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利用基础模型推进植物单细胞基因组学。

Advancing plant single-cell genomics with foundation models.

机构信息

Genetics, Bioinformatics, and Computational Biology, Virginia Tech, USA; School of Plant and Environmental Sciences, Virginia Tech, USA.

Department of Computer Science, Virginia Tech, USA.

出版信息

Curr Opin Plant Biol. 2024 Dec;82:102666. doi: 10.1016/j.pbi.2024.102666. Epub 2024 Nov 22.

Abstract

Single-cell genomics, combined with advanced AI models, hold transformative potential for understanding complex biological processes in plants. This article reviews deep-learning approaches in single-cell genomics, focusing on foundation models, a type of large-scale, pretrained, multi-purpose generative AI models. We explore how these models, such as Generative Pre-trained Transformers (GPT), Bidirectional Encoder Representations from Transformers (BERT), and other Transformer-based architectures, are applied to extract meaningful biological insights from diverse single-cell datasets. These models address challenges in plant single-cell genomics, including improved cell-type annotation, gene network modeling, and multi-omics integration. Moreover, we assess the use of Generative Adversarial Networks (GANs) and diffusion models, focusing on their capacity to generate high-fidelity synthetic single-cell data, mitigate dropout events, and handle data sparsity and imbalance. Together, these AI-driven approaches hold immense potential to enhance research in plant genomics, facilitating discoveries in crop resilience, productivity, and stress adaptation.

摘要

单细胞基因组学与先进的 AI 模型相结合,具有变革性的潜力,可以帮助我们深入理解植物中的复杂生物学过程。本文综述了单细胞基因组学中的深度学习方法,重点介绍了基础模型,这是一种大规模、预训练、多功能的生成式 AI 模型。我们探讨了这些模型(如生成式预训练转换器 (GPT)、Transformer 双向编码器表示 (BERT) 和其他基于 Transformer 的架构)如何应用于从各种单细胞数据集中提取有意义的生物学见解。这些模型解决了植物单细胞基因组学中的挑战,包括改进细胞类型注释、基因网络建模和多组学整合。此外,我们评估了生成对抗网络 (GAN) 和扩散模型的应用,重点关注它们生成高保真合成单细胞数据、减轻数据缺失事件以及处理数据稀疏和不平衡的能力。总之,这些由 AI 驱动的方法具有巨大的潜力,可以增强植物基因组学的研究,促进在作物抗逆性、生产力和应激适应方面的发现。

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