Exogenous application of GA3 inactively regulates axillary bud outgrowth by influencing of branching-inhibitors and bud-regulating hormones in apple (Malus domestica Borkh.)

被引:0
作者
Ming Tan
Guofang Li
Xiaojie Liu
Fang Cheng
Juanjuan Ma
Caiping Zhao
Dong Zhang
Mingyu Han
机构
[1] Northwest A & F University,College of Horticulture
来源
Molecular Genetics and Genomics | 2018年 / 293卷
关键词
Gibberellin; Axillary bud outgrowth; Branching; Branching-inhibitor;
D O I
暂无
中图分类号
学科分类号
摘要
Although gibberellin (GA) has been reported to control branching, little is known about how GA mediates signals regulating the outgrowth of axillary buds (ABs). In the current study, the effect of the exogenous application of 5.0 mM GA3 on ABs outgrowth on 1-year-old ‘Nagafu No. 2’/T337/M. robusta Rehd. apple trees was investigated and compared to the bud-activating treatments, 5 mM BA or decapitation. Additionally, the expression of genes related to bud-regulating signals and sucrose levels in ABs was examined. Results indicated that GA3 did not promote ABs’ outgrowth, nor down-regulate the expression of branching repressors [MdTCP40, MdTCP33, and MdTCP16 (homologs of BRANCHED1 and BRC2)], which were significantly inhibited by the BA and decapitation treatments. MdSBP12 and MdSBP18, the putative transcriptional activators of these genes, which are expressed at lower levels in BA-treated and decapitated buds, were up-regulated in the GA3 treatment in comparison to the BA treatment. Additionally, GA3 did not up-regulate the expression of CK response- and auxin transport-related genes, which were immediately induced by the BA treatment. In addition, GA3 also up-regulated the expression of several Tre6P biosynthesis genes and reduced sucrose levels in ABs. Sucrose levels, however, were still higher than what was observed in BA-treated buds, indicating that sucrose may not be limiting in GA3-controlled AB outgrowth. Although GA3 promoted cell division, it was not sufficient to induce AB outgrowth. Conclusively, some branching-inhibiting genes and bud-regulating hormones are associated with the inability of GA3 to activate AB outgrowth.
引用
收藏
页码:1547 / 1563
页数:16
相关论文
共 534 条
[1]  
Agharkar M(2007)Stable expression of AtGA2ox1 in a low-input turfgrass ( Plant Biotechnol J 5 791-801
[2]  
Lomba P(2007) Flugge) reduces bioactive gibberellin levels and improves turf quality under field conditions Plant Cell 19 458-20247
[3]  
Altpeter F(2011) BRANCHED1 Acts as an integrator of branching signals within axillary buds Proc Natl Acad Sci USA 108 20242-2116
[4]  
Zhang H(2008)Strigolactone signaling is required for auxin-dependent stimulation of secondary growth in plants Plant Cell 20 2102-1029
[5]  
Kenworthy K(2007)Type B response regulators of Plant J 51 1019-350
[6]  
Lange T(2013) play key roles in cytokinin signaling and plant development Sci Hortic 160 345-577
[7]  
Aguilarmartínez JA(2011)DWARF10, an RMS1/MAX4/DAD1 ortholog, controls lateral bud outgrowth in rice Plant J Cell Mol Biol 65 571-563
[8]  
Pozacarrión C(2006)A new approach for augmenting branching of nursery trees and its comparison with other methods Curr Biol 16 553-48
[9]  
Cubas P(2014)Competitive canalization of PIN-dependent auxin flow from axillary buds controls pea bud outgrowth Trends Genet 30 41-342
[10]  
Agusti J(1993)The J Plant Physiol 142 338-1198