Suppr超能文献

表型组学和基因组学在阐明谷子复杂性状的遗传基础中的作用。

The role of phenomics and genomics in delineating the genetic basis of complex traits in millets.

机构信息

International Crops Research Institutes for the Semi-Arid Tropics, Patancheru, TS, India.

Vasantrao Naik Marathwada Agricultural University, Parbhani, MS, India.

出版信息

Physiol Plant. 2024 May-Jun;176(3):e14349. doi: 10.1111/ppl.14349.

Abstract

Millets, comprising a diverse group of small-seeded grains, have emerged as vital crops with immense nutritional, environmental, and economic significance. The comprehension of complex traits in millets, influenced by multifaceted genetic determinants, presents a compelling challenge and opportunity in agricultural research. This review delves into the transformative roles of phenomics and genomics in deciphering these intricate genetic architectures. On the phenomics front, high-throughput platforms generate rich datasets on plant morphology, physiology, and performance in diverse environments. This data, coupled with field trials and controlled conditions, helps to interpret how the environment interacts with genetics. Genomics provides the underlying blueprint for these complex traits. Genome sequencing and genotyping technologies have illuminated the millet genome landscape, revealing diverse gene pools and evolutionary relationships. Additionally, different omics approaches unveil the intricate information of gene expression, protein function, and metabolite accumulation driving phenotypic expression. This multi-omics approach is crucial for identifying candidate genes and unfolding the intricate pathways governing complex traits. The review highlights the synergy between phenomics and genomics. Genomically informed phenotyping targets specific traits, reducing the breeding size and cost. Conversely, phenomics identifies promising germplasm for genomic analysis, prioritizing variants with superior performance. This dynamic interplay accelerates breeding programs and facilitates the development of climate-smart, nutrient-rich millet varieties and hybrids. In conclusion, this review emphasizes the crucial roles of phenomics and genomics in unlocking the genetic enigma of millets.

摘要

小米是一类包含多种小粒种子的作物,具有重要的营养价值、环境意义和经济价值。小米中复杂性状受到多种遗传因素的影响,其理解和研究极具挑战性,同时也带来了巨大的机遇。本综述深入探讨了表型组学和基因组学在解析这些复杂遗传结构方面的变革性作用。在表型组学方面,高通量平台可生成有关植物形态、生理和在不同环境下表现的丰富数据集。这些数据与田间试验和控制条件相结合,有助于解释环境如何与遗传相互作用。基因组学为这些复杂性状提供了底层蓝图。基因组测序和基因分型技术揭示了小米基因组的多样性,揭示了不同的基因库和进化关系。此外,不同的组学方法揭示了驱动表型表达的基因表达、蛋白质功能和代谢物积累的复杂信息。这种多组学方法对于鉴定候选基因和揭示控制复杂性状的复杂途径至关重要。本综述强调了表型组学和基因组学之间的协同作用。基于基因组的表型选择针对特定性状,减少了育种规模和成本。相反,表型组学可以为基因组分析确定有前途的种质资源,优先考虑具有优异表现的变体。这种动态相互作用加速了育种计划的发展,有助于开发出适应气候变化、营养丰富的小米品种和杂交种。总之,本综述强调了表型组学和基因组学在揭示小米遗传之谜方面的关键作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验