生物刺激剂诱导紫花苜蓿(Medicago sativa L.)和变色紫花苜蓿(Medicago × varia Martyn)植物的生长、叶绿素含量和鲜草产量

Ebenezer Ayew Appiah, Csaba István Virág, Erika Kutasy
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摘要

使用生物刺激剂可通过刺激细胞分裂、改善养分供应和吸收来促进植物生长。匈牙利德布勒森大学进行了一项研究,探讨生物刺激素对紫花苜蓿生长、叶绿素含量和新鲜牧草产量的影响。实验采用随机完全区组设计,三个生物刺激剂处理加对照,重复三次。使用 Genstat 对收集到的数据进行方差分析,以 5%的概率用最小显著差异来区分显著不同的平均值。研究结果表明,在整个生长初期,植株高度和叶绿素含量(SPAD)没有不同的变化。不过,在后期(施用生物刺激剂处理后 28 天),苜蓿植株的生长受到了显著影响。生物刺激剂处理对第二至第四次收割的新鲜产量没有影响,但对第五次收割有显著影响,T1 处理的牧草产量最高,为 19745 千克/公顷,其次是 T2(Tricho Immun 加 Ino Green)和 T3(Tricho Immun),产量分别为 19528 千克/公顷和 17273 千克/公顷,而 T0(对照)的牧草产量最低,为 12060 千克/公顷。然而,平均平均产量表明,施用生物刺激剂后,新鲜牧草产量显著提高了 20.5%。相关系数值表明,14 DAH 和 28 DAH(收获后天数)的株高与鲜草产量密切相关(r = 0.7756 和 0.7455),这反映了鲜草产量的增加。因此,我们的研究结果表明,在紫花苜蓿种植中使用生物刺激剂对叶绿素含量和紫花苜蓿植株的生长有积极影响,有望提高紫花苜蓿的生长和产量潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biostimulant induce growth, chlorophyll content and fresh herbage yield of alfalfa (Medicago sativa L.) and variegated alfalfa (Medicago × varia Martyn) plant
The use of biostimulants is associated with promoting plant growth by stimulating cell division and improving nutrient availability and uptake. A study was conducted at the University of Debrecen, Hungary, to examine the effect of biostimulants on alfalfa growth, chlorophyll content and fresh herbage yield. The experiment was arranged in a randomised complete block design with three biostimulant treatments plus control replicated three times. Data collected were subjected to analyses of variance using Genstat, where significantly different means were separated at a probability of 5% using the least significant difference. The findings show no different variation in plant height or chlorophyll content (SPAD) throughout the early stages of growth. Nonetheless, a notable impact was noted in the latter stages (28 days after biostimulant treatment application) on the growth of the alfalfa plant. Biostimulant treatments did not had effect on fresh yield for second through fourth cuts, but the fifth cut showed a significant effect, with T1 treatment recording the highest herbage yield of 19745 kg ha-1 followed by T2 (Tricho Immun plus Ino Green) and T3 (Tricho Immun), with yields of 19528 kg ha-1 and 17273 kg ha-1, respectively, while the T0 (control) recorded the lowest herbage yield of 12060 kg ha-1. However, the average mean yield indicated the application of biostimulants significantly increased fresh yield herbage by 20.5%. Correlation coefficient values suggested plant height at both 14 and 28 DAH (days after harvest) strongly correlated with fresh herbage yield (r = 0.7756 and 0.7455) which reflected in the increase in fresh herbage yield. Therefore, our results suggest that the use of biostimulants in alfalfa cultivation holds promise for improving growth and yield potential through their positive effects on chlorophyll content and the growth of alfalfa plant.
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