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An investigation into the beneficial effects and molecular mechanisms of humic acid on foxtail millet under drought conditions

机译:腐殖酸在干旱条件下腐殖酸腐殖酸的有益效果和分子机制研究

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The aim of this study was to determine the effects and underlying molecular mechanisms of humic acid (HA) on foxtail millet ( Setaria italica Beauv.) under drought conditions. The rainless climate of the Shanxi Province (37°42'N, 112°58'E) in China provides a natural simulation of drought conditions. Two foxtail millet cultivars, Jingu21 and Zhangza10, were cultivated in Shanxi for two consecutive years (2017–2018) based on a split-plot design. Plant growth, grain quality, and mineral elements were analyzed in foxtail millet treated with HA (50, 100, 200, 300, and 400 mg L -1 ) and those treated with clear water. Transcriptome sequencing followed by bioinformatics analysis was performed on plants in the normal control (CK), drought treatment (D), and drought + HA treatment (DHA) groups. Results were verified using real-time quantitative PCR (RT-qPCR). HA at a concentration of 100–200 mg L -1 caused a significant increase in the yield of foxtail millet and had a positive effect on dry weight and root-shoot ratio. HA also significantly increased P, Fe, Cu, Zn, and Mg content in grains. Moreover, a total of 1098 and 409 differentially expressed genes (DEGs) were identified in group D vs. CK and D vs. DHA, respectively. A protein-protein interaction network and two modules were constructed based on DEGs (such as SETIT_016654mg) between groups D and DHA. These DEGs were mainly enriched in the metabolic pathway. In conclusion, HA (100 mg L -1 ) was found to promote the growth of foxtail millet under drought conditions. Furthermore, SETIT_016654mg may play a role in the effect of HA on foxtail millet via control of the metabolic pathway. This study lays the foundation for research into the molecular mechanisms that underlie the alleviating effects of HA on foxtail millet under drought conditions.
机译:本研究的目的是在干旱条件下确定腐殖酸(HA)对腐殖酸(HA)的腐殖酸(HA)的影响和潜在的分子机制。山西省(37°42'n,112°58'e)的无雨气候提供了天然的干旱条件模拟。两个狐尾小米品种,Juyra21和Zhangza10,连续两年(2017-2018)在山西耕种,基于分裂图设计。在用HA(50,100,00,300和400mg L -1)处理的粪码小米中分析了植物生长,粒状和矿物质元素,并用透明水处理处理。在正常对照(CK),干旱治疗(D)和干旱+ HA处理(DHA)组中,对生物信息学分析进行转录组测序。使用实时定量PCR(RT-QPCR)验证结果。 HA以100-200mg L -1的浓度导致粪码小米的产量显着增加,对干重和根枝比具有积极影响。 HA也显着增加了谷物中的P,Fe,Cu,Zn和Mg含量。此外,总共1098和409族差异表达基因(DEGS)分别在D族与CK和D vs. DHA组中鉴定出来。基于组D和DHA之间的DEGS(例如SETIT_016654MG)构建蛋白质 - 蛋白质相互作用网络和两个模块。这些含量主要富含代谢途径。总之,已发现HA(100mg L -1)促进干旱条件下氟虫小米的生长。此外,SETIT_016654MG通过对代谢途径的控制,可以在HA上的效果中发挥作用。本研究为研究脱脂粉末在粪便条件下的粪便效果下的分子机制奠定了研究的基础。

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