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生态学杂志 ›› 2025, Vol. 44 ›› Issue (4): 1220-1225.doi: 10.13292/j.1000-4890.202504.011

• 研究报告 • 上一篇    下一篇

腐植酸及D-精氨酸对干旱胁迫下谷子幼苗根系生长的影响

申洁1,宋小静1,钟丹丹2,秦成1,裴鹏刚1,王茜1,雷海英1*,郝兴宇2*
  

  1. 1长治学院生命科学系, 山西长治 046011; 2山西农业大学农学院, 山西晋中 030801)

  • 出版日期:2025-04-10 发布日期:2025-04-11

Effects of humic acid and D-arginine on root growth of foxtail millet (Setaria italica) seedlings under drought stress.

SHEN Jie1, SONG Xiaojing1, ZHONG Dandan2, QIN Cheng1, PEI Penggang1, WANG Xi1, LEI Haiying1*, HAO Xingyu2*#br#   

  1. (1Department of Life Sciences, Changzhi University, Changzhi 046011, Shanxi, China; 2College of Agriculture, Shanxi Agricultural University, Jinzhong 030801, Shanxi, China).

  • Online:2025-04-10 Published:2025-04-11

摘要: 为揭示腐植酸(HA)与D-精氨酸(D-Arg)对干旱胁迫下谷子幼苗根系生长的影响,以晋谷21号和张杂10号谷子为研究材料,设置对照(CK)、干旱胁迫(Dr)、干旱胁迫下叶面喷施腐植酸(Dr + HA)、干旱胁迫下叶面喷施腐植酸和D精氨酸(Dr + HA + D-Arg)4个处理,研究腐植酸及D-Arg对干旱胁迫下谷子幼苗根系生长、内源精氨酸(Arg)含量及精氨酸脱羧酶(ADC)活性的影响。结果表明:干旱胁迫下,腐植酸使谷子幼苗根系的总根长、总根表面积、平均根系直径和总根体积显著增加,提高了根系的生物量,其中,晋谷21号和张杂10号的根干重分别较Dr处理显著增加了40.41%、55.57%(P<0.05);Dr + HA处理下,两品种的根系活力、ADC活性和内源Arg含量分别较Dr处理增加了18.58%、54.77%,22.43%、18.71%和31.71%、37.89%(P<0.05),腐植酸显著提高了谷子幼苗的根系活力、促进了内源Arg的合成、增强了ADC活性,促进根系的生长,从而缓解了干旱胁迫对根系的伤害。而DArg与腐植酸的作用效果相反,从而证实腐植酸提高谷子的抗旱性可能与促进多胺的合成有关。相关性分析表明,腐植酸处理下谷子幼苗根系形态指标之间呈极显著正相关(P<0.01),ADC活性与内源Arg含量呈极显著正相关(P<0.01)。本研究为解析腐植酸的作用机理提供了新思路,对腐植酸在谷子生产上的应用及绿色农业发展具有重要作用。


关键词: 腐植酸, D-精氨酸, 谷子, 根系, 抗旱性

Abstract: We examined the effects of humic acid (HA) and D-arginine (D-Arg) on root growth of foxtail millet seedlings of cultivars Jingu 21 and Zhangza 10 under drought stress. There were four treatments, including control (CK), drought stress (Dr), humic acid sprayed on the leaves under drought stress (Dr + HA), and humic acid and D-arginine sprayed on the leaves under drought stress (Dr + HA + D-Arg). We measured root growth, endogenous arginine (Arg) content, and arginine decarboxylase (ADC) activity of millet seedlings. The results showed that humic acid significantly increased the total root length, total root surface area, average root diameter, total root volume and root biomass under drought stress. Root dry biomass of Jingu 21 and Zhangza 10 was 40.41% and 55.57% higher than that of the Dr treatment, respectively (P<0.05). Under the treatment of Dr + HA, root activity, ADC activity, and endogenous Arg content were 18.58%, 22.43%, 31.71% (for Jingu 21), and 54.77%, 18.71%, 37.89% (for Zhangza 10) higher than those of the Dr treatment, respectively (P<0.05). Humic acid significantly improved root activity, promoted the synthesis of endogenous Arg, and enhanced ADC activity, thereby promoting root growth and alleviating the damage caused by drought stress on root systems. The effect of D-Arg was opposite to that of humic acid, suggesting that humic acid could improve the drought resistance of millet by promoting the synthesis of polyamines. There were significant positive correlations among root morphological indices and between ADC activity and endogenous Arg content under humic acid treatment (P<0.01). This study provides a new way to analyze the action mechanism of humic acid, which plays an important role in the application of humic acid in millet production and the development of green agriculture.


Key words: humic acid, D-arginine, foxtail millet, root, drought resistance