q</sup>C ,夜間溫度 10% )后不同時(shí)間點(diǎn)的主胚根生長(zhǎng)進(jìn)行動(dòng)態(tài)監(jiān)測(cè),并對(duì)CK和低溫處理1d根系組織進(jìn)行轉(zhuǎn)錄組和代謝組分析。結(jié)果表明,在低溫脅迫下,玉米主胚根生長(zhǎng)受到明顯抑制。CK和低溫處理根系代謝組中共鑒定到57種差異代謝物,這些代謝物主要參與淀粉和蔗糖代謝。CK和低溫處理根系轉(zhuǎn)錄組分析共鑒定到2769個(gè)差異表達(dá)基因,主要參與淀粉和蔗糖代謝、苯丙氨酸代謝。淀粉和蔗糖代謝是介導(dǎo)根系適應(yīng)低溫脅迫的關(guān)鍵通路。低溫脅迫下,玉米根系中果糖和葡萄糖等可溶性糖含量顯著增加。在淀粉和蔗糖代謝通路中共鑒定到26 個(gè)差異表達(dá)基因,低溫脅迫下12個(gè)基因表達(dá)水平顯著上調(diào),14個(gè)基因表達(dá)水平顯著下調(diào)。本研究結(jié)果為進(jìn)一步探索玉米根系適應(yīng)低溫脅迫的分子機(jī)制和品種遺傳改良提供了基礎(chǔ)和候選基因。-龍?jiān)雌诳W(wǎng)" />

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低溫脅迫下玉米根系轉(zhuǎn)錄組和代謝組分析

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中圖分類號(hào):S513.01 文獻(xiàn)標(biāo)識(shí)碼:A 文章編號(hào):1000-4440(2025)06-1063-09

Abstract:Cold stress is one of the primary abiotic stresses limiting the growth of maize seedlings.Inorder to study theeffectoflowtemperaturestressonmaizeroots,thisstudyusedmaizeinbredlineB73astheexperimentalmaterial,and dynamically monitored the growth of the primary root at different time points under control(28 C day/22 C night)and low-temperature treatment ( 15‰ day/ 10qC night).Additionally,we determined the transcriptome and metabolome of the rottissues from both thecontrol groupand the1-daylow-temperature treatment group.Phenotypic characterizationresults indicatedthatthe growthof the primaryroot was significantly inhibitedunderlow-temperature stress.Metabolomic analysis identified 57diferentiallyaccumulated metabolites,predominantlyenriched in starchand sucrose metabolism pathways.A total of 2 769 differentially expressed geneswere identified bytranscriptomeanalysis,which weremainlyinvolved in starch and sucrose metabolism and phenylalanine metabolism.Further integrationof transcriptomic andmetabolomic analyses revealed that starch and sucrose metabolismwere keypathwaysmediatingroot adaptationtolow-temperature stress.Under low-temperature stress,the content of soluble

sugarssuchasfructoseandglucosesignificantlyincreasedAtotalof26diferentiallyexpressed genes wereidentifiedinthe starchand sucrose metabolicpathways,with12 genesshowing significant upregulationand14 genesshowing significant downregulation.Thisstudyprovidesatheoretical foundationandcandidategenes forfurther investigation intothemolecular mechanisms of maize root adaptation to low-temperature stress and for genetic improvement.

Key words: maize;low temperature stress;transcriptomics;metabolomics

植物的生長(zhǎng)和發(fā)育依賴于農(nóng)田環(huán)境,在植物生長(zhǎng)過(guò)程中常受到干旱、高溫、低溫、洪澇等非生物脅迫的影響[1]。(剩余15595字)

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