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SCAN:一种用于实时获取油菜叶片气孔性状的自动表型分析工具。

SCAN: an automated phenotyping tool for real-time capture of leaf stomatal traits in canola.

作者信息

Yao Lingtian, von Caemmerer Susanne, Danila Florence R

机构信息

Division of Plant Sciences, Research School of Biology, Australian National University.

出版信息

J Exp Bot. 2025 Jun 26. doi: 10.1093/jxb/eraf282.

Abstract

Canola is an important economic and agronomic crop globally, but its yield is under threat due to climate change. Stomata are key breeding target because of their importance in carbon capture and water use efficiency. However, screening for elite stomatal traits could be laborious and time-consuming. We developed a new toolkit called Stomatal Comprehensive Automated Neural Network or SCAN that combines the use of high-resolution portable digital microscopy with machine learning to automate stomatal trait phenotyping in canola. We show that SCAN can rapidly measure stomatal density, size and pore area in canola at 97% to 99% accuracy, and capture real-time stomatal pore status that strongly correlated with leaf porometer measurement in canola. Here we use SCAN to investigate how leaf stomatal traits vary through a canopy in different ecotypes of canola grown in the field and glasshouse conditions. SCAN revealed that stomatal density in canola decreases in more expanded leaves with abaxial surface having up to 40% more stomata that are 2x more open than the adaxial surface. SCAN also showed that patterns of stomatal traits in canola vary between leaf position in the canopy and change with environment in an ecotype-dependent manner.

摘要

油菜是全球重要的经济和农艺作物,但其产量因气候变化而受到威胁。气孔是关键的育种目标,因为它们在碳捕获和水分利用效率方面具有重要意义。然而,筛选优良的气孔性状可能既费力又耗时。我们开发了一种名为气孔综合自动神经网络(SCAN)的新工具包,它将高分辨率便携式数字显微镜的使用与机器学习相结合,以实现油菜气孔性状表型分析的自动化。我们表明,SCAN能够以97%至99%的准确率快速测量油菜的气孔密度、大小和孔面积,并捕捉与油菜叶片气孔计测量结果高度相关的实时气孔孔状态。在这里,我们使用SCAN来研究在田间和温室条件下种植的不同生态型油菜中,叶片气孔性状如何在冠层中变化。SCAN显示,油菜中气孔密度在更展开的叶片中降低,下表皮的气孔比上表皮多40%,且张开程度是上表皮的2倍。SCAN还表明,油菜气孔性状的模式在冠层中的叶位之间存在差异,并以生态型依赖的方式随环境变化。

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