首页|李PsNAC基因家族鉴定及其在空腔褐变果实中的表达模式分析

李PsNAC基因家族鉴定及其在空腔褐变果实中的表达模式分析

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[目的]NAC转录因子广泛参与植物生长发育和应对逆境胁迫过程,被认为是植物次生细胞壁生物合成转录调控的一级开关。鉴定李PsNAC转录因子家族,探索其与皇冠李果实空腔褐变的关系。[方法]采用生物信息学方法,分析李PsNAC家族成员、理化性质、系统发育和基因结构等,并通过qRT-PCR技术,分析PsNACs在空腔褐变皇冠李果实中的表达模式。[结果]李PsNACs包含115个成员,不均匀地分布在8条染色体上,可分为17个亚族,与植物次生细胞壁合成相关的OsNAC003和OsNAC7亚族分别含6和10个PsNACs。PsNACs启动子区域含有丰富的激素响应元件和MYB结合位点。10个PsNACs在皇冠李空腔褐变果实中的表达量均高于非空腔褐变果实。[结论]本结果为研究PsNAC家族成员与皇冠李果实空腔褐变的具体关联性奠定了重要基础。
Identification of plum PsNAC gene family and its expression patterns in development of fruit hollowness and browning
[Objective]The NAC transcription factor family is one of the plant-specific transcription factor families and plays a pivotal role in plant growth and development and responses to biotic and abi-otic stresses.Huangguan plum is a newly developed high-quality plum variety bred by our team specifi-cally suited for cultivation in Fujian Province,China.Its fruit has the advantages of excellent taste,pleasant flavor,and rich nutrient profile.However,in our previous long-term observations,Huangguan plum has been found to be prone to fruit hollowness and browning(HB),characterized by rough and crystalline fruit pulp surfaces undergoing lignification and browning.We found that lignin biosynthesis and accumulation is one of the predominant biochemical responses to HB.The NAC transcription fac-tor is recognized as the primary regulator in the transcriptional control of plant secondary wall synthe-sis.This study aims to characterize the PsNAC gene family members in plum and investigate their asso-ciation with fruit HB in Huangguan plum.[Methods]The molecular weight,theoretical isoelectric point,and other physicochemical properties were predicted by the online tool ExPASy.The subcellular localization of PsNACs was predicted by the online software WoLF PSORT.The MEGA 11 software was used to construct a phylogenetic tree.The online tool Simple MEME Wrapper was used to analyze the motifs.The conserved motifs and gene structure maps were drawn by Tbtools.To analyze the cis-acting elements in the promoter region of PsNACs,the upstream 2000 bp promoter sequences were ex-tracted from the genomic sequences and submitted to the Plant TBDB website for the identification of cis-elements in the promoter region.The analysis results were organized and displayed using Simple Bi-oSequence Viewer.The expression of ten PsNACs in Huangguan fruit with and without HB was ana-lyzed by quantitative real-time polymerase chain reaction(qRT-PCR).[Results]There are 115 PsNAC members identified in Prunus salicina Lindl.,with protein sequences ranging from 182 to 861 amino ac-ids,molecular weights from 20.98 to 95.97 ku,theoretical isoelectric points from 4.43 to 9.55,and the instability index from 27.84(PsNAC60)to 61.36(PsNAC087).The grand average of hydropathy values of PsNAC gene family members were negative,indicating that these proteins are hydrophilic in nature.Transmembrane structure analysis revealed that 94%of PsNAC gene family members do not possess a transmembrane domain.The subcellular localization prediction results showed that 91 PsNAC gene fam-ily members were located in the nucleus,and the rest were distributed in structures such as the cyto-plasm,Golgi apparatus,peroxisome,cytoskeleton,mitochondria,chloroplasts,plasma membrane,and vacuole.Chromosomal localization analysis revealed uneven distribution across the plum's eight chro-mosomes,with chromosomes 2 and 3 harboring the highest number counts(17.4%),followed by chro-mosome 5(15.2%),and the fewest on chromosomes 6 and 7(10 PsNACs each).Phylogenetic tree analy-sis between Arabidopsis thaliana and P.salicina Lindl.classified PsNAC genes into 17 subfamilies,with 6 and 10 members clustered in OsNAC003,and OsNAC7,respectively,which are associated with plant secondary wall biosynthesis.The number of coding sequence segments in PsNACs ranged from 1 to 8,with most containing 3 to 6 segments.Analysis of gene annotation files identified a total of 10 con-served motifs among PsNACs,with varying positions and frequencies.Motif 1,motif 2,motif 3,and motif 6 were found in the majority of PsNACs,typically located towards the N-terminus of the sequenc-es.PsNAC members within the same subfamily exhibited similar motif distributions and gene structure characteristics including the CDS and UTR regions,suggesting potential functional similarity.Analysis of the 2000 bp upstream sequences from the transcription start site of PsNACs identified a total of 3069 cis-elements.The most significant core elements included phytohormone-responsive elements,MYB binding sites,low temperature responsiveness,drought-inducible elements,and light-responsive ele-ments.Intraspecific synteny analysis revealed that the PsNAC gene family contained 13 pairs of dupli-cated genes within the plum genome.The relative expression levels of PsNAC26,PsNAC57,PsNAC77,and PsNAC95 were highest at the fruit expansion period and gradually decreased as fruit development progressed.Conversely,PsNAC54 and PsNAC74 exhibited their lowest expression levels at the fruit ex-pansion period,and increased gradually with fruit development and ripening.The expression levels of PsNAC26,PsNAC57,PsNAC77,PsNAC95,PsNAC54,and PsNAC74 were higher in Huangguan fruit showing hollowness and browning compared to those without.[Conclusion]This study represents the first comprehensive analysis of the PsNAC gene family in plum,identifying and characterizing 115 members of the PsNAC gene family.We explored their physical and chemical properties,gene struc-tures,chromosome locations,phylogenetic relationships,and subcellular localization characteristics.Furthermore,using qRT-PCR technology,we investigated the gene expression patterns of PsNAC gene family members in Huangguan fruit exhibiting HB and non-HB across various developmental stages.The findings of this study will serve as a crucial foundation for further exploration into the biological functions of PsNAC gene family and the molecular mechanism by which PsNAC gene family members regulate fruit HB in Huangguan plum.

Huangguan plumNAC transcription factorGene familyFruit hollowness and browningGene expression

邓红红、彭超、梁茜、张子扬、刘俊伟、李斌奇、魏鸣康、王雪颖、李刘敏、陈发兴

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福建农林大学园艺学院,福州 350002

皇冠李 NAC转录因子 基因家族 空腔褐变 基因表达量

2025

果树学报
中国农业科学院郑州果树研究所

果树学报

北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2025.42(1)