Introduction Mungbean [Vigna radiata (L.) R. Wilczek] has emerged as a highly valued crop owing to its unique functional properties. Improving seed quality represents a major goal in mungbean breeding; however, the systematic identification of quantitative trait loci (QTLs) governing key seed quality traits remains limited. Methods In this study, a recombinant inbred line (RIL) population derived from a cross between Zhonglv1 and HB211 was developed, and phenotypic data were collected across three distinct environments. Three complementary QTL mapping methods—composite interval mapping (CIM), inclusive composite interval mapping (ICIM), and multiple QTL mapping (MQM)—were utilized to detect genomic regions associated with protein, starch, oil, and moisture content. Results and discussion In total, 162 QTLs were identified, including 44, 30, 43, and 45 QTLs were identified for protein, starch, oil, and moisture content, respectively. Among these, stable QTLs were consistently detected across multiple environments and methods, highlighting their potential utility in breeding applications. The putative candidate genes underlying these robust QTLs were further annotated, providing preliminary insights into the genetic control of seed quality traits. This study establishes a comprehensive genetic framework for future functional studies and the development of improved mungbean varieties with enhanced seed quality.
Chunxiu Ren, Lipan Qiao, Jiaqi Qiao et al.· Frontiers in Plant Science· 0 citations
When a power transformer subjected to transient over-voltages containing different harmonic components, the frequency components of over-voltages are coupled with the inherent electrical frequency of the transformer winding, which can induce high-amplitude resonant over-voltages in the winding and thus lead to transformer insulation failures. To analyze the electrical resonance characteristics of transformer windings, this paper establishes an equivalent model of transformer windings with reference to the actual transformer structure, and calculates the time-domain and frequency-domain distributions of transformer winding voltages. Furthermore, a test model of a real three-phase transformer is constructed, with measurement wires embedded at different positions of the windings. Experimental tests are conducted to investigate the electrical resonance characteristics of the transformer windings, verifying the effectiveness of the established equivalent model. Finally, based on the equivalent model, the effects of winding structure, number of turns per disk, wire thickness, and oil duct width on the winding resonance characteristics are analyzed.
Ya-Nan Chang, Guo-Feng Zhao, Yushan Cao et al.· Engineering Research Express· 0 citations
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