;蛋白的分子量介于 <img src="/qkimages/c846/c846202504/c84620250403-2-l.jpg" with="117px" style="vertical-align: middle;"> 之間;等電點(diǎn)范圍在 <img src="/qkimages/c846/c846202504/c84620250403-3-l.jpg" with="71px" style="vertical-align: middle;"> 之間。所有成員具有大量保守基序,分布在17條染色體上,上游作用元件主要包括內(nèi)部激素和外部環(huán)境響應(yīng)。表達(dá)模式分析顯示9個(gè)AsTLPs成員在燕麥根系和葉片中的表達(dá)量具有顯著差異,有4個(gè)成員在干旱脅迫下各組織中表達(dá)量均上升,表明可能在燕麥干旱脅迫響應(yīng)中發(fā)揮重要作用。研究結(jié)果為燕麥TLP家族及其干旱脅迫響應(yīng)方面的進(jìn)一步研究提供參考。-龍?jiān)雌诳W(wǎng)" />

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飼用燕麥TLP基因家族鑒定及干旱脅迫下表達(dá)模式分析

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Abstract:Tubby-like proteins (TLP) are a significant group of proteins discovered acrossanimal and plant species that participate in various biological processes. These proteins play a crucial role in plant growth,development,and the responses to abiotic stresses. This study employed bioinformatics methods to identify 32 TLP family genes from the hexaploid oat (Auena satiua) genome. We conducted an analysis of their physicochemical properties,gene structures, phylogenetic evolution, and expression patterns across diferent tissues under drought stress. The results demonstrated that the amino acid count of the A s T L P genes ranged from 238 to 543 amino acids. The molecular weights of these proteins were found to be between 26.99 and ,and their isoelectric points ranged from 9.OO to 9.58. These genes unevenly distributed across 17 chromosomes and possessed a large number of conserved motifs.The functional elements primarily included those related to internal hormone responses and external environmental reactions.Expresion analysis indicated significant diferences in the expresion levels of nine AsTLP members between roots and leaves of oats.Specifically,four members showed the increased expression in alltissues under drought stress,suggesting a potential significant role in the oat’s response to drought stress. These findings provided a valuable reference for further studies on the oat TLP family and their responses to drought stress. Key words:Avena satiua; Tubby-like proteins;Bioinformatics;Drought stress;Gene expression

在全球氣候變化的背景下,作物面臨的非生物脅迫如高溫、干旱和鹽堿等問(wèn)題日益嚴(yán)峻,這些因素不僅影響作物的生長(zhǎng)發(fā)育,還可能導(dǎo)致產(chǎn)量的大幅下降[1]。(剩余12518字)

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