提高小麦耐涝性的分子育种。

R. Mason, T. Roberts, Richard E. Boyles, Andrea Acuña, M. N. Arguello, Diana C. Ballesteros, N. Subramanian
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引用次数: 0

摘要

摘要本章综述了小麦对涝渍胁迫的响应、宏量和微量养分的吸收和转运的遗传调控以及与耐涝机制相关的qtl和基因的研究进展。通过标记辅助选择分子育种的潜在靶点和基因组选择的潜力进行了讨论,以便更好地了解土壤耐涝性的生物学和基因基础,并为育种家明确未来的分子育种靶点和方向,以加快品种的开发。
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Molecular breeding for improving waterlogging tolerance in wheat.
Abstract This chapter summarizes the current understanding of the response of wheat to waterlogging stress, the genetic control of uptake and transport of macro- and micronutrients, and the QTLs and genes associated with tolerance mechanisms. Potential targets for molecular breeding through marker-assisted selection and the potential for genomic selection are discussed in order to provide a better understanding of the biology and genes underlying soil waterlogging tolerance, as well as clarity and direction for breeders for future molecular breeding targets to expedite cultivar development.
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The genetic architecture and breeding towards cold tolerance in maize: review. Molecular breeding for increasing micronutrient content in sorghum. CRISPR-mediated gene editing in wheat for abiotic stress tolerance. Recent advancement of molecular breeding for improving salinity tolerance in wheat. Recent understanding on molecular mechanisms of plant abiotic stress response and tolerance.
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