Provincial Key Laboratory of Agrobiology, Key Laboratory of Cotton and Rapeseed, Ministry of Agriculture, Institute of Industrial Crops, Jiangsu Academy of Agricultural Sciences, Nanjing, China.
BMC Plant Biol. 2018 Mar 23;18(1):49. doi: 10.1186/s12870-018-1268-7.
The fatty acid composition of B. napus' seeds determines the oil's nutritional and industrial values, and affects seed germination. Many studies have reported correlations among C16:0, C18:0, C18:1, C18:2 and C18:3 based on phenotypic data; however, the genetic basis of the fatty acid composition in B. napus is still not well understood.
In this study, unconditional and conditional quantitative trail locus (QTL) mapping analyses were conducted using a recombinant inbred line in six environments. In total, 21 consensus QTLs each for C16:0, C18:0 and C18:2, 16 for C18:1 and 22 for C18:3 were detected by unconditional mapping. The QTLs with overlapping confidence intervals were integrated into 71 pleiotropically unique QTLs by meta-analysis. Two major QTLs, uuqA5-6 and uuqA5-7, simultaneously affected the fatty acids, except C18:0, in most of environments, with the homologous genes fatty acid desaturase 2 (FAD2) and glycerol-3-phosphate sn-2-acyltransferase 5 (GPAT5) occurring in the confidence interval of uuqA5-6, while phosphatidic acid phosphohydrolase 1 (PAH1) was assigned to uuqA5-7. Moreover, 49, 30, 48, 60 and 45 consensus QTLs were detected for C16:0, C18:0, C18:1, C18:2 and C18:3, respectively, by the conditional mapping analysis. In total, 128 unique QTLs were subsequently integrated from the 232 conditional consensus QTLs. A comparative analysis revealed that 63 unique QTLs could be identified by both mapping methodologies, and 65 additional unique QTLs were only identified in conditional mapping.
Thus, conditional QTL mapping for fatty acids may uncover numerous additional QTLs that were inhibited by the effects of other traits. These findings provide useful information for better understanding the genetic relationships among fatty acids at the QTL level.
油菜籽的脂肪酸组成决定了油的营养价值和工业价值,并影响种子的发芽。许多研究基于表型数据报道了 C16:0、C18:0、C18:1、C18:2 和 C18:3 之间的相关性;然而,油菜籽脂肪酸组成的遗传基础仍不清楚。
在这项研究中,使用六个环境中的重组自交系进行了无条件和条件数量性状基因座(QTL)作图分析。总共通过无条件作图检测到 C16:0、C18:0 和 C18:2 的 21 个一致 QTL、C18:1 的 16 个和 C18:3 的 22 个。通过荟萃分析将具有重叠置信区间的 QTL 整合为 71 个独特的 QTL。两个主要的 QTL,uuqA5-6 和 uuqA5-7,同时影响了大多数环境中的脂肪酸,除了 C18:0,其同源基因脂肪酸去饱和酶 2(FAD2)和甘油-3-磷酸 sn-2-酰基转移酶 5(GPAT5)位于 uuqA5-6 的置信区间内,而磷脂酸磷酸水解酶 1(PAH1)被分配到 uuqA5-7。此外,通过条件作图分析分别检测到 C16:0、C18:0、C18:1、C18:2 和 C18:3 的 49、30、48、60 和 45 个一致 QTL。总共从 232 个条件一致 QTL 中整合了 128 个独特的 QTL。比较分析表明,两种作图方法均可识别 63 个独特的 QTL,而条件作图中仅可识别 65 个额外的独特 QTL。
因此,脂肪酸的条件 QTL 作图可能会揭示许多其他被其他性状影响的 QTL。这些发现为在 QTL 水平上更好地理解脂肪酸之间的遗传关系提供了有用的信息。