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Multi-Omics Strategies for Decoding Smoke-Assisted Germination Pathways and Seed Vigour

机译:用于解码烟雾辅助萌发途径和种子活力的多OMICS策略

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摘要

The success of seed germination and the successful establishment of seedlings across diverse environmental conditions depends on seed vigour, which is of both economic and ecologic importance. The smoke-derived exogenous compound karrikins (KARs) and the endogenous plant hormone strigolactone (SL) are two classes of butanolide-containing molecules that follow highly similar signalling pathways to control diverse biological activities in plants. Unravelling the precise mode-of-action of these two classes of molecules in model species has been a key research objective. However, the specific and dynamic expression of biomolecules upon stimulation by these signalling molecules remains largely unknown. Genomic and post-genomic profiling approaches have enabled mining and association studies across the vast genetic diversity and phenotypic plasticity. Here, we review the background of smoke-assisted germination and vigour and the current knowledge of how plants perceive KAR and SL signalling and initiate the crosstalk with the germination-associated hormone pathways. The recent advancement of ‘multi-omics’ applications are discussed in the context of KAR signalling and with relevance to their adoption for superior agronomic trait development. The remaining challenges and future opportunities for integrating multi-omics datasets associated with their application in KAR-dependent seed germination and abiotic stress tolerance are also discussed.
机译:种子萌发的成功与各种环境条件的成功建立幼苗取决于种子活力,这是经济和生态的重要性。烟雾衍生的外源化合物Karrikins(KARS)和内源性植物激素股骨酮(SL)是含两种含丁醇的分子,其遵循高度相似的信号通路,以控制植物中的各种生物活性。在模型物种中解开这两种分子的精确作用模式是一个关键的研究目标。然而,这些信号分子刺激后生物分子的具体和动态表达仍然很大程度上是未知的。基因组和后基因组分析方法使采矿和关联研究具有巨大的遗传多样性和表型可塑性。在这里,我们审查了烟雾辅助发芽和活力的背景以及目前植物感知KAR和SL信号传导的目前的知识,并用发芽相关的激素途径引发串扰。在KAR信号传导的背景下讨论了“多OMICS”申请的最新进步,并与其采用相关的优质农艺性状发展。还讨论了与其在卡尔依赖种子萌发和非生物应力耐受性相关的多OMICS数据集结合多OMICS数据集的剩余挑战和未来机会。

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