de Oliveira Perla Novais, da Silva Luís Felipe Correa, Eloy Nubia Barbosa
Department of Biological Sciences, Escola Superior de Agricultura 'Luiz de Queiroz', University of São Paulo, Piracicaba, Brazil.
Front Plant Sci. 2022 Sep 29;13:987919. doi: 10.3389/fpls.2022.987919. eCollection 2022.
Cereal crops can be considered the basis of human civilization. Thus, it is not surprising that these crops are grown in larger quantities worldwide than any other food supply and provide more energy to humankind than any other provision. Additionally, attempts to harness biomass consumption continue to increase to meet human energy needs. The high pressures for energy will determine the demand for crop plants as resources for biofuel, heat, and electricity. Thus, the search for plant traits associated with genetic increases in yield is mandatory. In multicellular organisms, including plants, growth and development are driven by cell division. These processes require a sequence of intricated events that are carried out by various protein complexes and molecules that act punctually throughout the cycle. Temporal controlled degradation of key cell division proteins ensures a correct onset of the different cell cycle phases and exit from the cell division program. Considering the cell cycle, the Anaphase-Promoting Complex/Cyclosome (APC/C) is an important conserved multi-subunit ubiquitin ligase, marking targets for degradation by the 26S proteasome. Studies on plant APC/C subunits and activators, mainly in the model plant Arabidopsis, revealed that they play a pivotal role in several developmental processes during growth. However, little is known about the role of APC/C in cereal crops. Here, we discuss the current understanding of the APC/C controlling cereal crop development.
谷类作物可被视为人类文明的基础。因此,毫不奇怪的是,这些作物在全球的种植量比任何其他食物供应都要多,并且比任何其他食物为人类提供的能量都更多。此外,为满足人类能源需求,利用生物质消耗的尝试持续增加。对能源的巨大压力将决定对作为生物燃料、热能和电力资源的作物的需求。因此,寻找与产量遗传增加相关的植物性状是必不可少的。在包括植物在内的多细胞生物中,生长和发育由细胞分裂驱动。这些过程需要一系列复杂的事件,这些事件由各种蛋白质复合物和分子执行,它们在整个周期中适时发挥作用。关键细胞分裂蛋白的时间控制降解确保了不同细胞周期阶段的正确起始以及从细胞分裂程序中退出。考虑到细胞周期,后期促进复合体/细胞周期体(APC/C)是一种重要的保守多亚基泛素连接酶,它标记26S蛋白酶体降解的靶标。主要在模式植物拟南芥中对植物APC/C亚基和激活剂的研究表明,它们在生长过程中的几个发育过程中起着关键作用。然而,关于APC/C在谷类作物中的作用知之甚少。在这里,我们讨论目前对APC/C控制谷类作物发育的理解。