Deng Hongtao, Li Xiukun, Cui Shunli, Li Li, Meng Qinglin, Shang Yanxia, Liu Yingru, Hou Mingyu, Liu Lifeng
State Key Laboratory of North China Crop Improvement and Regulation/Key Laboratory for Crop Germplasm Resources of Hebei/North China Key Laboratory for Crop Germplasm Resources of Education Ministry/Hebei Agricultural University, Baoding, China.
School of Landscape and Ecological Engineering, Hebei University of Engineering, Handan, China.
Front Plant Sci. 2024 Oct 3;15:1476274. doi: 10.3389/fpls.2024.1476274. eCollection 2024.
Peanuts play a crucial role as an oil crop, serving not only as a primary source of edible oil but also offering ample protein and vitamins for human consumption. The lateral branch angle of peanuts is the angle between the main stem and the first pair of lateral branches, which is an important agronomic trait of peanuts, significantly impacts the peg penetration into the soil, plant growth, and pod yield. It is closely intertwined with planting density, cultivation techniques, and mechanized harvesting methods. Therefore, the lateral branch angle holds substantial importance in enhancing peanut yield and facilitating mechanization. In order to conduct in-depth research on the lateral branch angle of peanuts, this research is grounded in the QTL mapping findings, specifically focusing on the QTL associated with the lateral branch angle of peanuts located on chromosome B05 (142610834-146688220). By using Jihua 5 and PZ42 for backcrossing, a BC1F2 population comprising 8000 individual plants was established. Molecular markers were then developed to screen the offspring plants, recombine individual plants, conduct fine mapping. he results showed that using the phenotype and genotype of 464 recombinant individual plants selected from 8000 offspring, narrow down the localization interval to 48kb, and designate it as . The gene , responsible for the F-Box protein, was identified within through screening. Real-time quantitative detection of was carried out using M130 and Jihua 5, revealing that the expression level of at the junction of the main stem and the first lateral branch of peanuts was lower in M130 compared to Jihua 5 during the growth period of the first lateral branch from 1 to 10 centimeters. Consequently, emerges as a gene that restrains the increase in the angle of the first lateral branch in peanuts. This investigation offers novel genetic reservoirs for peanut plant type breeding and furnishes a theoretical foundation for molecular marker-assisted peanut breeding.
花生作为一种油料作物发挥着至关重要的作用,不仅是食用油的主要来源,还为人类提供丰富的蛋白质和维生素。花生的侧枝角度是主茎与第一对侧枝之间的夹角,它是花生的一个重要农艺性状,对果针入土、植株生长和荚果产量有显著影响。它与种植密度、栽培技术和机械化收获方法密切相关。因此,侧枝角度对于提高花生产量和促进机械化具有重要意义。为了深入研究花生的侧枝角度,本研究基于QTL定位结果,特别聚焦于位于B05染色体上(142610834 - 146688220)与花生侧枝角度相关的QTL。通过用冀花5和PZ42进行回交,构建了一个包含8000个单株的BC1F2群体。然后开发分子标记来筛选后代植株、重组单株并进行精细定位。结果表明:利用从这8000个后代中挑选出的464个重组单株的表型和基因型,将定位区间缩小到48kb,并将其命名为。通过筛选在该区间内鉴定出负责F - Box蛋白的基因。利用M130和冀花5对进行实时定量检测,发现在第一侧枝从1厘米长到10厘米的生长期间,M130中花生主茎与第一侧枝交界处的表达水平低于冀花5。因此,成为一个抑制花生第一侧枝角度增大的基因。本研究为花生株型育种提供了新的基因库,并为花生分子标记辅助育种提供了理论基础。