开源平台ChronoRoot 2.0实现低成本高通量植物根系动态表型分析。
ChronoRoot 2.0: An Open AI-Powered Platform for 2D Temporal Plant Phenotyping
- 基于nnUNet架构,自动分割根、茎、种子等6类结构。
- 支持多物种分析,可追踪昼夜节律与向地性响应变化。
- 无需编程基础,适合农业与生物研究者快速上手使用。
植物发育可塑性,尤其是根系结构的动态变化,对理解适应性与农业可持续性至关重要。ChronoRoot 2.0在保留低成本、模块化硬件的基础上,显著提升软件能力与易用性。系统采用nnUNet架构实现多类别分割,准确识别主根、侧根、种子、下胚轴、叶片及叶柄共六类结构,支持无需机器学习背景的模型快速重训练与数据扩展。平台配备双界面:标准界面用于精细结构分析并引入新型向地性响应参数;筛选界面实现多株植物自动化跟踪,支持高通量分析。结合功能主成分分析,可通过时序模式对比发现新表型参数。验证涵盖拟南芥与番茄两种形态差异大的物种,三类应用场景包括:拟南芥昼夜生长模式刻画、转基因植株向地性响应分析,以及多基因型暗生条件下的高通量筛选。该平台保持低成本优势,通过直观界面和扩展分析功能,使复杂时序植物表型分析更易获取。
原文摘要 · Abstract (English)
Plant developmental plasticity, particularly in root system architecture, is fundamental to understanding adaptability and agricultural sustainability. ChronoRoot 2.0 builds upon established low-cost hardware while significantly enhancing software capabilities and usability. The system employs nnUNet architecture for multi-class segmentation, demonstrating significant accuracy improvements while simultaneously tracking six distinct plant structures encompassing root, shoot, and seed components: main root, lateral roots, seed, hypocotyl, leaves, and petiole. This architecture enables easy retraining and incorporation of additional training data without requiring machine learning expertise. The platform introduces dual specialized graphical interfaces: a Standard Interface for detailed architectural analysis with novel gravitropic response parameters, and a Screening Interface enabling high-throughput analysis of multiple plants through automated tracking. Functional Principal Component Analysis integration enables discovery of novel phenotypic parameters through temporal pattern comparison. We demonstrate multi-species analysis, with Arabidopsis thaliana and Solanum lycopersicum, both morphologically distinct plant species. Three use cases in Arabidopsis thaliana and validation with tomato seedlings demonstrate enhanced capabilities: circadian growth pattern characterization, gravitropic response analysis in transgenic plants, and high-throughput etiolation screening across multiple genotypes.ChronoRoot 2.0 maintains the low-cost, modular hardware advantages of its predecessor while dramatically improving accessibility through intuitive graphical interfaces and expanded analytical capabilities. The open-source platform makes sophisticated temporal plant phenotyping more accessible to researchers without computational expertise.
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