Tandemly duplicated Rubisco activase genes of cereals show differential evolution and response to heat stress.

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ragupathi Nagarajan, Kaviraj Singh Kahlon, Amita Mohan, Kulvinder S Gill
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引用次数: 0

Abstract

Heat stress affects various components of photosynthetic machinery of which Rubisco activation inhibition due to heat sensitive Rubisco activase (RCA) is the most prominent. Detailed comparison of RCA coding genes identified a tandem duplication event in the grass family lineage where the duplicated genes showed very different evolutionary pattern. One of the two genes showed high level of sequence conservation whereas the second copy, although present only 1.5 kb away, was highly variable among various plant species because of loss of introns, alternative splicing and loss of the last exon coding redox regulated C-terminal extension domain. Gene specific expression analysis, both at the transcription as well as the protein level, showed very different expression pattern of the two RCA copies. Expression of the highly conserved copy was higher under normal plant growing conditions that decreased many folds under heat stress with substantial genotypic variation, but the variable copy showed much higher expression under heat stress conditions across all grass species. The cultivated rice has only one functional gene as the second copy became nonfunctional due to multiple deletions but Oryza brachyantha and Oryza australiensis still have two functional Rca genes. Detailed analysis of the promoter region of the two copies among various plant species showed insertion of several transposable elements harboring heat responsive elements in the heat inducible copy of the gene. The conserved RCA copy of wheat didn't have any transposable insertions whereas in that of maize has one heat shock element and sorghum had two. It would be interesting to study if the higher level of heat stress tolerance observed in sorghum and maize is associated with the differences observed for RCA. Key message This manuscript is reporting a grass family-specific tandem duplication event in RCA genes of cereals. The duplicated copies underwent neo-functionalization to evolve novel function to deal with heat stress. One copy of the tandem duplication maintained a high level of conservation whereas the second copy showed tremendous divergence to evolve species specific function of the gene. Specific function to respond to heat stress likely evolved via the insertion of various heat responsive elements carried by transposable elements.

串联复制的Rubisco激活酶基因表现出对热胁迫的差异进化和响应。
热胁迫影响光合机制的各个组成部分,其中热敏性Rubisco激活酶(RCA)对Rubisco的激活抑制最为突出。通过对RCA编码基因的详细比较,确定了草家族谱系中存在串联重复事件,其中重复基因表现出非常不同的进化模式。其中一个基因表现出高度的序列保守性,而另一个拷贝虽然只有1.5 kb远,但由于内含子的丢失、选择性剪接和最后一个外显子编码氧化还原调节的c端扩展域的丢失,在不同的植物物种中具有高度的差异性。基因特异性表达分析,无论是在转录水平还是在蛋白水平,都显示了两个RCA拷贝的表达模式非常不同。在正常植物生长条件下,高度保守拷贝的表达量较高,在热胁迫条件下表达量降低了许多倍,且存在显著的基因型变异,但在热胁迫条件下,所有草种的可变拷贝的表达量都要高得多。栽培稻只有一个功能基因,第二个拷贝由于多次缺失而失去功能,但长叶稻和澳大利亚稻仍然有两个功能Rca基因。对不同植物中这两个拷贝的启动子区域的详细分析表明,在该基因的热诱导拷贝中插入了几个包含热响应元件的转座元件。小麦的RCA保守拷贝没有转座插入,而玉米的RCA保守拷贝有一个热休克元件,高粱有两个。如果在高粱和玉米中观察到的较高的耐热性水平与RCA观察到的差异有关,研究将是有趣的。这篇论文报道了谷类RCA基因的草家族特异性串联重复事件。这些复制的拷贝经历了新功能化,进化出新的功能来应对热应激。串联复制的一个拷贝保持了高度的保守性,而第二个拷贝则表现出巨大的分化,进化出了该基因的物种特异性功能。响应热应激的特定功能可能是通过插入由转座元件携带的各种热响应元件而进化的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Molecular Biology
Plant Molecular Biology 生物-生化与分子生物学
自引率
2.00%
发文量
95
审稿时长
1.4 months
期刊介绍: Plant Molecular Biology is an international journal dedicated to rapid publication of original research articles in all areas of plant biology.The Editorial Board welcomes full-length manuscripts that address important biological problems of broad interest, including research in comparative genomics, functional genomics, proteomics, bioinformatics, computational biology, biochemical and regulatory networks, and biotechnology. Because space in the journal is limited, however, preference is given to publication of results that provide significant new insights into biological problems and that advance the understanding of structure, function, mechanisms, or regulation. Authors must ensure that results are of high quality and that manuscripts are written for a broad plant science audience.
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