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Development of peanut varieties with high oil content by in vitro mutagenesis and screening
WANG Jing-shan, SHI Lei, LIU Yue, ZHAO Ming-xia, WANG Xia, QIAO Li-xian, SUI Jiong-ming, LI Guan, ZHU Hong, YU Shan-lin
2020, 19 (12): 2974-2982.   DOI: 10.1016/S2095-3119(20)63182-3
Abstract148)      PDF in ScienceDirect      
Peanut (Arachis hypogaea L.) is an important oil crop globally and high oil content is one of the major targets in peanut breeding programs.  Previous studies indicated that the osmotic pressure (OP) of the leaves of peanut plants subjected to drought stress was negatively correlated with kernel oil content.  Based on this knowledge, we established a practical and reliable method for creating new peanut varieties with high oil content using in vitro mutagenesis and directional OP-based selection.  Using embryonic leaflets of peanut variety Huayu 20 as explants, pingyangmycin (PYM) as the mutagen, and hydroxyproline (HYP) as the OP regulator, we developed 15 HYP-tolerant regenerated plants.  For each regenerated plant, we selected offspring with oil content>55% (relative to 49.5% for Huayu 20).  We developed and released three new peanut varieties with high yield and high oil content from the offspring of the HYP-tolerant regenerated plants.  The three new varieties were named as Yuhua 4, Yuhua 9 and Yuhua 14 and their oil contents were 57.7, 61.1 and 59.3%, respectively.  The results indicate that in vitro mutagenesis with PYM followed by directed screening with HYP is a useful approach for breeding peanut varieties with high oil contents.
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Identification of oil content QTL on Arahy12 and Arahy16 and development of KASP markers in cultivated peanut (Arachis hypogaea L.)
HUANG Bing-yan, LIU Hua, FANG Yuan-jin, MIAO Li-juan, QIN Li, SUN Zi-qi, QI Fei-yan, CHEN Lei, ZHANG Feng-ye, LI Shuan-zhu, ZHENG Qing-huan, SHI Lei, WU Ji-hua, DONG Wen-zhao, ZHANG Xin-you
DOI: 10.1016/j.jia.2023.11.010 Online: 10 November 2023
Abstract74)      PDF in ScienceDirect      

Peanut kernels rich in oil, particularly those with oleic acid as their primary fatty acid, are sought after by consumers, the food industry, and farmers due to their superior nutritional content, extended shelf life, and health benefits.  The oil content and fatty acid composition are governed by multiple genetic factors.  Identifying the quantitative trait loci (QTL) related to these attributes would facilitate marker-assisted selection or genomic selection, thus enhancing the quality-focused peanut breeding program.  For this purpose, we developed a population of 521 recombinant inbred lines (RIL) and tested their kernel quality traits across five different environments. We identified two major and stable QTLs for oil content (qOCAh12.1 and qOCAh16.1).  The markers linked to these QTLs were designed by competitive allele-specific PCR (KASP) and were subsequently validated.  Moreover, we found that the superior haplotype of oil content in the qOCAh16.1 region was conserved within the PI germplasm cluster, as evidenced by a diverse peanut accession panel.  In addition, we determined that qAh09 and qAh19.1, which harbor the key gene encoding fatty acid desaturase 2 (FAD2), influence all seven fatty acids, including palmitic, stearic, oleic, linoleic, arachidic, gadoleic, and behenic acids.  As for protein content and the long-chain saturated fatty acid behenic acid, qAh07 emerged as the major and stable QTLs, accounting for over 10% of the phenotypic variation explained (PVE).  These findings would enhance marker-assisted selection in peanut breeding, aiming to improve oil content, and deepen our understanding of the genetic mechanisms that shape fatty acid composition. 

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