首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Genome-wide association study for frost tolerance in canola (Brassica napus L.) under field conditions
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Genome-wide association study for frost tolerance in canola (Brassica napus L.) under field conditions

机译:在野外条件下油菜(Brassica Napus L.)中冻融耐受性的基因组 - 宽度研究

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Canola growers in the North Central Region of the United States and Canada are highly concerned about possible early frost. Plants can be killed due to their cells rupture when exposed to a freezing temperature. There are different methods to evaluate frost tolerance including field evaluation. Due to environmental variations, it is difficult to get an ideal condition for frost tolerance evaluation under field conditions. In this study, canola seedlings were grown in a greenhouse for 14days at 20 degrees C and cold acclimated for 7-14days at 4 degrees C. The acclimated seedlings were placed outside under field conditions based on predicted outside temperature between -4 and -8 degrees C to be exposed to a natural freezing condition. After an overnight freezing exposure, the seedlings were brought back to greenhouse to score the freezing induced seedling damage. The experiment was conducted in a randomized complete black design with two replications, and repeated the trial eight times. A genome-wide association study was conducted on 147 spring, winter, and semi-winter germplasm accessions obtained from 15 countries. A total of 37,111 single nucleotide polymorphism markers were used for the analysis. Three mixed populations with no growth type or geographic patterns were identified. One QTL that explained about 5% of the phenotypic variation and located on chromosome C04 was identified associated with frost tolerance of canola. Five potential genes related to frost tolerance and abiotic stress tolerance were identified.
机译:美国和加拿大北部中部地区的油菜种植者非常关注可能的早期霜冻。由于细胞在暴露于冷冻温度时,植物可以被杀死。有不同的方法来评估霜冻容差,包括现场评估。由于环境变化,难以在现场条件下获得霜冻耐受评估的理想条件。在这项研究中,CanoLa幼苗在温室内生长为14天,在20摄氏度下,冷落在4摄氏度下为7-14天。基于-4至-8度之间的预测外部温度,将适应的幼苗放置在现场条件下c暴露于天然冷冻条件。在过夜冷冻暴露后,幼苗被带回温室,以得分冻结诱导的幼苗损伤。实验是在随机的完整黑色设计中进行两种复制,并重复试验八次。在15个国家获得的147次春季,冬季和半冬季种质牧群中进行了基因组 - 范围的协会研究。总共37,111个单核苷酸多态性标记物用于分析。鉴定了三种没有生长类型或地理模式的混合群体。一种QTL,其解释了约5%的表型变异并位于染色体CO 4上,与油菜冻其耐热性相关。鉴定了五种与霜耐受性和非生物胁迫耐受性有关的潜在基因。

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