College of Agronomy, Sichuan Agricultural University, 211-Huimin Road, Wenjiang District, Chengdu 611130, P.R. China.
Sichuan Engineering Research Center for Crop Strip Intercropping System, Key Laboratory of Crop Ecophysiology and Farming System in Southwest China (Ministry of Agriculture), Chengdu, P. R. China.
J Exp Bot. 2024 Jan 1;75(1):258-273. doi: 10.1093/jxb/erad370.
Intercropping improves resource utilization. Under wide-narrow-row maize (Zea mays) intercropping, maize plants are subjected to weak unilateral illumination and exhibit high photosynthetic performance. However, the mechanism regulating photosynthesis under unilateral weak light remains unknown. We investigated the relationship between photosynthesis and sugar metabolism in maize under unilateral weak light. Our results showed that the net photosynthetic rate (Pn) of unshaded leaves increased as the level of shade on the other side increased. On the contrary, the concentration of sucrose and starch and the number of starch granules in the unshaded leaves decreased with increased shading due to the transfer of abundant C into the grains. However, sink loss with ear removal reduced the Pn of unshaded leaves. Intense unilateral shade (40% to 20% normal light), but not mild unilateral shade (60% normal light), reduced grain yield (37.6% to 54.4%, respectively). We further found that in unshaded leaves, Agpsl, Bmy, and Mexl-like expression significantly influenced sucrose and starch metabolism, while Sweet13a and Sut1 expression was crucial for sugar export. In shaded leaves, expression of Sps1, Agpsl, and Sweet13c was crucial for sugar metabolism and export. This study confirmed that unshaded leaves transported photosynthates to the ear, leading to a decrease in sugar concentration. The improvement of photosynthetic performance was associated with altered sugar transport. We propose a narrow-row spacing of 40 cm, which provides appropriate unilateral shade and limits yield reduction.
间作提高资源利用率。在宽窄行玉米间作下,玉米植株受到较弱的单侧光照,表现出较高的光合性能。然而,单侧弱光下调节光合作用的机制尚不清楚。我们研究了单侧弱光下玉米光合作用与糖代谢的关系。结果表明,未遮光叶片的净光合速率(Pn)随另一侧遮光程度的增加而增加。相反,由于大量 C 向籽粒转移,未遮光叶片的蔗糖和淀粉浓度以及淀粉粒数量随着遮光程度的增加而减少。然而,去除穗子导致的库损耗降低了未遮光叶片的 Pn。强烈的单侧遮荫(40%至 20%正常光照),而不是轻度单侧遮荫(60%正常光照),分别降低了 37.6%至 54.4%的籽粒产量。我们进一步发现,在未遮光叶片中,Agpsl、Bmy 和 Mexl-like 的表达显著影响蔗糖和淀粉代谢,而 Sweet13a 和 Sut1 的表达对糖输出至关重要。在遮光叶片中,Sps1、Agpsl 和 Sweet13c 的表达对糖代谢和输出至关重要。本研究证实,未遮光叶片将光合产物运输到穗部,导致糖浓度降低。光合性能的提高与改变的糖转运有关。我们提出 40 厘米的窄行距,提供适当的单侧遮荫并限制产量降低。