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Design of a Custom RT-qPCR Array for Assignment of Abiotic Stress Tolerance in Traditional Portuguese Grapevine Varieties

机译:定制RT-qPCR阵列的设计以分配传统葡萄牙葡萄品种中的非生物胁迫耐受性

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摘要

Widespread agricultural losses attributed to drought, often combined with high temperatures, frequently occur in the field, namely in Mediterranean climate areas, where the existing scenarios for climate change indicate an increase in the frequency of heat waves and severe drought events in summer. Grapevine (Vitis vinifera L.) is the most cultivated fruit species in the world and the most valuable one and is a traditional Mediterranean species. Currently, viticulture must adjust to impending climate changes that are already pushing vine-growers toward the use of ancient and resilient varieties. Portugal is very rich in grapevine biodiversity, however, currently, 90% of the total producing area is planted with only 16 varieties. There is a pressing need to understand the existing genetic diversity and the physiological potential of the varieties/genotypes available to be able to respond to climate changes. With the above scenario in mind, an assembly of 65 differentially expresses genes (DEGs) previously identified as responsive to abiotic stresses in two well studied genotypes, ‘Touriga Nacional’ and ‘Trincadeira,’ was designed to scan the gene expression of leaf samples from 10 traditional Portuguese varieties growing in two regions with distinct environmental conditions. Forty-five of those DEGs proved to be associated to “abiotic stress” and were chosen to build a custom qPCR array to identify uncharacterized genotypes as sensitive or tolerant to abiotic stress. According to the experimental set-up behind the array design these DEGs can also be used as indicators of the main abiotic stress that the plant is subjected and responding to (drought, heat, or excess light).
机译:由于干旱造成的广泛的农业损失,通常与高温相结合,在田野即地中海气候区经常发生,那里的现有气候变化情景表明夏季热浪的频率增加和严重的干旱事件增加。葡萄(Vitis vinifera L.)是世界上最栽培的水果品种,也是最有价值的一种,是传统的地中海品种。当前,葡萄种植业必须适应即将到来的气候变化,这已经促使葡萄种植者转向使用古老而有弹性的品种。葡萄牙的葡萄生物多样性非常丰富,但是,目前,总产区的90%仅种植了16个品种。迫切需要了解现有的遗传多样性以及可用于应对气候变化的品种/基因型的生理潜力。考虑到上述情况,设计了一个由65个差异表达基因(DEG)组成的装配体,该基因先前被确定为对两种经过深入研究的基因型'Touriga Nacional'和'Trincadeira'的非生物胁迫作出反应,旨在扫描来自以下物种的叶片样品的基因表达在两个具有不同环境条件的地区种植的10个传统葡萄牙品种。这些DEG中有四十五个被证明与“非生物胁迫”相关,因此被选择构建定制的qPCR阵列,以鉴定对非生物胁迫敏感或耐受的未表征基因型。根据阵列设计背后的实验设置,这些DEG也可用作植物遭受和响应的主要非生物胁迫(干旱,高温或过剩光)的指标。

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