Enhancing maize radiation use efficiency under high planting density by shaping canopy architecture with a plant growth regulator

Guanmin Huang, Yuling Guo, Weiming Tan, Mingcai Zhang, Zhaohu Li, Yuyi Zhou, Liusheng Duan
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Abstract

Optimized maize (Zea mays L.) canopy architecture enhances density-tolerance. DHEAP (N, N-Diethyl-2-hexanoyl oxygen radicals-ethyl amine (2-ethyl chloride) phosphonic acid salt) has been shown to increase maize upper canopy strata compactness, but its overall effect on the whole canopy structure and how it shapes the canopy structure remain unclear. This study examined how DHEAP affected the canopy structure of maize hybrids Zhengdan 958 (ZD958) and Xianyu 335 (XY335), with distinct canopy structures, under different planting densities. The results showed that DHEAP increased the leaf orientation value (LOV) of upper canopy strata by 8.0% while reducing middle and lower strata LOV by 11.7% and 18.4%, respectively. This indicates that DHEAP shaped a canopy structure that was compact in the upper strata and loose in the middle and lower strata. Multiple linear regression analysis showed that leaf angle had a greater impact on the upper canopy strata, while leaf auricle size had a greater impact on the middle and lower canopy strata. After DHEAP treatment, light transmission above different canopy strata increased at the reproductive stage. Concurrently, the middle canopy captured more light energy, enhanced yield formation, and boosted radiation use efficiency by 21.9% under high density. In terms of grain yield, DHEAP treatment resulted in a 9.1% and 23.9% increase in ZD958 and XY335, respectively, under high-density conditions. These results suggest that DHEAP shaped the maize canopy structure with high density tolerance, improved the distribution of light within the canopy, and increased grain yield.

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用植物生长调节剂塑造冠层结构,提高高种植密度下玉米的辐射利用效率
优化玉米(Zea mays L.)冠层结构可提高耐密度。DHEAP(N, N-二乙基-2-己酰氧自由基-乙胺(2-乙基氯)膦酸盐)已被证明能提高玉米冠层上部的紧密度,但其对整个冠层结构的总体影响以及如何形成冠层结构仍不清楚。本研究考察了 DHEAP 如何影响具有不同冠层结构的玉米杂交种郑单 958(ZD958)和先玉 335(XY335)在不同种植密度下的冠层结构。结果表明,DHEAP 使冠层上部的叶向值(LOV)增加了 8.0%,而中下部的叶向值分别降低了 11.7% 和 18.4%。这表明,DHEAP 形成了上层紧凑、中下层疏松的冠层结构。多元线性回归分析表明,叶片角度对上层冠层的影响较大,而叶耳大小对中下层冠层的影响较大。经过 DHEAP 处理后,不同冠层上方的透光率在生殖期均有所提高。同时,在高密度条件下,中冠层捕获了更多的光能,提高了产量形成,并使辐射利用效率提高了 21.9%。在谷物产量方面,DHEAP处理使ZD958和XY335在高密度条件下分别增产9.1%和23.9%。这些结果表明,DHEAP 塑造了耐高密度的玉米冠层结构,改善了冠层内的光分布,提高了谷物产量。
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