The genetic and molecular basis for improving heat stress tolerance in wheat

被引:0
作者
Lv Sun
Jingjing Wen
Huiru Peng
Yingyin Yao
Zhaorong Hu
Zhongfu Ni
Qixin Sun
Mingming Xin
机构
[1] China Agricultural University,Key Laboratory of Crop Heterosis Utilization (MOE)
来源
aBIOTECH | 2022年 / 3卷
关键词
Wheat; Heat stress; Genetic basis; Molecular mechanisms;
D O I
暂无
中图分类号
学科分类号
摘要
Wheat production requires at least ~ 2.4% increase per year rate by 2050 globally to meet food demands. However, heat stress results in serious yield loss of wheat worldwide. Correspondingly, wheat has evolved genetic basis and molecular mechanisms to protect themselves from heat-induced damage. Thus, it is very urgent to understand the underlying genetic basis and molecular mechanisms responsive to elevated temperatures to provide important strategies for heat-tolerant varieties breeding. In this review, we focused on the impact of heat stress on morphology variation at adult stage in wheat breeding programs. We also summarize the recent studies of genetic and molecular factors regulating heat tolerance, including identification of heat stress tolerance related QTLs/genes, and the regulation pathway in response to heat stress. In addition, we discuss the potential ways to improve heat tolerance by developing new technologies such as genome editing. This review of wheat responses to heat stress may shed light on the understanding heat-responsive mechanisms, although the regulatory network of heat tolerance is still ambiguous in wheat.
引用
收藏
页码:25 / 39
页数:14
相关论文
共 605 条
  • [1] Asseng S(2011)The impact of temperature variability on wheat yields Glob Change Biol 17 997-1012
  • [2] Foster IA(2015)Rising temperatures reduce global wheat production Nat Clim Change 5 143-147
  • [3] Turner NC(2019)Heat stress responses in a large set of winter wheat cultivars ( PLoS ONE 14 e0222639-119
  • [4] Asseng S(2015) L.) depend on the timing and duration of stress Field Crop Res 171 109-696
  • [5] Ewert F(2019)Simulating the impact of extreme heat and frost events on wheat crop production: a review Crop Sci 59 684-188
  • [6] Martre P(2017)Quantifying the impact of heat stress on pollen germination, seed set, and grain filling in spring wheat PLoS ONE 12 180-1718
  • [7] Rötter RP(2020)Mapping QTLs for grain yield components in wheat under heat stress Int J Mol Sci 9 4-507
  • [8] Lobell DB(2006)Wheat heat shock factor TaHsfA6f increases ABA levels and enhances tolerance to multiple abiotic stresses in transgenic plants Curr Opin Plant Biol 254 1710-59
  • [9] Cammarano D(2021)Unraveling abiotic stress tolerance mechanisms—getting genomics going Planta 160 268-260
  • [10] Kimball BA(2012)Differential responses of anthers of stress tolerant and sensitive wheat cultivars to high temperature stress Plant Physiol 20 491-1243