Normandie Univ, UNICAEN, INRAE, EVA Ecophysiologie Végétale Agronomie et nutritions NCS, Caen, France.
Physiol Plant. 2022 Jul;174(4):e13744. doi: 10.1111/ppl.13744.
Ryegrass (Lolium perenne L.) regrowth after defoliation results from the mobilization of sugar reserves (mainly fructans) and, simultaneously, the efficient lateral transport of sucrose toward growing tissues. However, as for grasses overall, it is not yet known if the induction of this transport is solely linked to the sugar demand of growing tissues via the modification of sugar content at the tissue or cellular level or if it could be triggered by a wounding signal due to the defoliation itself. Ryegrass plants were therefore submitted to total or partial defoliation, pinning of the leaf blades to simulate wounding, or to leaf spraying with 100 μM methyl jasmonate (MeJA), a phytohormone related to wounding. As a response to total or partial defoliation, fructans were mobilized, and the expression of the sucrose lateral transporter LpSUT1 was induced. This highlights an efficient intra-plant compensatory partitioning of sugar resources between defoliated and intact tillers, resulting in the adaptation to regrow after moderate to severe defoliation. The MeJA treatment strongly decreased fructan content. Pinning and especially MeJA largely and quickly increased sucrose content and LpSUT1 transcript levels in leaf sheaths and elongating leaf bases, suggesting a direct effect of wounding on the upregulation of the sucrose lateral transporter. The overall results suggest that sucrose transport capacity and fructan degradation are induced by defoliation through the modification of source-sink relationships for sugars at the plant level and are mediated by phytohormones associated with wounding, such as jasmonates.
黑麦草(Lolium perenne L.)在刈割后再生是由于糖储备(主要是果聚糖)的动员,同时,蔗糖有效地向生长组织侧向运输。然而,就整个禾本科而言,尚不清楚这种运输的诱导是否仅仅通过组织或细胞水平的糖含量的改变与生长组织的糖需求相关联,或者它是否可以通过刈割本身引起的伤信号来触发。因此,将黑麦草植株进行全刈割或部分刈割、叶片固定以模拟伤、或叶片喷施 100 μM 茉莉酸甲酯(MeJA),茉莉酸甲酯是一种与伤相关的植物激素。作为对全刈割或部分刈割的响应,果聚糖被动员,蔗糖侧向转运体 LpSUT1 的表达被诱导。这突出了植物内糖资源在刈割和未刈割分蘗之间的有效补偿性分配,从而适应中度至重度刈割后的再生。MeJA 处理强烈降低了果聚糖含量。叶片固定,特别是 MeJA 大大且快速地增加了叶片鞘和伸长叶片基部中的蔗糖含量和 LpSUT1 转录本水平,表明伤对蔗糖侧向转运体的上调有直接影响。总体结果表明,蔗糖运输能力和果聚糖降解是通过植物水平上糖源库关系的改变以及与伤相关的植物激素(如茉莉酸)来诱导的。