Wheat grain preharvest sprouting and late maturity alpha-amylase

被引:0
作者
Daryl J. Mares
Kolumbina Mrva
机构
[1] University of Adelaide,School of Agriculture Food and Wine
[2] Waite Campus,undefined
来源
Planta | 2014年 / 240卷
关键词
Dormancy; Release from dormancy; Abscisic acid; Gibberellic acid; Grain development; QTL;
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学科分类号
摘要
Preharvest sprouting (PHS) and late maturity α-amylase (LMA) are the two major causes of unacceptably high levels of α-amylase in ripe wheat grain. High α-amylase activity in harvested grain results in substantially lower prices for wheat growers and at least in the case of PHS, is associated with adverse effects on the quality of a range of end-products and loss of viability during storage. The high levels of α-amylase are reflected in low falling number, the internationally accepted measure for grain receival and trade. Given the significant losses that can occur, elimination of these defects remains a major focus for wheat breeding programs in many parts of the world. In addition, the genetic, biochemical and molecular mechanisms involved in the control of PHS and LMA as well as the interactions with environmental factors have attracted a sustained research interest. PHS and LMA are independent, genetically controlled traits that are strongly influenced by the environment, where the effects of particular environmental factors vary substantially depending on the stage of grain development and ripening. This review is a summary and an assessment of results of recent research on these important grain quality defects.
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页码:1167 / 1178
页数:11
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共 260 条
  • [21] Come D(2012)Mapping quantitative trait loci controlling pre-harvest sprouting resistance in a red J Cereal Sci 55 166-173
  • [22] Corbineau F(2013) white seeded spring wheat cross Planta 238 121-138
  • [23] Bewley D(2001)Identification of gibberellins in developing wheat grain Theor Appl Genet 102 980-985
  • [24] Biddulph TB(2013)An analysis of dormancy, ABA responsiveness, after-ripening and pre-harvest sprouting in hexaploid wheat ( J Cereal Sci 58 472-478
  • [25] Plummer JA(2014) L.) caryopses J Cereal Sci 60 210-216
  • [26] Setter TL(1986)Development of PCR markers for Tamyb10 related to R-1, red grain color gene in wheat Physiol Plant 68 301-307
  • [27] Mares DJ(2013)A maize viviparous 1 gene increases seed dormancy and preharvest sprouting tolerance in transgenic wheat Genetics 195 263-273
  • [28] Chang C(2013)Roles for blue light, jasmonate and nitric oxide in the regulation of dormancy and germination in wheat grain ( PLoS One 8 e56570-128
  • [29] Zhang H-P(1984) L.) Aust J Agric Res 35 115-1265
  • [30] Zhao Q-X(2001)Detection of loci controlling seed dormancy on group 4 chromosomes of wheat and comparative mapping with rice and barley genomes Aust J Agric Res 52 1257-412