikamis G, Marquez J, MacCormack R, et al. High glucosinolate broccoli: a delivery system for sulforaphane[J]. Molecular Breeding, 2006, 18: 219-228.
  • 4Bewley J D, Black M. Seeds: Physiology of development and germination[M]. Plenum Press, New York, 1994.
  • 5Garcia-Huidobro J, Monteith J L, Squire G R. Time, temperature and germination of Pearl Millet (Pennisetum typhoides S. H.) I. constant temperature[J]. Journal of Experimental, 1982.
  • 6Dahal P, Bradford K J, Jones R A. Effects of priming and endosperm integrity on seed germination rates of tomato genotypes. I. germination at suboptimal temperature[J]. Journal of Experimental Botany, 1990, 41, 1431–1439.Botany, 33, 288–296.
  • 7Steinmaus S J, Prather T S, Holt J S. Estimation of base temperatures for nine weeds species[J]. Journal of Experimental Botany, 2000, 51(343), 275–286.
  • 8Alvarado V, Bradford K J. A hydrothermal time model explains the cardinal temperatures for seed germination[J]. Plant, Cell Environment, 2002, 25, 1061-1069.
  • 9Bradford K J. Applications of hydrothermal time to quantifying and modeling seed germination and dormancy[J]. Weed Science, 2002, 50, 248-260.
  • 10Al-Ahmadi M J, Kafi M. Cardinal temperatures for germination of Kochia scoparia (L.) [J]. Journal of Arid Environments, 2007, 68, 308-314.

引证文献3

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部