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首页> 外文期刊>BMC Genomics >Genome-wide characterization and expression profiling of SWEET genes in cabbage (Brassica oleracea var. capitata L.) reveal their roles in chilling and clubroot disease responses
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Genome-wide characterization and expression profiling of SWEET genes in cabbage (Brassica oleracea var. capitata L.) reveal their roles in chilling and clubroot disease responses

机译:白菜(Brassica Oleracea VAR中甜味基因的基因组特征及表达谱表达谱。Capitata L.)揭示了他们在寒冷和干旱疾病的作用中的作用

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The SWEET proteins are a group of sugar transporters that play a role in sugar efflux during a range of biological processes, including stress responses. However, there has been no comprehensive analysis of the SWEET family genes in Brassica oleracea (BoSWEET), and the evolutionary pattern, phylogenetic relationship, gene characteristics of BoSWEET genes and their expression patterns under biotic and abiotic stresses remain largely unexplored. A total of 30 BoSWEET genes were identified and divided into four clades in B. oleracea. Phylogenetic analysis of the BoSWEET proteins indicated that clade II formed first, followed by clade I, clade IV and clade III, successively. Clade III, the newest clade, shows signs of rapid expansion. The Ks values of the orthologous SWEET gene pairs between B. oleracea and Arabidopsis thaliana ranged from 0.30 to 0.45, which estimated that B. oleracea diverged from A. thaliana approximately 10 to 15 million years ago. Prediction of transmembrane regions showed that eight BoSWEET proteins contain one characteristic MtN3_slv domain, twenty-one contain two, and one has four. Quantitative reverse transcription-PCR (qRT-PCR) analysis revealed that five BoSWEET genes from clades III and IV exhibited reduced expression levels under chilling stress. Additionally, the expression levels of six BoSWEET genes were up-regulated in roots of a clubroot-susceptible cabbage cultivar (CS-JF1) at 7?days after inoculation with Plasmodiophora brassicae compared with uninoculated plants, indicating that these genes may play important roles in transporting sugars into sink roots associated with P. brassicae colonization in CS-JF1. Subcellular localization analysis of a subset of BoSWEET proteins indicated that they are localized in the plasma membrane. This study provides important insights into the evolution of the SWEET gene family in B. oleracea and other species, and represents the first study to characterize phylogenetic relationship, gene structures and expression patterns of the BoSWEET genes. These findings provide new insights into the complex transcriptional regulation of BoSWEET genes, as well as potential candidate BoSWEET genes that promote sugar transport to enhance chilling tolerance and clubroot disease resistance in cabbage.
机译:甜蛋白是一组糖转运蛋白,在一系列生物过程中起在糖流出中发挥作用,包括应力反应。然而,没有对芸苔(Bosweet)的甜家族基因没有全面分析,以及生物和非生物胁迫下的生物发育基因的进化模式,系统发育关系,基因特征以及它们的表达模式仍然很大程度上是未探斗的。共鉴定了总共30个Bosweet基因,并分为B. Oleracea的四种植物。 Bosweper蛋白的系统发育分析表明,连续形成的CLADE II,其次是连续的思工I,CLADE IV和CLADE III。 Clade III,最新的思工,表现出快速扩张的迹象。 B. Oleracea和Arabidopsis Thaliana之间的正交甜基因对的KS值范围为0.30至0.45,估计B.糖酸盐从A. Thaliana分叉约10至1500万年前。跨膜区域的预测表明,八个叶鲸蛋白质含有一个特征MTN3_SLV结构域,二十一体含有两个,并且一个有四个。定量逆转录PCR(QRT-PCR)分析表明,来自Clades III和IV的五种Bosweet基因表现出在寒冷的胁迫下表现出降低的表达水平。另外,在与未处理的植物相比,在接种疟原虫蛋白酶后,在与多种植物中与疟原虫肺泡蛋白蛋白(CS-JF1)的根中,六个嗜次卷曲基因的表达水平上调。与未征收的植物相比,表明这些基因可能发挥重要作用将糖运送到CS-JF1中与P. Brassicae定植相关的水槽。 Bosweet蛋白的子集的亚细胞定位分析表明它们在质膜中局部化。本研究提供了对B. Oleracea和其他物种的甜心基因家族的演变的重要见解,并且代表了表征系统发育关系,基因结构和雌糖基因表达模式的第一研究。这些发现提供了新的见解,进入培布基因的复杂转录调节,以及促进糖类运输的潜在候选博斯文基因,以增强白菜中的冷冻耐受性和脱牙龈疾病抗性。

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