期刊文献+

马铃薯块茎休眠和发芽的分子机理及调控策略 被引量:13

在线阅读 下载PDF
导出
摘要 马铃薯块茎的休眠和发芽对于马铃薯的栽培、块茎生产和加工工业都极为重要。本文综述了马铃薯块茎休眠和发芽的分子生物学研究进展,着重介绍了通过调控块茎糖代谢中的协同因子——无机焦磷酸来调控块茎休眠和发芽特性的分子策略。
出处 《中国马铃薯》 2007年第2期104-107,共4页 Chinese Potato Journal
基金 国家自然科学基金资助项目(30571182)
  • 相关文献

参考文献33

  • 1连勇,金黎平,丁明亚.马铃薯块茎发育及休眠调控研究进展[M]//陈伊里.中国马铃薯研究与产业开发哈尔滨:哈尔滨工程大学出版社,2003:65-69.
  • 2Hemberg T.Potato rest[M]//Li P H.Potato Physiology.London:Academic Press,1985:353-388.
  • 3张丽莉,陈伊里,连勇.马铃薯块茎休眠及休眠调控研究进展[J].中国马铃薯,2003,17(6):352-356. 被引量:15
  • 4Sonnewald U.Control of potato tuber sprouting[J].Trends in Plant Science,2001,6:333-335.
  • 5Lang G A,Early J D,Martin G C,et al.Endo-para-dormancy:physiology terminology and classification for dormancy research[J].Hortiscience,1987,22:371-377.
  • 6Krijithe N.Observations on the sprouting of seed potatoes[J].European J of Potato Research,1962,5:316-333.
  • 7Suttle J C.Postharvest changes in endogenous ABA levels and ABA metabolism in relation to dormancy in potato tubers[J].Physiol Plant,1995,95:233-240.
  • 8Turnbul C G N,Halnke D E.The control of bud dormancy in potato tubers.Evidence for the primary role of cytokinins and a seasonal pattern of changing sensitivity to cytokinin [J].Plant,1985,165:359-365.
  • 9Hemberg T.The action of some cytokinins on the rest-period and the connect of acid growth-inhibiting substances in potato[J].Physiol Plant,1970,23:850-858.
  • 10Sukhova L S,Machackova I,Edeer J,et al.Changes in the level of free IAA and cytokinins in potato tuber during dormancy and sprouting[J].Biol Plant,1993,35; 387-391.

二级参考文献51

  • 1[1]Rastovski A , Van Es A, Buitelaar N, et al. Storage of potatoes- p ostharvest b ehaviour, storage design, storage practice[M]. Handling Pudoc ,Wageningen , Th e Netherlands, 1987. 1-150.
  • 2[2]Belknap W R, Vayda M E, Park W D. The molecular and cellular biology of the po tato (Second edition)[M]. Wallingford, UK, CAB International , 1994. 1-85.
  • 3[3]Bachem C W B, Oomen R J F, Visser R G F. Transcript imaging with cDNA-AFLP: a step-by-step protocol[J]. Plant Molecular Biology Reporter, 1998, (16):157-173.
  • 4Seki M, Narusaka M, Abe H, Kasuga M, Yamaguchi-Shinozaki K, Carninci P, Hayashizaki Y, Shinozaki K. Monitoring the expression pattern of 1 300 Arabidopsis genes under drought and cold stresses by using a full-length cDNA microarray. Plant Cell, 2001, 13: 61-72.
  • 5Ingram J, Bartels D. The molecular basis of dehydration tolerance in plants. Annu Rev Plant Physiol Plant Mol Biol,1996, 47: 377-403.
  • 6Bray E A. Plant responses to water deficit. Trends Plant Sci, 1997, 2: 48-54.
  • 7Yamaguchi-Shinozaki K, Koizumi M, Urao S, Shinozaki K. Molecular cloning and characterization of 9 cDNAs for genes that are responsive to desiccation in Arabidopsis thaliana: Sequence analysis of one cDNA clone that encodes a putative transmembrane channel protein. Plant Cell Physiol, 1992, 33: 217-224.
  • 8Yamaguchi-Shinozaki K, Shinozaki K. Characterization of the expression of a desiccation-responsive rd29A gene of Arabidopsis thaliana and analysis of its promoter in transgenic plants. Mol Gen Genet, 1993, 236: 331-340.
  • 9Murray M G, Thompson W F. Rapid isolation of high molecular weight plant DNA. Nucl Acids Res, 1980, 8: 4 321-4 325.
  • 10Edwards K, Johnstone C, Thompson C. A simple and rapid method for the preparation of plant genomic DNA for PCR analysis. Nucl Acids Res, 1991, 19:1 349.

共引文献50

同被引文献198

引证文献13

二级引证文献25

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