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豆科植物 MIPS 家族基因的全基因组鉴定、特征分析和表达分析。

Genome-wide identification, characterization, and expression analysis of MIPS family genes in legume species.

机构信息

Centre for Plant Biotechnology and Molecular Biology, Kerala Agricultural University, Thrissur, India.

Department of Plant Breeding, Cotton Research Institute of Iran (CRII), Agricultural Research, Education and Extension Organization (AREEO), Gorgan, Iran.

出版信息

BMC Genomics. 2024 Jan 23;25(1):95. doi: 10.1186/s12864-023-09937-7.

Abstract

BACKGROUND

Evolutionarily conserved in plants, the enzyme D-myo-inositol-3-phosphate synthase (MIPS; EC 5.5.1.4) regulates the initial, rate-limiting reaction in the phytic acid biosynthetic pathway. They are reported to be transcriptional regulators involved in various physiological functions in the plants, growth, and biotic/abiotic stress responses. Even though the genomes of most legumes are fully sequenced and available, an all-inclusive study of the MIPS family members in legumes is still ongoing.

RESULTS

We found 24 MIPS genes in ten legumes: Arachis hypogea, Cicer arietinum, Cajanus cajan, Glycine max, Lablab purpureus, Medicago truncatula, Pisum sativum, Phaseolus vulgaris, Trifolium pratense and Vigna unguiculata. The total number of MIPS genes found in each species ranged from two to three. The MIPS genes were classified into five clades based on their evolutionary relationships with Arabidopsis genes. The structural patterns of intron/exon and the protein motifs that were conserved in each gene were highly group-specific. In legumes, MIPS genes were inconsistently distributed across their genomes. A comparison of genomes and gene sequences showed that this family was subjected to purifying selection and the gene expansion in MIPS family in legumes was mainly caused by segmental duplication. Through quantitative PCR, expression patterns of MIPS in response to various abiotic stresses, in the vegetative tissues of various legumes were studied. Expression pattern shows that MIPS genes control the development and differentiation of various organs, and have significant responses to salinity and drought stress.

CONCLUSION

The MIPS genes in the genomes of legumes have been identified, characterized and their expression was analysed. The findings pave way for understanding their molecular functions and evolution, and lead to identify the putative MIPS genes associated with different cell and tissue development.

摘要

背景

在植物中进化保守的酶 D-肌醇-3-磷酸合酶(MIPS;EC 5.5.1.4)调节植酸生物合成途径中的初始限速反应。据报道,它们是参与植物生长和生物/非生物胁迫反应等各种生理功能的转录调节剂。尽管大多数豆科植物的基因组已经完全测序并可用,但对豆科植物中 MIPS 家族成员的全面研究仍在进行中。

结果

我们在十种豆科植物中发现了 24 个 MIPS 基因:花生、鹰嘴豆、绿豆、大豆、豇豆、紫花苜蓿、豌豆、菜豆、三叶草和豇豆。每种植物中发现的 MIPS 基因数量从两个到三个不等。根据与拟南芥基因的进化关系,MIPS 基因分为五个分支。内含子/外显子的结构模式和每个基因中保守的蛋白质基序高度具有种特异性。在豆科植物中,MIPS 基因在其基因组中分布不均匀。对基因组和基因序列的比较表明,该家族受到纯化选择的影响,并且 MIPS 家族在豆科植物中的基因扩张主要是由片段重复引起的。通过定量 PCR,研究了各种豆科植物营养组织中 MIPS 对各种非生物胁迫的表达模式。表达模式表明,MIPS 基因控制各种器官的发育和分化,并且对盐度和干旱胁迫有显著响应。

结论

鉴定、表征了豆科植物基因组中的 MIPS 基因,并分析了它们的表达。这些发现为理解它们的分子功能和进化铺平了道路,并确定了与不同细胞和组织发育相关的假定 MIPS 基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cf4/10804463/310fcf093dc0/12864_2023_9937_Fig1_HTML.jpg

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