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首页> 外文期刊>Journal of Experimental Botany >Integration of multi-omics techniques and physiological phenotyping within a holistic phenomics approach to study senescence in model and crop plants
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Integration of multi-omics techniques and physiological phenotyping within a holistic phenomics approach to study senescence in model and crop plants

机译:在整体表达方法中的多元素技术与生理表型研究在模型和作物植物中研究衰老

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摘要

The study of senescence in plants is complicated by diverse levels of temporal and spatial dynamics as well as the impact of external biotic and abiotic factors and crop plant management. Whereas the molecular mechanisms involved in developmentally regulated leaf senescence are very well understood, in particular in the annual model plant species Arabidopsis, senescence of other organs such as the flower, fruit, and root is much less studied as well as senescence in perennials such as trees. This review addresses the need for the integration of multi-omics techniques and physiological phenotyping into holistic phenomics approaches to dissect the complex phenomenon of senescence. That became feasible through major advances in the establishment of various, complementary 'omics' technologies. Such an interdisciplinary approach will also need to consider knowledge from the animal field, in particular in relation to novel regulators such as small, non-coding RNAs, epigenetic control and telomere length. Such a characterization of phenotypes via the acquisition of high-dimensional datasets within a systems biology approach will allow us to systematically characterize the various programmes governing senescence beyond leaf senescence in Arabidopsis and to elucidate the underlying molecular processes. Such a multi-omics approach is expected to also spur the application of results from model plants to agriculture and their verification for sustainable and environmentally friendly improvement of crop plant stress resilience and productivity and contribute to improvements based on postharvest physiology for the food industry and the benefit of its customers.
机译:植物中衰老的研究与不同水平的时间和空间动力学以及外部生物和非生物因素和作物植物管理的影响复杂。虽然涉及发育调节叶片衰老的分子机制非常清楚,但特别是在年度模型植物种类拟南芥中,其他器官如花,水果和根部的衰老较小,诸如多年生的衰老和衰老树木。本次审查满足了将多OMICS技术与生理表型集成到整体表现方法中,以解剖衰老的复杂现象。通过建立各种互补的“OMICS”技术的主要进步,这变得可行。这种跨学科方法还需要考虑来自动物领域的知识,特别是关于小型调节剂,例如小,非编码RNA,表观遗传控制和端粒长度。通过获取系统生物学方法的高维数据集的这种表型的表征将使我们系统地表征治疗蔓延衰老的各种程序,在拟南芥中,并阐明潜在的分子过程。预计这种多OMICS方法也将促使模型植物的结果应用于农业和验证作物植物压力复原力和生产力的可持续和环保性提高,并基于食品工业的采后生理学改善其客户的利益。

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