Li Xiao-Jing, Chen Xiao-Juan, Guo Xie, Yin Ling-Ling, Ahammed Golam Jalal, Xu Chang-Jie, Chen Kun-Song, Liu Chao-Chao, Xia Xiao-Jian, Shi Kai, Zhou Jie, Zhou Yan-Hong, Yu Jing-Quan
Department of Horticulture, Zhejiang University, Hangzhou, China.
Key Laboratory of Horticultural Plants Growth, Development and Quality Improvement, Agricultural Ministry of China, Hangzhou, China.
Plant Biotechnol J. 2016 Mar;14(3):1021-33. doi: 10.1111/pbi.12474. Epub 2015 Sep 18.
Brassinosteroids (BRs) play a critical role in plant growth, development and stress response; however, genetic evidence for the BR-mediated integrated regulation of plant growth still remains elusive in crop species. Here, we clarified the function of DWARF (DWF), the key BR biosynthetic gene in tomato, in the regulation of plant growth and architecture, phytohormone homeostasis and fruit development by comparing wild type, d^(im), a weak allele mutant impaired in DWF, and DWF-overexpressing plants in tomato. Results showed that increases in DWF transcripts and endogenous BR level resulted in improved germination, lateral root development, CO2 assimilation and eventually plant growth as characterized by slender and compact plant architecture. However, an increase in DWF transcript down-regulated the accumulation of gibberellin, which was associated with decreases in leaf size and thickness. BRs positively regulated lateral bud outgrowth, which was associated with decreased transcript of Aux/IAA3, and the ethylene-dependent petiole bending and fruit ripening. Notably, overexpression of DWF did not significantly alter fruit yield per plant; however, increases by 57.4% and 95.3% might be estimated in fruit yield per square metre in two transgenic lines due to their compact architecture. Significantly, BR level was positively related with the carotenoid accumulation in the fruits. Taken together, our results demonstrate that BRs are actively involved in the regulation of multiple developmental processes relating to agronomical important traits.
油菜素甾醇(BRs)在植物生长、发育及胁迫响应中发挥着关键作用;然而,在作物中,BR介导植物生长综合调控的遗传证据仍不明确。在此,我们通过比较野生型、d^(im)(DWF功能受损的弱等位基因突变体)及番茄中过表达DWF的植株,阐明了番茄中关键BR生物合成基因DWARF(DWF)在调控植物生长与株型、植物激素稳态及果实发育方面的功能。结果表明,DWF转录本及内源BR水平的增加导致发芽率提高、侧根发育改善、二氧化碳同化增强,并最终促进了以植株细长紧凑为特征的植物生长。然而,DWF转录本的增加下调了赤霉素的积累,这与叶片大小和厚度的减小有关。BRs正向调控侧芽生长,这与Aux/IAA3转录本的减少、乙烯依赖的叶柄弯曲及果实成熟有关。值得注意的是,DWF过表达并未显著改变单株果实产量;然而,由于其紧凑的株型,两个转基因株系每平方米的果实产量估计分别提高了57.4%和95.3%。重要的是,BR水平与果实中类胡萝卜素的积累呈正相关。综上所述,我们的结果表明BRs积极参与调控与重要农艺性状相关的多个发育过程。