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三个涉及乳椰子胚乳中半乳甘露聚糖降解的 α-半乳糖苷酶基因的新突变。

Three novel mutations in α-galactosidase gene involving in galactomannan degradation in endosperm of curd coconut.

机构信息

Department of Bio-Engineering, Faculty of Engineering, Royal University of Phnom Penh, Phnom Penh, 12101, Cambodia.

Department of Biochemistry, Faculty of Science, Mahidol University, Bangkok, 10400, Thailand.

出版信息

Phytochemistry. 2018 Dec;156:33-42. doi: 10.1016/j.phytochem.2018.08.015. Epub 2018 Aug 30.

Abstract

The deficiency of α-galactosidase activity in coconut endosperm has been reported to cause a disability to hydrolyze oligogalactomannan in endosperm resulting in curd coconut phenotype. However, neither the α-galactosidase encoding gene in coconut nor the mutation type has been identified and characterized in normal and curd coconuts. In this study, cDNA and genomic DNA encoding α-galactosidase gene alleles from a normal and two curd coconuts were successfully cloned and characterized. The deduced amino acid of wild type α-galactosidase contains 398 amino acid residues with a 17 N-terminal amino acids signal peptide sequence. Three mutant alleles, the first 19-amino acids from 67 to 85 (ADALVSTGLARLGYQYVNL) deletion with S137R and the second R216T, were identified from curd coconut plant no.1 while the third P250R was identified from curd coconut plant no. 10. All mutations of α-galactosidase gene were confirmed by the analysis of parental genomic DNA from normal and curd coconuts. Heterologous expression in Komagataella phaffii (Pichia pastoris) indicated that recombinant P250R, R216T and 19-amino acids deletion-S137R mutant proteins showed no α-galactosidase activity. Only the recombinant wild-type protein was able to detect for α-galactosidase activity. These results are in accordance with the no detection of α-galactosidase activity in developing curd coconut endosperms by tissue staining. While, the accumulation of enzyme activity was present in the solid endosperm of normal coconut. The full-length cDNA and parental genomic DNA sequences encoding α-galactosidase in normal coconut as well as identified curd coconut mutant alleles are reported in Genbank accession no. KJ957156 and KM001681-3. Transcription level of the α-galactosidase gene in mature curd coconut endosperm was at least 20 times higher than normal. In conclusion, absence of α-galactosidase activity caused by gene mutations associates with an accumulation of oligogalactomannan in endosperms, resulting in curd coconut phenotype.

摘要

椰肉中α-半乳糖苷酶活性的缺乏被报道会导致无法水解胚乳中的低聚半乳糖甘露聚糖,从而导致畸形椰子的出现。然而,在正常椰子和畸形椰子中,尚未鉴定和表征椰子中α-半乳糖苷酶的编码基因及其突变类型。在本研究中,成功地从一个正常椰子和两个畸形椰子中克隆和表征了编码α-半乳糖苷酶基因等位基因的 cDNA 和基因组 DNA。野生型α-半乳糖苷酶的推导氨基酸含有 398 个氨基酸残基和 17 个 N-末端氨基酸信号肽序列。从畸形椰子植株 1 中鉴定到三个突变等位基因,第 67 位到第 85 位(ADALVSTGLARLGYQYVNL)缺失 19 个氨基酸,同时伴有 S137R 突变,以及第 216 位 R216T 突变,从畸形椰子植株 10 中鉴定到第三个 P250R 突变。通过对正常椰子和畸形椰子的亲本基因组 DNA 的分析,证实了α-半乳糖苷酶基因的所有突变。在 Komagataella phaffii(毕赤酵母)中的异源表达表明,重组 P250R、R216T 和 19 个氨基酸缺失-S137R 突变蛋白均没有α-半乳糖苷酶活性。只有重组野生型蛋白才能检测到α-半乳糖苷酶活性。这些结果与组织染色法检测到畸形椰子胚乳中未检测到α-半乳糖苷酶活性的结果一致。而在正常椰子的固体胚乳中则存在酶活性的积累。在 Genbank 登录号 KJ957156 和 KM001681-3 中报告了正常椰子中编码α-半乳糖苷酶的全长 cDNA 和亲本基因组 DNA 序列以及鉴定出的畸形椰子突变等位基因。成熟畸形椰子胚乳中α-半乳糖苷酶基因的转录水平至少比正常椰子高 20 倍。综上所述,基因突变导致的α-半乳糖苷酶活性缺失与胚乳中低聚半乳糖甘露聚糖的积累有关,从而导致畸形椰子的出现。

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