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豌豆基因组的五个区域共同控制对 的部分抗性、对霜害的耐受性以及一些结构或表型特征。

Five Regions of the Pea Genome Co-Control Partial Resistance to , Tolerance to Frost, and Some Architectural or Phenological Traits.

机构信息

IGEPP, INRAE, Institut Agro, Université de Rennes, 35653 Le Rheu, France.

BioEcoAgro Joint Research Unit, INRAE, Université de Lille, Université de Liège, Université de Picardie Jules Verne, 80200 Estrées-Mons, France.

出版信息

Genes (Basel). 2023 Jul 4;14(7):1399. doi: 10.3390/genes14071399.

Abstract

Evidence for reciprocal links between plant responses to biotic or abiotic stresses and architectural and developmental traits has been raised using approaches based on epidemiology, physiology, or genetics. Winter pea has been selected for years for many agronomic traits contributing to yield, taking into account architectural or phenological traits such as height or flowering date. It remains nevertheless particularly susceptible to biotic and abiotic stresses, among which and frost are leading examples. The purpose of this study was to identify and resize QTL localizations that control partial resistance to , tolerance to frost, and architectural or phenological traits on pea dense genetic maps, considering how QTL colocalizations may impact future winter pea breeding. QTL analysis revealed five metaQTLs distributed over three linkage groups contributing to both disease severity and frost tolerance. At these loci, the haplotypes of alleles increasing both partial resistance to and frost tolerance also delayed the flowering date, increased the number of branches, and/or decreased the stipule length. These results question both the underlying mechanisms of the joint control of biotic stress resistance, abiotic stress tolerance, and plant architecture and phenology and the methods of marker-assisted selection optimizing stress control and productivity in winter pea breeding.

摘要

已有研究利用流行病学、生理学或遗传学方法,提出了植物对生物或非生物胁迫的反应与形态结构和发育特征之间存在相互联系的证据。多年来,冬豌豆因其对产量有贡献的许多农艺性状而被选择,这些性状包括高度或开花日期等形态结构或物候学特征。然而,它仍然特别容易受到生物和非生物胁迫的影响,其中 和霜霉病是主要的例子。本研究的目的是在考虑到 QTL 共定位如何影响未来冬豌豆的选育的情况下,在豌豆密集遗传图谱上鉴定和调整控制对 局部抗性、对霜霉病的耐受性以及形态结构或物候学特征的 QTL 定位。QTL 分析揭示了五个分布在三个连锁群上的 metaQTL,它们对 和霜霉病的严重程度都有贡献。在这些位点上,增加对 和霜霉病耐受性的局部抗性的等位基因的单倍型也会延迟开花日期、增加分枝数和/或减少托叶长度。这些结果不仅质疑了生物胁迫抗性、非生物胁迫耐受性和植物形态结构和物候学的联合控制的潜在机制,还质疑了在冬豌豆选育中优化胁迫控制和生产力的标记辅助选择方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0afa/10379203/04f6b70efb6f/genes-14-01399-g001a.jpg

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