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首页> 外文期刊>BMC Plant Biology >Genome-wide identification and characterization of NBS-encoding genes in Raphanus sativus L. and their roles related to Fusarium oxysporum resistance
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Genome-wide identification and characterization of NBS-encoding genes in Raphanus sativus L. and their roles related to Fusarium oxysporum resistance

机译:Raphanus Sativus L中的NBS编码基因的基因组鉴定与表征。及其与镰刀镰刀菌相关的作用

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摘要

The nucleotide-binding site–leucine-rich repeat (NBS-LRR) genes are important for plant development and disease resistance. Although genome-wide studies of NBS-encoding genes have been performed in several species, the evolution, structure, expression, and function of these genes remain unknown in radish (Raphanus sativus L.). A recently released draft R. sativus L. reference genome has facilitated the genome-wide identification and characterization of NBS-encoding genes in radish. A total of 225 NBS-encoding genes were identified in the radish genome based on the essential NB-ARC domain through HMM search and Pfam database, with 202 mapped onto nine chromosomes and the remaining 23 localized on different scaffolds. According to a gene structure analysis, we identified 99 NBS-LRR-type genes and 126 partial NBS-encoding genes. Additionally, 80 and 19 genes respectively encoded an N-terminal Toll/interleukin-like domain and a coiled-coil domain. Furthermore, 72% of the 202 NBS-encoding genes were grouped in 48 clusters distributed in 24 crucifer blocks on chromosomes. The U block on chromosomes R02, R04, and R08 had the most NBS-encoding genes (48), followed by the R (24), D (23), E (23), and F (17) blocks. These clusters were mostly homogeneous, containing NBS-encoding genes derived from a recent common ancestor. Tandem (15 events) and segmental (20 events) duplications were revealed in the NBS family. Comparative evolutionary analyses of orthologous genes among Arabidopsis thaliana, Brassica rapa, and Brassica oleracea reflected the importance of the NBS-LRR gene family during evolution. Moreover, examinations of cis-elements identified 70 major elements involved in responses to methyl jasmonate, abscisic acid, auxin, and salicylic acid. According to RNA-seq expression analyses, 75 NBS-encoding genes contributed to the resistance of radish to Fusarium wilt. A quantitative real-time PCR analysis revealed that RsTNL03 (Rs093020) and RsTNL09 (Rs042580) expression positively regulates radish resistance to Fusarium oxysporum, in contrast to the negative regulatory role for RsTNL06 (Rs053740). The NBS-encoding gene structures, tandem and segmental duplications, synteny, and expression profiles in radish were elucidated for the first time and compared with those of other Brassicaceae family members (A. thaliana, B. oleracea, and B. rapa) to clarify the evolution of the NBS gene family. These results may be useful for functionally characterizing NBS-encoding genes in radish.
机译:核苷酸结合位点 - 富氨酸富氨酸的重复(NBS-LRR)基因对于植物发育和抗病性是重要的。尽管在几种物种中进行了对NBS编码基因的基因组研究,但这些基因的进化,结构,表达和功能在萝卜(Raphanus Sativus L.)中仍然是未知的。最近释放的R.Sativus L.参考基因组促进了萝卜中NBS编码基因的基因组型鉴定和表征。通过HMM搜索和PFAM数据库基于基本Nb弧域在萝卜基因组中鉴定了总共225个NBS编码基因,202映射到九条染色体上,并且剩余的23局限于不同的支架上。根据基因结构分析,我们确定了99个NBS-LRR型基因和126个部分NBS编码基因。另外,80和19个基因分别编码N-末端损伤/白细胞介素样结构域和卷轴螺旋域。此外,将202个NBS编码基因中的72%分配在染色体上的24个十字织叶片中分布的48个簇中。染色体R02,R04和R08上的U块具有最多的NBS编码基因(48),然后是R(24),D(23),E(23)和F(17)块。这些簇大多是均匀的,含有来自最近常见的祖先的NBS编码基因。在NBS家族中揭示了串联(15次活动)和分段(20次事件)重复。拟南芥,芸苔属rapa和甘蓝型糖酸盐中的正交基因的比较进化分析反映了NBS-LRR基因家族在进化过程中的重要性。此外,顺式元素的检查确定了茉莉酸甲酯,脱落酸,植物蛋白和水杨酸的反应中涉及的70个主要元素。根据RNA-SEQ表达分析,75个NBS编码基因导致萝卜对镰刀菌的抗性。定量实时PCR分析表明,RSTN103(RS093020)和RSTN109(RS042580)表达积极地调节萝卜抗镰刀菌孢子素,与RSTN106的阴性调节作用相反,达到镰刀菌血管植物。第一次阐明了萝卜中的NBS编码基因结构,串联和节段性重复,同步和表达曲线,并与其他芸苔属家庭成员(A. Thilana,B. Oleracea和B. Rapa)相比澄清NBS基因家族的演变。这些结果可用于在萝卜中功能表征NBS编码基因。

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