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硬粒小麦抗赤霉病的优先行动:来自小麦计划的见解

Priority actions for Fusarium head blight resistance in durum wheat: Insights from the wheat initiative.

作者信息

Viviani Ambra, Haile Jemanesh K, Fernando W G Dilantha, Ceoloni Carla, Kuzmanović Ljiljana, Lhamo Dhondup, Gu Yong-Qiang, Xu Steven S, Cai Xiwen, Buerstmayr Hermann, Elias Elias M, Confortini Alessia, Bozzoli Matteo, Brar Gurcharn Singh, Ruan Yuefeng, Berraies Samia, Hamada Walid, Oufensou Safa, Jayawardana Malini, Walkowiak Sean, Bourras Salim, Dayarathne Monika, Isidro Y Sánchez Julio, Doohan Fiona, Gadaleta Agata, Marcotuli Ilaria, He Xinyao, Singh Pawan K, Dreisigacker Susanne, Ammar Karim, Klymiuk Valentyna, Pozniak Curtis J, Tuberosa Roberto, Maccaferri Marco, Steiner Barbara, Mastrangelo Anna Maria, Cattivelli Luigi

机构信息

Department of Agricultural Sciences, University of Bologna, Bologna, Italy.

Crop Development Centre and Department of Plant Sciences University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

出版信息

Plant Genome. 2025 Mar;18(1):e20539. doi: 10.1002/tpg2.20539.

Abstract

Fusarium head blight (FHB), mainly caused by Fusarium graminearum and Fusarium culmorum, is a major wheat disease. Significant efforts have been made to improve resistance to FHB in bread wheat (Triticum aestivum), but more work is needed for durum wheat (Triticum turgidum spp. durum). Bread wheat has ample genetic variation for resistance breeding, which can be readily exploited, while durum wheat is characterized by higher disease susceptibility and fewer valuable resistance sources. The Wheat Initiative - Expert Working Group on Durum Wheat Genomics and Breeding has promoted a scientific discussion to define the key actions that should be prioritized for achieving resistance in durum wheat comparable to that found in bread wheat. Here, a detailed state of the art and novel tools to improve FHB resistance in durum are presented, together with a perspective on the next steps forward. A meta-analysis grouping all quantitative trait loci (QTL) associated with FHB resistance in both bread and durum wheat has been conducted to identify hotspot regions that do not overlap with Rht alleles, which are known to negatively correlate with FHB resistance. A detailed list of QTL related to FHB resistance and deoxynivalenol contamination and durum lines carrying different sources of FHB resistance are provided as a strategic resource. QTL, closely linked markers and durum wheat lines carrying the useful alleles, can be selected to design an effective breeding program. Finally, we highlight the priority actions that should be implemented to achieve satisfactory resistance to FHB in durum wheat.

摘要

赤霉病主要由禾谷镰刀菌和黄色镰刀菌引起,是小麦的一种主要病害。人们已做出重大努力来提高面包小麦(普通小麦)对赤霉病的抗性,但硬粒小麦(圆锥小麦硬粒亚种)还需要开展更多工作。面包小麦在抗性育种方面有丰富的遗传变异,可轻易加以利用,而硬粒小麦的特点是对病害更敏感,有价值的抗性资源较少。小麦计划——硬粒小麦基因组学与育种专家工作组推动了一场科学讨论,以确定为使硬粒小麦获得与面包小麦相当的抗性而应优先采取的关键行动。本文介绍了提高硬粒小麦抗赤霉病能力的详细技术现状和新工具,并展望了后续步骤。已对面包小麦和硬粒小麦中所有与抗赤霉病相关的数量性状位点(QTL)进行了荟萃分析,以确定与Rht等位基因不重叠的热点区域,已知Rht等位基因与赤霉病抗性呈负相关。提供了一份与抗赤霉病和脱氧雪腐镰刀菌烯醇污染相关的QTL详细清单,以及携带不同抗赤霉病来源的硬粒小麦品系,作为一种战略资源。可以选择与有用等位基因紧密连锁的QTL、标记和携带这些等位基因的硬粒小麦品系来设计有效的育种计划。最后,我们强调了为使硬粒小麦对赤霉病获得令人满意的抗性而应实施的优先行动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6b2/11701714/952859cdb434/TPG2-18-e20539-g004.jpg

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