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SmartGrain:高通量表型分析软件,通过图像分析测量种子形状。

SmartGrain: high-throughput phenotyping software for measuring seed shape through image analysis.

机构信息

National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan.

出版信息

Plant Physiol. 2012 Dec;160(4):1871-80. doi: 10.1104/pp.112.205120. Epub 2012 Oct 10.

Abstract

Seed shape and size are among the most important agronomic traits because they affect yield and market price. To obtain accurate seed size data, a large number of measurements are needed because there is little difference in size among seeds from one plant. To promote genetic analysis and selection for seed shape in plant breeding, efficient, reliable, high-throughput seed phenotyping methods are required. We developed SmartGrain software for high-throughput measurement of seed shape. This software uses a new image analysis method to reduce the time taken in the preparation of seeds and in image capture. Outlines of seeds are automatically recognized from digital images, and several shape parameters, such as seed length, width, area, and perimeter length, are calculated. To validate the software, we performed a quantitative trait locus (QTL) analysis for rice (Oryza sativa) seed shape using backcrossed inbred lines derived from a cross between japonica cultivars Koshihikari and Nipponbare, which showed small differences in seed shape. SmartGrain removed areas of awns and pedicels automatically, and several QTLs were detected for six shape parameters. The allelic effect of a QTL for seed length detected on chromosome 11 was confirmed in advanced backcross progeny; the cv Nipponbare allele increased seed length and, thus, seed weight. High-throughput measurement with SmartGrain reduced sampling error and made it possible to distinguish between lines with small differences in seed shape. SmartGrain could accurately recognize seed not only of rice but also of several other species, including Arabidopsis (Arabidopsis thaliana). The software is free to researchers.

摘要

种子的形状和大小是最重要的农艺性状之一,因为它们会影响产量和市场价格。为了获得准确的种子大小数据,需要进行大量的测量,因为同一植株的种子大小差异很小。为了促进植物育种中种子形状的遗传分析和选择,需要高效、可靠、高通量的种子表型分析方法。我们开发了 SmartGrain 软件,用于高通量测量种子形状。该软件使用新的图像分析方法来减少种子准备和图像采集所花费的时间。软件可以自动识别数字图像中的种子轮廓,并计算几个形状参数,如种子的长度、宽度、面积和周长。为了验证软件,我们使用来自粳稻品种越光和日本晴杂交的回交自交系,对水稻种子形状进行了数量性状基因座(QTL)分析,这些品种的种子形状差异很小。SmartGrain 可以自动去除芒和花梗的区域,并检测到六个形状参数的多个 QTL。在第 11 号染色体上检测到的种子长度 QTL 的等位基因效应在高级回交后代中得到了确认;日本晴等位基因增加了种子长度,从而增加了种子重量。SmartGrain 的高通量测量减少了抽样误差,并能够区分种子形状差异较小的品系。SmartGrain 不仅可以准确识别水稻种子,还可以识别拟南芥(Arabidopsis thaliana)等其他几种物种的种子。该软件可供研究人员免费使用。

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