Department of Biology, Centre for Novel Agricultural Products (CNAP), University of York, Wentworth Way, YO10 5DD, UK.
Plant J. 2023 Aug;115(3):614-626. doi: 10.1111/tpj.16248. Epub 2023 May 20.
Triticum aestivum L. (bread wheat) is a crop relied upon by billions of people around the world, as a major source of both income and calories. Rising global temperatures, however, pose a genuine threat to the livelihood of these people, as wheat growth and yields are extremely vulnerable to damage by heat stress. Here we present the YoGI wheat landrace panel, comprising 342 accessions that show remarkable phenotypic and genetic diversity thanks to their adaptation to different climates. We quantified the abundance of 110 790 transcripts from the panel and used these data to conduct weighted co-expression network analysis and to identify hub genes in modules associated with abiotic stress tolerance. We found that the expression of three hub genes, all heat-shock proteins (HSPs), were significantly correlated with early thermotolerance in a validation panel of landraces. These hub genes belong to the same module, with one (TraesCS4D01G207500.1) being a candidate master-regulator potentially controlling the expression of the other two hub genes, as well as a suite of other HSPs and heat-stress transcription factors (HSFs). In this work, therefore, we identify three validated hub genes, the expression of which can serve as markers of thermotolerance during early development, and suggest that TraesCS4D01G207500.1 is a potential master regulator of HSP and HSF expression - presenting the YoGI landrace panel as an invaluable tool for breeders wishing to determine and introduce novel alleles into modern varieties, for the production of climate-resilient crops.
小麦是全球数十亿人的主要收入和卡路里来源,是一种依赖作物。然而,不断上升的全球气温对这些人的生计构成了真正的威胁,因为小麦的生长和产量极易受到热应激的破坏。在这里,我们展示了 YoGI 小麦地方品种面板,该面板由 342 个品种组成,由于它们对不同气候的适应,表现出显著的表型和遗传多样性。我们量化了面板中 110790 个转录本的丰度,并利用这些数据进行加权共表达网络分析,以鉴定与非生物胁迫耐受性相关模块中的枢纽基因。我们发现,三个枢纽基因(均为热休克蛋白 [HSPs])的表达与地方品种验证面板中的早期耐热性显著相关。这些枢纽基因属于同一个模块,其中一个(TraesCS4D01G207500.1)是潜在的主调控因子,可能控制其他两个枢纽基因以及一系列其他 HSPs 和热应激转录因子(HSFs)的表达。因此,在这项工作中,我们鉴定了三个经过验证的枢纽基因,其表达可以作为早期发育耐热性的标志物,并表明 TraesCS4D01G207500.1 是 HSP 和 HSF 表达的潜在主调控因子——这表明 YoGI 地方品种面板是育种者的宝贵工具,他们希望确定和将新的等位基因引入现代品种,以生产具有气候适应能力的作物。