整合分析为虎坚果(Cyperus esculentus L.) LEA_5结构域蛋白编码基因提供了新的见解。

IF 4 2区 生物学 Q1 PLANT SCIENCES
Zhi Zou, Xiaowen Fu, Xiaoping Yi, Chunqiang Li, Jiaquan Huang, Yongguo Zhao
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引用次数: 0

摘要

含有LEA_5结构域的蛋白质构成了一个小的晚期胚胎发生蛋白家族,这些蛋白丰富,对种子的干燥耐受性和休眠至关重要。然而,它们在地下块茎等非种子储存器官中的作用在很大程度上是未知的。本研究首次对虎坚果(Cyperus esculentus L.) LEA_5家族进行了基因组规模的分析,虎坚果是一种产耐干燥块茎的苏科植物。从虎坚果基因组中发现的4个LEA_5基因是模式植物拟南芥和水稻中存在的2个LEA_5基因的2倍。通过对34种代表性植物的86个成员的比较,揭示了包括苏科植物在内的Poales植物的单基因起源和谱系特异性家族进化。cela5基因属于本研究鉴定的5个正畸群中的4个,即LEA5a、LEA5b、LEA5c和LEA5d。LEA5e只对菊科植物具有特异性,而LEA5b和LEA5d似乎是波勒特有的,LEA5c仅限于苏科和菊科植物。虽然没有发现CeLEA5基因之间的共系关系,但比较基因组学分析表明,LEA5b和LEA5c更可能是由LEA5a通过全基因组复制产生的。此外,局部重复,特别是串联重复,也在本研究中发现的菊科植物中起着家族扩展的作用。LEA_5基因的结构变异(如片段插入)和表达差异也被观察到。LEA_5基因在拟南芥(a.thaliana)、玉米(O. sativa)和玉米(Zea mayays)中优先在种子/胚胎中表达,而CeLEA5基因在块茎中主要表达,在块茎成熟过程中表现出种子干燥样积累。此外,CeLEA5同源基因在圆圆藤块茎发育的各个阶段均表现出较弱的表达,这可能解释了这两个近缘种块茎耐干燥性的差异。这些发现突出了LEA_5家族的谱系特异性进化,为进一步分析老虎和其他物种的功能和遗传改良提供了便利。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrative Analysis Provides Insights into Genes Encoding LEA_5 Domain-Containing Proteins in Tigernut (Cyperus esculentus L.).

LEA_5 domain-containing proteins constitute a small family of late embryogenesis-abundant proteins that are essential for seed desiccation tolerance and dormancy. However, their roles in non-seed storage organs such as underground tubers are largely unknown. This study presents the first genome-scale analysis of the LEA_5 family in tigernut (Cyperus esculentus L.), a Cyperaceae plant producing desiccation-tolerant tubers. Four LEA_5 genes identified from the tigernut genome are twice of two present in model plants Arabidopsis thaliana and Oryza sativa. A comparison of 86 members from 34 representative plant species revealed the monogenic origin and lineage-specific family evolution in Poales, which includes the Cyperaceae family. CeLEA5 genes belong to four out of five orthogroups identified in this study, i.e., LEA5a, LEA5b, LEA5c, and LEA5d. Whereas LEA5e is specific to eudicots, LEA5b and LEA5d appear to be Poales-specific and LEA5c is confined to families Cyperaceae and Juncaceae. Though no syntenic relationship was observed between CeLEA5 genes, comparative genomics analyses indicated that LEA5b and LEA5c are more likely to arise from LEA5a via whole-genome duplication. Additionally, local duplication, especially tandem duplication, also played a role in the family expansion in Juncus effuses, Joinvillea ascendens, and most Poaceae plants examined in this study. Structural variation (e.g., fragment insertion) and expression divergence of LEA_5 genes were also observed. Whereas LEA_5 genes in A. thaliana, O. sativa, and Zea mays were shown to be preferentially expressed in seeds/embryos, CeLEA5 genes have evolved to be predominantly expressed in tubers, exhibiting seed desiccation-like accumulation during tuber maturation. Moreover, CeLEA5 orthologs in C. rotundus showed weak expression in various stages of tuber development, which may explain the difference in tuber desiccation tolerance between these two close species. These findings highlight the lineage-specific evolution of the LEA_5 family, which facilitates further functional analysis and genetic improvement in tigernut and other species.

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来源期刊
Plants-Basel
Plants-Basel Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.50
自引率
11.10%
发文量
2923
审稿时长
15.4 days
期刊介绍: Plants (ISSN 2223-7747), is an international and multidisciplinary scientific open access journal that covers all key areas of plant science. It publishes review articles, regular research articles, communications, and short notes in the fields of structural, functional and experimental botany. In addition to fundamental disciplines such as morphology, systematics, physiology and ecology of plants, the journal welcomes all types of articles in the field of applied plant science.
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