CSIRO, Agriculture and Food, Canberra, ACT, 2601, Australia.
Charles Sturt University, School of Agriculture, Environment and Veterinary Sciences, Wagga-Wagga, 14 NSW, 2650, Australia.
J Exp Bot. 2022 Apr 18;73(8):2499-2510. doi: 10.1093/jxb/erac048.
Six cycles of recurrent selection for early shoot vigour in wheat resulted in significant increases in leaf width and shoot biomass. Here, in replicated controlled-environment studies, the effect of early shoot vigour on root biomass, rhizosheath size, root hair length, and cell size in the roots and leaves was examined across different cycles of selection. Increased shoot vigour was associated with greater root biomass, larger rhizosheath size, and longer root hairs. Our findings demonstrate that rhizosheath size was a reliable surrogate for root hair length in this germplasm. Examination of the root epidermis revealed that the 'cell body' of the trichoblasts (hair-forming cells) and the atrichoblasts (non-hair-forming cells) decreased in size as shoot vigour increased. Therefore, in higher vigour germplasm, longer root hairs emerged from smaller trichoblasts so that total trichoblast volume (root hair plus cell body) was generally similar regardless of shoot vigour. Similarly, the sizes of the four main cell types on the leaf epidermis became progressively smaller as shoot vigour increased, which also increased stomatal density. The relationship between shoot vigour and root traits is considered, and the potential contribution of below-ground root traits to performance and competitiveness of high vigour germplasm is discussed.
经过六轮小麦早期穗活力的轮回选择,叶片宽度和穗生物量显著增加。在这里,通过重复的受控环境研究,在不同的选择轮次中,考察了早期穗活力对根生物量、根鞘大小、根毛长度和根及叶片细胞大小的影响。穗活力的增加与根生物量的增加、根鞘大小的增大和根毛长度的增加有关。我们的研究结果表明,在这种种质资源中,根鞘大小是根毛长度的可靠替代物。对根表皮的检查表明,随着穗活力的增加,毛原细胞(形成毛的细胞)和无毛原细胞(不形成毛的细胞)的“细胞体”体积减小。因此,在活力较高的种质资源中,较短的根毛从较小的毛原细胞中长出,因此,无论穗活力如何,总毛原细胞体积(根毛加细胞体)通常相似。同样,随着穗活力的增加,叶片表皮上四个主要细胞类型的大小逐渐减小,这也增加了气孔密度。讨论了穗活力与根特性之间的关系,并讨论了地下根特性对高活力种质资源性能和竞争力的潜在贡献。