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Dataset for the metabolic and physiological characterization of seeds from oilseed rape (Brassica napus L.) plants grown under single or combined effects of drought and clubroot pathogen Plasmodiophora brassicae

机译:用于种子的种子代谢和生理特征来自油籽油菜(芸苔NAPUS L.)植物的种子种植植物在干旱和干旱菌球菌病原体粒细胞博士热博米酚的单一或综合作用下种植

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摘要

Faced with the challenges of adapting agriculture to climate change, seed production should have increased resilience to abiotic stress factors and the expected proliferation of pathogens. This concerns both the nutritional quality and seed vigor, two crucial factors in seedling establishment and yield. Both qualities are acquired during seed development, but how environment influences the genetic and physiological determinisms of these qualities remains to be elucidated. With a world production of 71 Mt of seeds per year, oilseed rape (Brassica napus) is the third largest oleaginous crop. But its productivity must cope with several abiotic stresses, among which drought is one of the main constraints in current and future climate scenarios. In addition, clubroot disease, caused by the pathogen Plasmodiophora brassicae, leads to severe yield losses for the Brassica crops worldwide. Clubroot provokes the formation of galls on the infected roots that can restrict the flow of water and nutrients within the plant throughout the growth cycle. In order to get new insights into the impact of single or combined constraints on seed qualities, metabolic profiling assays were run for a collection of 330 seed samples (including developing, mature and imbibed seeds) harvested from plants of two B. napus cultivars (“Express” and “Montego”) that were grown under either drought conditions, the presence of P. brassicae, or a combination of both stresses. Metabolites were identified and quantified by UPLC or GC. In addition, monitoring germination traits was conducted for 60 mature seed lots under in vitro conditions using an automated phenotyping platform. The present dataset contains the raw contents for 42 metabolites (nmol.mg−1 of seed dry weight) filtered and analyzed with statistical tests as well as germination speed and percentages. This dataset is available under accession at Data INRAE. These data will contribute to a better understanding of the crosstalk between the plant responses to water deprivation and/or pathogen attack and how it compromises seed quality. A better understanding of the molecular and physiological responses of the seed to (a)biotic stress on a molecular and physiological will be a first step to meet scientific and technological challenges of adapting seeds to their environment.
机译:面临适应农业对气候变化的挑战,种子产量应增加对非生物胁迫因素的恢复力和病原体的预期增殖。这涉及营养质量和种子活力,苗木建立和产量的两个关键因素。在种子发展期间获得了这两种品质,但环境如何影响这些品质的遗传和生理决定措施仍有待阐明。随着每年生产71吨种子的世界生产,油菜油菜(Brassica Napus)是第三大的芦苇作物。但其生产力必须应对几种非生物应激,其中干旱是当前和未来的气候情景中的主要限制之一。此外,由病原体疟原虫引起的球杆菌疾病导致全球甘蓝作物的严重产量损失。马蹄莲激发了在感染的根部上的胆量的形成,可以限制在整个生长周期内植物中的水和营养物流的流动。为了得到新的见解的单个或组合的约束对种子品质的影响,代谢谱测定法对来自两个欧洲油菜品种的植物中收获种子330个样本(包括显影,成熟和吸涨种子)的集合上运行(“表达“和”蒙特哥“)在干旱条件下成长,P. Brassicae的存在,或两种应激的组合。通过UPLC或GC鉴定和量化代谢物。此外,使用自动化表型平台在体外条件下进行60种成熟种子批次进行萌发性状。本数据集含有42种代谢物(种子干重的Nmol.mg-1)的原料含量,并用统计测试以及萌发速度和百分比分析。此数据集可在Data Inrae中的“中”中提供。这些数据将有助于更好地理解植物对水剥夺和/或病原体攻击之间的串扰以及它如何妥协种子质量。更好地了解种子(一)生物胁迫的在分子和生理的分子和生理反应将是第一步,以满足种子适应它们的环境科学和技术挑战。

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