Ethephon induced abscission in mango: physiological fruitlet responses

被引:30
作者
Hagemann, Michael H. [1 ]
Winterhagen, Patrick [1 ]
Hegele, Martin [1 ]
Wuensche, Jens N. [1 ]
机构
[1] Univ Hohenheim, Inst Crop Sci, Sect Crop Physiol Specialty Crops, D-70599 Stuttgart, Germany
来源
FRONTIERS IN PLANT SCIENCE | 2015年 / 6卷
关键词
ethylene receptors; fruitlet abscission zone; fruitlet pedicel; fruitlet pericarp; gene expression; polar auxin transport capacity; soluble carbohydrates; ETHYLENE BIOSYNTHESIS; AUXIN TRANSPORT; EXPRESSION; DROP; L; GENES; ARABIDOPSIS; GROWTH; LEAVES; PERCEPTION;
D O I
10.3389/fpls.2015.00706
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Fruitlet abscission of mango is typically very severe, causing considerable production losses worldwide. Consequently, a detailed physiological and molecular characterization of fruitlet abscission in mango is required to describe the onset and time-dependent course of this process. To identify the underlying key mechanisms of abscission, ethephon, an ethylene releasing substance, was applied at two concentrations (600 and 7200 ppm) during the midseason drop stage of mango. The abscission process is triggered by ethylene diffusing to the abscission zone where it binds to specific receptors and thereby activating several key physiological responses at the cellular level. The treatments reduced significantly the capacity of polar auxin transport through the pedicel at 1 day after treatment and thereafter when compared to untreated pedicels. The transcript levels of the ethylene receptor genes MIETR1 and HERS1 were significantly upregulated in the pedicel and pericarp at 1, 2, and 3 days after the ethephon application with 7200 ppm, except for MiETR1 in the pedicel, when compared to untreated fruitlet. In contrast, ethephon applications with 600 ppm did not affect expression levels of MiETR1 in the pedicel and of MiERS1 in the pericarp; however, MIETR1 in the pericarp at day 2 and MiERS1 in the pedicel at days 2 and 3 were significantly upregulated over the controls. Moreover, two novel short versions of the MiERS1 were identified and detected more often in the pedicel of treated than untreated fruitlets at all sampling times. Sucrose concentration in the fruitlet pericarp was significantly reduced to the control at 2 days after both ethephon treatments. In conclusion, it is postulated that the ethephon-induced abscission process commences with a reduction of the polar auxin transport capacity in the pedicel, followed by an upregulation of ethylene receptors and finally a decrease of the sucrose concentration in the fruitlets.
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页数:11
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