高溫下長(zhǎng)勢(shì)一致35d苗齡的苜蓿葉片用不同濃度ALA處理,篩選緩解高溫脅迫的ALA最適濃度,再對(duì)其葉片進(jìn)行常溫?zé)oALA(CK)高溫脅迫無(wú)ALA(Heat)、噴施 <img src="/qkimages/c846/c846202504/c84620250407-2-l.jpg" with="75px" style="vertical-align: middle;"> ALA后常溫培養(yǎng)或高溫脅迫(ALA或HA)4種處理,測(cè)定生理指標(biāo),同時(shí)進(jìn)行轉(zhuǎn)錄組測(cè)序和生物信息學(xué)分析。結(jié)果表明:<img src="/qkimages/c846/c846202504/c84620250407-3-l.jpg" with="75px" style="vertical-align: middle;"> ALA改善首蓿苗期高溫脅迫下各生理指標(biāo),其緩解效果最佳。對(duì)樣本間的差異表達(dá)基因(DEGs)進(jìn)行篩選,推測(cè)270個(gè)DEGs是外源ALA調(diào)控葉片響應(yīng)高溫脅迫的潛在相關(guān)基因。GO和KEGG富集以及DEGs共表達(dá)趨勢(shì)結(jié)果表明,外源ALA主要參與介導(dǎo)苯丙烷類生物合成和植物激素信號(hào)轉(zhuǎn)導(dǎo)兩條通路的關(guān)鍵基因來(lái)響應(yīng)高溫脅迫。本研究為苜蓿耐熱基因的挖掘提供依據(jù),也為今后的分子育種奠定了理論基礎(chǔ)。-龍?jiān)雌诳W(wǎng)" />

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綜合生理學(xué)和轉(zhuǎn)錄組學(xué)揭示外源5-氨基乙酰丙酸調(diào)節(jié)‘德欽'紫花首蓿耐熱性的分子機(jī)制

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Abstract: In order to reveal the molecular mechanism of exogenous 5-aminolevulinic acid(ALA) regulating Medicago satiua‘Deqin’and provide theoretical basis for heat-resistant breeding,alfalfa leaves with the same growth at for 35 days of seedling age were treated with different concentrations of ALA to screen the optimal concentration of ALA which could aleviate high temperature stress in this study. The leaves separately treated with room temperature without ALA(CK), high temperature stress without ALA(Heat),sprayed with ALA and cultured at room temperature or under high temperature stress (ALA or HA) were determined physiological indexes and performed transcriptomic sequencing and bioinformatics analysis.The results showed that ALA improved the physiological indexes of alfalfa under high temperature stress at seedling stage,and the relief effect was the best.The differentially expressed genes(DEGs)among the samples were screened,and 27O DEGs were estimated to be potential genes related to the regulation of exogenous ALA in leaf response to high temperature stress.The results of GO and KEGG enrichment and coexpression trends of DEGs indicated that exogenous ALA mainly involved in key genes mediating two pathways,phenylpropanoid biosynthesis and phytohormone signaling,in response to high-temperature stress.This study provided a basis for the mining of heat-resistant genes in alfalfa and laid a theoretical foundation for molecular breeding in the future.

Key words:Medicago satiua; Exogenous ALA;Heat resistance;Phenylpropanoids;Plant hormone

紫花苜蓿(Medicagosatiua)素有“牧草之王"的美譽(yù),因其產(chǎn)量高、營(yíng)養(yǎng)品質(zhì)優(yōu)等特點(diǎn)[1-3],具有極高的飼喂價(jià)值、經(jīng)濟(jì)價(jià)值和生態(tài)價(jià)值[4-6]。(剩余19317字)

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