Hernández Santiago, Zhong Vivian, Brophy Jennifer A N
Department of Computer Science, Stanford University, Stanford, CA, 94305, USA.
Department of Bioengineering, Stanford University, Stanford, CA, 94305, USA.
Plant Methods. 2025 Jun 24;21(1):87. doi: 10.1186/s13007-025-01406-4.
Transgenic plants are essential for both basic and applied plant biology. Recently, fluorescent and colorimetric markers were developed to enable nondestructive identification of transformed seeds and accelerate the generation of transgenic plant lines. Yet, transformation often results in the integration of multiple copies of transgenes in the plant genome. Multiple transgene copies can lead to transgene silencing and complicate the analysis of transgenic plants by requiring researcher to track multiple T-DNA loci in future generations. Thus, to simplify analysis of transgenic lines, plant researchers typically screen transformed plants for lines where the T-DNA inserted in a single locus - an analysis that involves laborious manual counting of fluorescent and non-fluorescent seeds for screenable markers.
To expedite T-DNA segregation analysis, we developed SeedSeg, an image analysis tool that uses a segmentation algorithm to count the number of transformed and wild-type seeds in an image. SeedSeg runs a chi-squared test to determine the number of T-DNA loci. Parameters can be adjusted to optimize for different brightness intensities and seed sizes.
By automating the seed counting process, SeedSeg reduces the manual labor associated with identifying transgenic lines containing a single T-DNA locus. SeedSeg is adaptable to different seed sizes and visual transgene markers, making it a versatile tool for accelerating plant research.
转基因植物对于基础植物生物学和应用植物生物学都至关重要。最近,荧光和比色标记被开发出来,以实现对转化种子的无损鉴定,并加速转基因植物系的产生。然而,转化往往导致多个转基因拷贝整合到植物基因组中。多个转基因拷贝会导致转基因沉默,并使转基因植物的分析复杂化,因为研究人员需要在后代中追踪多个T-DNA位点。因此,为了简化转基因系的分析,植物研究人员通常会筛选T-DNA插入单个位点的转化植株系——这种分析涉及对用于筛选标记的荧光和非荧光种子进行费力的人工计数。
为了加快T-DNA分离分析,我们开发了SeedSeg,这是一种图像分析工具,它使用分割算法来计算图像中转化种子和野生型种子的数量。SeedSeg运行卡方检验来确定T-DNA位点的数量。可以调整参数以针对不同的亮度强度和种子大小进行优化。
通过自动化种子计数过程,SeedSeg减少了与鉴定含有单个T-DNA位点的转基因系相关的人工劳动。SeedSeg适用于不同的种子大小和视觉转基因标记,使其成为加速植物研究的通用工具。