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来自水稻白尖线虫的两个糖苷水解酶家族16基因的特征及功能重要性

Characterization and Functional Importance of Two Glycoside Hydrolase Family 16 Genes from the Rice White Tip Nematode .

作者信息

Feng Hui, Zhou Dongmei, Daly Paul, Wang Xiaoyu, Wei Lihui

机构信息

Institute of Plant Protection, Jiangsu Academy of Agricultural Sciences, 210014 Nanjing, China.

出版信息

Animals (Basel). 2021 Feb 2;11(2):374. doi: 10.3390/ani11020374.

Abstract

The glycoside hydrolase family 16 (GH16) is widely found in prokaryotes and eukaryotes, and hydrolyzes the β-1,3(4)-linkages in polysaccharides. Notably, the rice white tip nematode harbors a higher number of GH16s compared with other plant-parasitic nematodes. In this work, two GH16 genes, namely AbGH16-1 and AbGH16-2, were isolated and characterized from . The deduced amino acid sequences of AbGH16-1 and AbGH16-2 contained an N-terminal signal peptide and a fungal Lam16A glucanase domain. Phylogenetic analysis revealed that AbGH16-1 and AbGH16-2 clustered with ascomycete GH16s, suggesting AbGH16-1 and AbGH16-2 were acquired by horizontal gene transfer from fungi. In situ hybridization showed that both AbGH16-1 and AbGH16-2 were specifically expressed in the nematode gonads, correlating with qPCR analysis that showed the high transcript levels of the two genes in the female nematodes. AbGH16-1 and AbGH16-2 were also significantly induced in nematodes feeding on . Characterization of the recombinant protein showed AbGH16-1 and AbGH16-2 displayed pronounced inhibition of both conidial germination and germ tube elongation of . In addition, silencing of AbGH16-1 and AbGH16-2 by RNA interference significantly decreased the reproduction ability of and had a profound impact on the development process of offspring in this nematode. These findings have firstly proved that GH16s may play important roles in feeding and reproduction on fungi, which thus provides novel insights into the function of GH16s in plant-parasitic nematodes.

摘要

糖苷水解酶家族16(GH16)广泛存在于原核生物和真核生物中,可水解多糖中的β-1,3(4)-糖苷键。值得注意的是,与其他植物寄生线虫相比,水稻白尖线虫含有更多数量的GH16。在本研究中,从……中分离并鉴定了两个GH16基因,即AbGH16-1和AbGH16-2。AbGH16-1和AbGH16-2推导的氨基酸序列包含一个N端信号肽和一个真菌Lam16A葡聚糖酶结构域。系统发育分析表明,AbGH16-1和AbGH16-2与子囊菌GH16聚在一起,表明AbGH16-1和AbGH16-2是通过水平基因转移从真菌中获得的。原位杂交显示,AbGH16-1和AbGH16-2均在线虫性腺中特异性表达,这与qPCR分析结果一致,qPCR分析表明这两个基因在雌虫中具有高转录水平。在用……取食的线虫中,AbGH16-1和AbGH16-2也被显著诱导。重组蛋白的特性表明,AbGH16-1和AbGH16-2对……的分生孢子萌发和芽管伸长均表现出明显的抑制作用。此外,通过RNA干扰使AbGH16-1和AbGH16-2沉默显著降低了……的繁殖能力,并对该线虫后代的发育过程产生了深远影响。这些发现首次证明,GH16可能在……取食真菌和繁殖过程中发挥重要作用,从而为GH16在植物寄生线虫中的功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/085e/7913077/8844a42e07e9/animals-11-00374-g001.jpg

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