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首页> 外文期刊>Journal of Experimental Botany >An interspecific barberry hybrid enables genetic dissection of non-host resistance to the stem rust pathogen Puccinia graminis
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An interspecific barberry hybrid enables genetic dissection of non-host resistance to the stem rust pathogen Puccinia graminis

机译:三种间隙的禽橘细胞使遗传解剖非宿主抗性对茎锈病病理蛋白麦克林尼毒素进行遗传解剖

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摘要

Stem rust, caused by Puccinia graminis (Pg), remains a devastating disease of wheat, and the emergence of new Pg races virulent on deployed resistance genes fuels the ongoing search for sources of durable resistance. Despite its intrinsic durability, non-host resistance (NHR) is largely unexplored as a protection strategy against Pg, partly due to the inherent challenge of developing a genetically tractable system within which NHR segregates. Here, we demonstrate that Pg's far less studied ancestral host, barberry (Berberis spp.), provides such a unique pathosystem. Characterization of a natural population of B. xottawensis, an interspecific hybrid of Pg-susceptible B. vulgaris and Pg-resistant B. thunbergii (Bt), reveals that this uncommon nothospecies can be used to dissect the genetic mechanism(s) of Pg-NHR exhibited by Bt. Artificial inoculation of a natural population of B. xottawensis accessions, verified via genotyping by sequencing to be first-generation hybrids, revealed 51% susceptible, 33% resistant, and 16% intermediate phenotypes. Characterization of a B. xottawensis full sib family excluded the possibility of maternal inheritance of the resistance. By demonstrating segregation of Pg-NHR in a hybrid population, this study challenges the assumed irrelevance of Bt to Pg epidemiology and lays a novel foundation for the genetic dissection of NHR to one of agriculture's most studied pathogens.
机译:茎锈病,由普昔锡克酰氟嘧啶(PG)引起,仍然是小麦的毁灭性疾病,新的PG种族的出现在持续的耐久性基因上燃烧了持久性耐久性的搜索。尽管其内在耐久性,但非宿主阻力(NHR)主要是未开发的,作为对PG的保护策略,部分原因是由于在NHR隔离物中开发了基因漫步系统的固有挑战。在这里,我们证明PG远远较少学习的祖先宿主Barberry(Berberis SPP),提供了这样一个独特的遗传系统。 B. Xottawensis的天然群体的表征,PG易感B. vergaris和PG抗性B.Thunbergii(BT)的三种杂种,揭示了这一罕见的不代表可以用来解剖PG的遗传机制NHR由BT展出。人工接种B. XottaWensis and的天然群体,通过测序通过基因分型验证为第一代杂种,揭示了51%易感,33%的抗性和16%的中间表型。 B. XottaWensis全SIB系列的表征除了母体遗传的可能性。通过在杂交种群中展示PG-NHR的分离,本研究挑战了BT对PG流行病学的假设无关紧要,并为农业最多研究的病原体之一提出了NHR遗传解剖的新基础。

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