Soybean Cultivar S130060 Breeding Segmentation
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Solution Overview
Problem
Current soybean cultivar development is time-consuming and resource-intensive, aiming to combine desirable traits such as higher seed yield, disease resistance, drought tolerance, and improved fatty acid profiles, but existing methods are inefficient in achieving stable and uniform high-yielding cultivars with enhanced agronomic quality.
Innovation Solution
Development of the soybean cultivar S130060, which involves crossing and mutagenesis or transformation to introduce transgenic or mutant traits, combined with advanced breeding techniques like backcrossing and tissue culture to produce regenerable cells capable of regenerating plants with superior characteristics.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional soybean breeding methods are used to combine desirable traits, then seed yield and disease resistance are improved, but the development process becomes time-consuming and resource-intensive
Solution Approach 1:
The patent applies preliminary action by pre-selecting parental lines with specific desirable traits (disease resistance, yield potential) before crossing. The breeding program is carefully planned in advance with defined objectives, allowing systematic combination of traits without random trial-and-error, thus reducing overall development time while maintaining reliability of disease resistance
2Manufacturing precision
If multiple breeding techniques are applied to achieve stable and uniform high-yielding cultivars, then agronomic quality is improved, but the complexity of the breeding program increases
Solution Approach 1:
The breeding program is segmented into distinct phases: parental selection, controlled crossing, generation advancement (F1, F2, F3, etc.), and selection for specific traits. This segmentation allows systematic achievement of uniformity at each stage without overwhelming complexity, as each phase has specific objectives and selection criteria
Solution Approach 2:
The breeding program dynamically adjusts selection criteria at different generations. Early generations focus on trait combination and stability, while later generations emphasize yield and uniformity. This dynamic approach achieves manufacturing precision (uniformity) by adapting the breeding process to the developmental stage of the cultivar
3Productivity
If extensive crossing and selection are performed to combine multiple desirable traits, then seed yield is improved, but the resource requirements and cost of development increase
Solution Approach 1:
Parental lines are pre-screened and selected for high yield potential and complementary traits before crossing. This preliminary selection ensures that each cross has a high probability of producing high-yielding progeny, reducing the number of crosses and selection cycles needed, thereby conserving resources while achieving improved seed yield
Data Source
AI summary
A soybean cultivar designated S130060 is disclosed. The invention relates to the seeds of soybean cultivar S130060, to the plants of soybean cultivar S130060, to the plant parts of soybean cultivar S130060, and to methods for producing progeny of soybean cultivar S130060. The invention also relates to methods for producing a soybean plant containing in its genetic material one or more transgenes and to the transgenic soybean plants and plant parts produced by those methods. The invention also relates to soybean cultivars or breeding cultivars, and plant parts derived from soybean cultivar S130060. The invention also relates to methods for producing other soybean cultivars, lines, or plant parts derived from soybean cultivar S130060, and to the soybean plants, varieties, and their parts derived from use of those methods. The invention further relates to hybrid soybean seeds, plants, and plant parts produced by crossing cultivar S130060 with another soybean cultivar.