首页> 外文会议>International Technology, Education and Development Conference >(1408) INTRODUCTION AND DEVELOPMENT OF A PRACTICAL LESSON FOR IMPROVING THE COMPETENCE OF MASTER STUDENTS IN PLANT BREEDING: THE USEFULNESS OF SPECIFIC SOFTWARE IN PHENOTYPING TASKS
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(1408) INTRODUCTION AND DEVELOPMENT OF A PRACTICAL LESSON FOR IMPROVING THE COMPETENCE OF MASTER STUDENTS IN PLANT BREEDING: THE USEFULNESS OF SPECIFIC SOFTWARE IN PHENOTYPING TASKS

机译:(1408)介绍和开发实用课程,用于改善植物育种硕士学位的竞争力:特定软件在表型任务中的有用性

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An essential step in many plant breeding programmes is the morphoagronomic phenotyping of the materials that are being developed, using standardized descriptors or, when not available, as it is the case of new crops, consensus guidelines to characterize them. Although many of the traits must be evaluated in the field, those related to the shape and size of leaves and fruits can be easily measured with specific software using digital pictures. This tool provides several advantages, including: 1) more accurate and objective measurements; 2) the possibility of measuring other traits of interest such as area or perimeter, that in other case would not be easily evaluated; or even 3) the possibility of delaying the analysis of pictures in order to focus on field traits. Therefore, the knowledge and management of this tool can become of high usefulness. The Plant Breeding Master offered by our institute is aimed at training professionals able to improve crops and develop new ones according to market trends, in addition to improve adaptation and resistance to biotic and abiotic stresses. Due to the importance of phenotyping considering any of the above breeding goals, in this paper we propose the introduction of a practical session in the mandatory subject "Instrumental Techniques": the management and comparison of adequacy of two specific software tools considering the material to be analyzed. As material, we propose a collection of pepper varieties for analysis of fruits, and a collection of rocket (Eruca and Diplotaxis spp.) germplasm for analysis of leaves, due to the broad variability observed in those materials. The MorphoLeaf v1.0 software will be used for the analysis of leaves, and the Tomato Analyzer 3.0 software will be used for the analysis of fruits and also for leaves. According to the design of the practical lesson, only one session of three hours is required, in which students will learn to properly digitalize materials considering the restrictions of each software and material used, and to obtain all the information needed in each case. In addition, there will be one hour of autonomous work in which both tools and the results obtained will be compared by the students, and a report will be prepared. This practical lesson allows students to acquire the competence for the correct use of different computer tools in the phenotyping task. The comparison of analyses using different scan adjustments and software will allow students to understand the disadvantages of each option and problems that could occur, in order to minimize them. In summary, this practical lesson gives a tool for improving the future phenotyping works of students during their careers, teaching them to consider the best software prior to analysis in order to improve the digitalizing step according to software restrictions, and to obtain more accurate information with a reduction of working time, thus increasing efficiency.
机译:许多植物育种计划的重要步骤是使用标准化描述符开发的材料的形态学表型,或者在不可用的情况下,正如新作物的情况一样,达成协议指导。尽管必须在该领域中评估许多特征,但是与使用数码图片的特定软件可以容易地测量与叶子和水果的形状和尺寸相关的那些。该工具提供了几个优点,包括:1)更准确和客观测量; 2)测量其他感兴趣特征的可能性,如区域或周长,在其他情况下,不容易评估;甚至3)延迟图像分析的可能性,以专注于现场特征。因此,该工具的知识和管理可以成为高的有用性。我们学院提供的植物育种硕士旨在培训能够改善作物的专业人士,并根据市场趋势,改善适应和抗生物和非生物胁迫的抵抗力。由于表型考虑到任何上述育种目标的表型观察,本文提出了在强制性主题“工具技术”中引入了实际会议:考虑材料的两种特定软件工具的管理和比较分析。作为材料,我们提出了一系列用于分析水果的辣椒品种,以及用于分析叶子的火箭(Eruca和Diplotaxis SPP)的集合,由于这些材料中观察到的广泛可变性。 Morpholeaf V1.0软件将用于分析叶子,番茄分析仪3.0软件将用于分析水果和叶子。根据实际课程的设计,只需要一个三个小时的一次会议,其中学生将学习考虑所使用的每个软件和材料的限制,从而妥善数字化材料,并获得每种情况下所需的所有信息。此外,将有一个小时的自主工作,其中工具和所获得的结果将由学生进行比较,并将编写报告。这种实际课程允许学生在表型任务中获得正确使用不同的计算机工具的能力。使用不同扫描调整和软件的分析的比较将使学生了解每个选项和问题可能发生的问题的缺点,以便最小化它们。总之,这种实践课程为改善学生在其职业生涯中的未来表型工程提供了一种工具,教导他们在分析之前考虑最佳软件,以便根据软件限制来改进数字化步骤,并获得更准确的信息减少工作时间,从而提高效率。

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