Zuluaga Diana Lucia, Blanco Emanuela, Mangini Giacomo, Sonnante Gabriella, Curci Pasquale Luca
Institute of Biosciences and Bioresources, National Research Council (CNR), Via Amendola 165/A, 70126 Bari, Italy.
Plants (Basel). 2023 Mar 10;12(6):1267. doi: 10.3390/plants12061267.
Durum wheat ( subsp. (Desf.) Husn.) is an allotetraploid cereal crop of worldwide importance, given its use for making pasta, couscous, and bulgur. Under climate change scenarios, abiotic (e.g., high and low temperatures, salinity, drought) and biotic (mainly exemplified by fungal pathogens) stresses represent a significant limit for durum cultivation because they can severely affect yield and grain quality. The advent of next-generation sequencing technologies has brought a huge development in transcriptomic resources with many relevant datasets now available for durum wheat, at various anatomical levels, also focusing on phenological phases and environmental conditions. In this review, we cover all the transcriptomic resources generated on durum wheat to date and focus on the corresponding scientific insights gained into abiotic and biotic stress responses. We describe relevant databases, tools and approaches, including connections with other "omics" that could assist data integration for candidate gene discovery for bio-agronomical traits. The biological knowledge summarized here will ultimately help in accelerating durum wheat breeding.
硬粒小麦(亚种(Desf.)Husn.)是一种具有全球重要性的异源四倍体谷类作物,因其用于制作意大利面、蒸粗麦粉和碎粒小麦。在气候变化情景下,非生物胁迫(如高温和低温、盐度、干旱)和生物胁迫(主要以真菌病原体为例)对硬粒小麦种植构成重大限制,因为它们会严重影响产量和谷物品质。新一代测序技术的出现极大地推动了转录组学资源的发展,现在有许多相关数据集可用于硬粒小麦,涵盖了不同的解剖水平,还聚焦于物候期和环境条件。在这篇综述中,我们涵盖了迄今为止在硬粒小麦上产生的所有转录组学资源,并重点介绍了在非生物和生物胁迫响应方面获得的相应科学见解。我们描述了相关数据库、工具和方法,包括与其他“组学”的联系,这些联系有助于整合数据以发现生物农艺性状的候选基因。这里总结的生物学知识最终将有助于加速硬粒小麦育种。