Wang Xiaqing, Chen Yining, Sun Xuan, Li Jinghuan, Zhang Ruyang, Jiao Yanyan, Wang Ronghuan, Song Wei, Zhao Jiuran
Beijing Key Laboratory of Maize DNA Fingerprinting and Molecular Breeding, Maize Research Institute, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.
Front Plant Sci. 2022 Jul 28;13:957566. doi: 10.3389/fpls.2022.957566. eCollection 2022.
Lodging is a major problem in maize production, which seriously affects yield and hinders mechanized harvesting. Improving stalk strength is an effective way to improve lodging. The maize inbred line Jing2416 (J2416) was an elite germplasm in maize breeding which had strong stalk mechanical strength. To explore the characteristics its stalk strength, we conducted physiological, metabolic and transcriptomic analyses of J2416 and its parents Jing24 (J24) and 5237. At the kernel dent stage, the stalk rind penetrometer strength of J2416 was significantly higher than those of its two parents in multiple environments. The rind thickness, sclerenchyma tissue thickness, and cellulose, hemicellulose, and lignin contents of J2416 were significantly higher than those of its parents. Based on the significant differences between J2416 and 5237, we detected metabolites and gene transcripts showing differences in abundance between these two materials. A total of 212 (68.60%) metabolites and 2287 (43.34%) genes were up-regulated in J2416 compared with 5237. The phenylpropanoid and glycan synthesis/metabolism pathways were enriched in metabolites and genes that were up-regulated in J2416. Twenty-eight of the up-regulated genes in J2416 were involved in lignin, cellulose, and hemicellulose synthesis pathways. These analyses have revealed important physiological characteristics and candidate genes that will be useful for research and breeding of inbred lines with excellent stalk strength.
倒伏是玉米生产中的一个主要问题,严重影响产量并阻碍机械化收获。提高茎秆强度是改善倒伏情况的有效途径。玉米自交系京2416(J2416)是玉米育种中的优良种质,其茎秆机械强度较强。为探究其茎秆强度特性,我们对J2416及其亲本京24(J24)和5237进行了生理、代谢和转录组分析。在籽粒乳熟期,J2416在多个环境下的茎秆表皮穿刺强度显著高于其两个亲本。J2416的表皮厚度、厚壁组织厚度以及纤维素、半纤维素和木质素含量均显著高于其亲本。基于J2416和5237之间的显著差异,我们检测了这两种材料中丰度存在差异的代谢物和基因转录本。与5237相比,J2416中共有212种(68.60%)代谢物和2287个(43.34%)基因上调。苯丙烷类和聚糖合成/代谢途径在J2416中上调的代谢物和基因中富集。J2416中上调的28个基因参与了木质素、纤维素和半纤维素合成途径。这些分析揭示了重要的生理特性和候选基因,将有助于茎秆强度优良的自交系的研究和育种。