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甘蔗中转化酶基因家族的分子克隆、结构、系统发育及表达分析

Molecular cloning, structure, phylogeny and expression analysis of the invertase gene family in sugarcane.

作者信息

Wang Liming, Zheng Yuexia, Ding Shihui, Zhang Qing, Chen Youqiang, Zhang Jisen

机构信息

Center for Genomics and Biotechnology, Fujian Provincial Key Laboratory of Haixia Applied Plant Systems Biology, Haixia Institute of Science and Technology (HIST), Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

College of Life Science, Fujian Agriculture and Forestry University, Fuzhou, 35002, China.

出版信息

BMC Plant Biol. 2017 Jun 23;17(1):109. doi: 10.1186/s12870-017-1052-0.

Abstract

BACKGROUND

Invertases (INVs) are key enzymes regulating sucrose metabolism and are here revealed to be involved in responses to environmental stress in plants. To date, individual members of the invertase gene family and their expression patterns are unknown in sugarcane due to its complex genome despite their significance in sucrose metabolism.

RESULTS

In this study, based on comparative genomics, eleven cDNA and twelve DNA sequences belonging to 14 non-redundant members of the invertase gene family were successfully cloned from sugarcane. A comprehensive analysis of the invertase gene family was carried out, including gene structures, phylogenetic relationships, functional domains, conserved motifs of proteins. The results revealed that the 14 invertase members from sugarcane could be clustered into three subfamilies, including 6 neutral/alkaline invertases (ShN/AINVs), and 8 acid invertases (ShAINVs). Faster divergence occurred in acid INVs than in neutral/alkaline INVs after the split of sugarcane and sorghum. At least a one-time gene duplication event was observed to have occurred in the four groups of acid INVs, whereas ShN/AINV1 and ShN/AINV2 in the β8 lineage were revealed to be the most recently duplicated genes among their paralogous genes in the β group of N/AINVs. Furthermore, comprehensive expression analysis of these genes was performed in sugarcane seedlings subjected to five abiotic stresses (drought, low temperature, glucose, fructose, and sucrose) using Quantitative Real-time PCR. The results suggested a functional divergence of INVs and their potential role in response to the five different treatments. Enzymatic activity in sugarcane seedlings was detected under five abiotic stresses treatments, and showed that the activities of all INVs were significantly inhibited in response to five different abiotic stresses, and that the neutral/alkaline INVs played a more prominent role in abiotic stresses than the acid INVs.

CONCLUSIONS

In this study, we determined the INV gene family members of sugarcane by PCR cloning using sorghum as a reference, providing the first study of the INV gene family in sugarcane. Combining existing INV gene data from 7 plants with a comparative approach including a series of comprehensive analyses to isolate and identify INV gene family members proved to be highly successful. Moreover, the expression levels of INV genes and the variation of enzymatic activities associated with drought, low temperature, glucose, fructose, and sucrose are reported in sugarcane for the first time. The results offered useful foundation and framework for future research for understanding the physiological roles of INVs for sucrose accumulation in sugarcane.

摘要

背景

转化酶(INVs)是调节蔗糖代谢的关键酶,现已发现其参与植物对环境胁迫的响应。由于甘蔗基因组复杂,尽管其在蔗糖代谢中具有重要意义,但迄今为止,甘蔗中转化酶基因家族的各个成员及其表达模式仍不清楚。

结果

在本研究中,基于比较基因组学,成功从甘蔗中克隆出属于转化酶基因家族14个非冗余成员的11个cDNA和12个DNA序列。对转化酶基因家族进行了全面分析,包括基因结构、系统发育关系、功能域、蛋白质保守基序。结果表明,甘蔗中的14个转化酶成员可分为三个亚家族,包括6个中性/碱性转化酶(ShN/AINVs)和8个酸性转化酶(ShAINVs)。甘蔗和高粱分化后,酸性INVs的分化速度比中性/碱性INVs快。在四组酸性INVs中至少观察到一次基因复制事件,而β8谱系中的ShN/AINV1和ShN/AINV2被发现是其在N/AINVs的β组同源基因中最近复制的基因。此外,使用实时定量PCR对遭受五种非生物胁迫(干旱、低温、葡萄糖、果糖和蔗糖)的甘蔗幼苗中的这些基因进行了综合表达分析。结果表明INVs存在功能分化及其在应对五种不同处理中的潜在作用。在五种非生物胁迫处理下检测了甘蔗幼苗中的酶活性,结果表明所有INVs的活性在应对五种不同非生物胁迫时均受到显著抑制,并且中性/碱性INVs在非生物胁迫中比酸性INVs发挥更突出的作用。

结论

在本研究中,我们以高粱为参考通过PCR克隆确定了甘蔗的INV基因家族成员,这是对甘蔗INV基因家族的首次研究。将来自7种植物的现有INV基因数据与包括一系列综合分析在内的比较方法相结合,以分离和鉴定INV基因家族成员被证明是非常成功的。此外,首次报道了甘蔗中INV基因的表达水平以及与干旱、低温、葡萄糖、果糖和蔗糖相关的酶活性变化。这些结果为未来研究了解INVs在甘蔗蔗糖积累中的生理作用提供了有用的基础和框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af88/5481874/454e11d9e8b2/12870_2017_1052_Fig1_HTML.jpg

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