1Yunnan Institute of Tropical Crops, Jinghong 666100;2Maize Research Institute of Sichuan Agricultural University, Chengdu 611130;3Qianxinan Academy of Agricultural and Forestry Sciences, Xingyi 562400, Guizhou
National Natural Science Foundation of China (32241044); Key Project at Central Government Level (2060302)
The major cultivated varieties of adlay generally exhibit late flowering and excessive plant height, which are important factors restricting their yield stability and adaptability. Previous studies have identified that a 38 bp insertion variation in the promoter region of ClCCT is a key genetic locus regulating flowering time and plant height. To clarify the application potential of this variation in breeding, this study analyzed its pleiotropic effects on flowering time, plant height, stem, leaf, and grain traits using near-isogenic lines (NILs), and conducted phenotypic verification and evaluation in a pyramiding breeding population. The results revealed that the 38 bp insertion variant in NILs markedly accelerated flowering and decreased plant height. Specifically, flowering was advanced by 32.3 d and plant height was reduced by 89.2 cm under long-day conditions, whereas a 20.3 d flowering advance and a 78.4 cm reduction were observed under short-day conditions. This variant also exerted regulatory influences on stems, leaves, and grain traits. Among the 65 early-flowering and dwarf lines obtained from the pyramiding breeding population, the frequency of the insertion-type allele reached as high as 72.31%. Under long-day conditions, compared with the heterozygous-type/deletion-type lines, the insertion-type lines showed a significant 5.9 d advance in flowering time, while no significant differences were observed in plant height, stem, leaf, and grain traits, indicating that under complex genetic backgrounds, this variation primarily regulates flowering time with limited effects on other agronomic traits. Integrating data from both populations indicates that the regulatory effect of the 38 bp insertion variation on flowering time is stable across different genetic backgrounds. Moreover, owing to the ease of detection, this marker can serve as an efficient tool for marker-assisted selection (MAS) of flowering time in adlay.
