期刊文献+

Comparison of Effect of Brassinosteroid and Gibberellin Biosynthesis Inhibitors on Growth of Rice Seedlings 被引量:3

Comparison of Effect of Brassinosteroid and Gibberellin Biosynthesis Inhibitors on Growth of Rice Seedlings
下载PDF
导出
摘要 Brassinosteroid(BR) and gibberellin(GA) are two predominant plant hormones that regulate plant cell elongation. Mutants disrupt the biosynthesis of these hormones and display different degrees of dwarf phenotypes in rice. Although the role of each plant hormone in promoting the longitudinal growth of plants has been extensively studied using genetic methods, their relationship is still poorly understood. In this study, we used two specific inhibitors targeting BR and GA biosynthesis to investigate the roles of BR and GA in growth of rice seedlings. Yucaizol, a specific inhibitor of BR biosynthesis, and Trinexapac-ethyl, a commercially available inhibitor of GA biosynthesis, were used. The effect of Yucaizol on rice seedlings indicated that Yucaizol significantly retarded stem elongation. The IC_(50) value was found to be approximately 0.8 μmol/L. Yucaizol also induced small leaf angle phenocopy in rice seedlings, similarly to BR-deficient rice, while Trinexapac-ethyl did not. When Yucaizol combined with Trinexapac-ethyl was applied to the rice plants, the mixture of these two inhibitors retarded stem elongation of rice at lower doses. Our results suggest that the use of a BR biosynthesis inhibitor combined with a GA biosynthesis inhibitor may be useful in the development of new technologies for controlling rice plant height. Brassinosteroid(BR) and gibberellin(GA) are two predominant plant hormones that regulate plant cell elongation. Mutants disrupt the biosynthesis of these hormones and display different degrees of dwarf phenotypes in rice. Although the role of each plant hormone in promoting the longitudinal growth of plants has been extensively studied using genetic methods, their relationship is still poorly understood. In this study, we used two specific inhibitors targeting BR and GA biosynthesis to investigate the roles of BR and GA in growth of rice seedlings. Yucaizol, a specific inhibitor of BR biosynthesis, and Trinexapac-ethyl, a commercially available inhibitor of GA biosynthesis, were used. The effect of Yucaizol on rice seedlings indicated that Yucaizol significantly retarded stem elongation. The IC_(50) value was found to be approximately 0.8 μmol/L. Yucaizol also induced small leaf angle phenocopy in rice seedlings, similarly to BR-deficient rice, while Trinexapac-ethyl did not. When Yucaizol combined with Trinexapac-ethyl was applied to the rice plants, the mixture of these two inhibitors retarded stem elongation of rice at lower doses. Our results suggest that the use of a BR biosynthesis inhibitor combined with a GA biosynthesis inhibitor may be useful in the development of new technologies for controlling rice plant height.
出处 《Rice science》 SCIE CSCD 2016年第1期51-55,共5页 水稻科学(英文版)
基金 supported in part by a grant from Akita President’s research project to Keimei OH
关键词 brassinosteroid gibberellin plant hormone plant growth regulator rice brassinosteroid gibberellin plant hormone plant growth regulator rice
  • 相关文献

参考文献34

  • 1Asami T,Mizutani M,Fujioka S,Goda H,Min Y K,Shimada Y,Nakano T,Takatsuto S,Matsuyama T,Nagata N,Sakata K,Yoshida S.2001.Selective interaction of triazole derivatives with DWF4,a cytochrome P450 monooxygenase of the brassinosteroid biosynthetic pathway,correlates with brassinosteroid deficiency in planta.J Biol Chem,276(28):25687-25691.
  • 2Asami T,Nakano T,Fujioka S.2005.Plant brassinosteroid hormones.Vitam Horm,72(3):479-504.
  • 3Blackwell H E,Zhao Y.2003.Chemical genetic approaches to plant biology.Plant Physiol,133(2):448-455.
  • 4Clouse S D,Sasse J M.1998.Brassinosteroids:Essential regulators of plant growth and development.Annu Rev Plant Physiol Plant Mol Biol,49:427-451.
  • 5Clouse S D.2011.Brassinosteroid signal transduction:From receptor kinase activation to transcriptional networks regulating plant development.Plant Cell,23(4):1219-1230.
  • 6Dill A,Jung H S,Sun T P.2001.The DELLA motif is essential for gibberellin-induced degradation of RGA.Proc Natl Acad Sci USA,98(24):14162-14167.
  • 7Gomi K,Sasaki A,Itoh H,Ueguchi-Tanaka M,Ashikari M,Kitano H,Matsuoka M.2004.GID2,an F-box subunit of the SCF E3 complex,specifically interacts with phosphorylated SLR1 protein and regulates the gibberellin-dependent degradation of SLR1 in rice.Plant J,37(4):626-634.
  • 8He J X,Gendron J M,Yang Y L,Li J M,Wang Z Y.2002.The GSK3-like kinase BIN2 phosphorylates and destabilizes BZR1,a positive regulator of the brassinosteroid signaling pathway in Arabidopsis.Proc Natl Acad Sci USA,99(15):10185-10190.
  • 9Hedden P.2003.The genes of the Green Revolution.Trends Genet,19(1):5-9.
  • 10Hoagland D R,Arnon D I.1950.The water-culture method of growing plants without soil.Calif Agric Exp Stat,347(1):1-32.

同被引文献14

引证文献3

二级引证文献23

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