School of Biological Sciences, Plant Molecular Science and Centre for Systems and Synthetic Biology, Royal Holloway University of London, Egham, Surrey TW20 0EX, UK(1).
Curr Opin Genet Dev. 2018 Aug;51:1-10. doi: 10.1016/j.gde.2018.03.001. Epub 2018 Mar 20.
Distinct plant seed/fruit structures evolved to support reproduction and dispersal in distinct environments. Appropriate biomechanical properties and interactions of the various seed compartments are indispensable to plant survival. Most seeds are dispersed in a dry state generated during seed development/maturation for which novel aspects of endosperm-embryo interaction were discovered. The various layers covering the embryo of a mature seed define the patterns of water uptake during germination. Their biomechanical weakening together with embryo cell expansion is mediated by cell wall remodelling to facilitate radicle protrusion. Recent work with different species has revealed mechanisms underpinning specific embryo growth zones. Abiotic and biotic factors were shown to release different types of seed and fruit coat-mediated constraints to water uptake and germination.
不同的植物种子/果实结构进化为支持在不同环境中的繁殖和散布。各种种子隔室的适当生物力学特性和相互作用对于植物的生存是必不可少的。大多数种子在种子发育/成熟过程中以干燥状态散布,在此过程中发现了胚乳-胚胎相互作用的新方面。覆盖成熟种子胚胎的各种层定义了在萌发过程中吸水的模式。它们的生物力学减弱以及胚胎细胞的扩张是通过细胞壁重塑来介导的,以促进胚根的突出。最近对不同物种的研究揭示了支持特定胚胎生长区的机制。非生物和生物因素被证明可以释放不同类型的种子和果实外皮介导的对水吸收和萌发的限制。