GST family genes in jujube actively respond to phytoplasma infection

IF 5.7 1区 农林科学 Q1 HORTICULTURE
Qipeng Wang , Liman Zhang , Chaoling Xue , Yao Zhang , Xiangrui Meng , Zhiguo Liu , Mengjun Liu , Jin Zhao
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Abstract

Jujube witches’ broom (JWB) caused by phytoplasma has a severely negative effect on multiple metabolisms in jujube. The GST gene family in plants participates in the regulation of a variety of biotic and abiotic stresses. This study aims to identify and reveal the changes in the jujube GST gene family in response to phytoplasma infection. Here, 70 ZjGSTs were identified in the jujube genome and divided into 8 classes. Among them, the Tau-class, including 44 genes, was the largest. Phylogenetic analysis indicated that Tau-class genes were highly conserved among species, such as Arabidopsis, cotton, chickpea, and rice. Through chromosome location analysis, 37.1% of genes were clustered, and 8 of 9 gene clusters were composed of Tau class members. Through RT-PCR, qRT-PCR and enzyme activity detection, the results showed that the expression of half (20/40) of the tested ZjGSTs was inhibited by phytoplasma infection in field and tissue culture conditions, and GST activity was also significantly reduced. In the resistant and susceptible varieties under phytoplasma infection, ZjGSTU49-ZjGSTU54 in the cluster Ⅳ showed opposite expression patterns, which may be due to functional divergence during evolution. Some upregulated genes (ZjGSTU45, ZjGSTU49, ZjGSTU59, and ZjGSTU70) might be involved in the process of jujube against JWB. The yeast two-hybrid results showed that all 6 Tau-class proteins tested could form homodimers or heterodimers. Overall, the comprehensive analysis of the jujube GST gene family revealed that ZjGSTs responded actively to phytoplasma infection. Furthermore, some screened genes (ZjGSTU24, ZjGSTU49-52, ZjGSTU70, and ZjDHAR10) will contribute to further functional studies of jujube-phytoplasma interactions.

红枣中的 GST 家族基因对植原体感染做出积极反应
由植原体引起的大枣巫婆帚病(JWB)对大枣的多种代谢产生了严重的负面影响。植物中的 GST 基因家族参与多种生物和非生物胁迫的调控。本研究旨在鉴定和揭示大枣 GST 基因家族对植原体感染的响应变化。本研究在红枣基因组中鉴定了 70 个 ZjGST,并将其分为 8 类。其中,包括 44 个基因的 Tau 类是最大的一类。系统发育分析表明,Tau类基因在拟南芥、棉花、鹰嘴豆和水稻等物种间高度保守。通过染色体位置分析,37.1%的基因被聚类,9个基因簇中有8个由Tau类成员组成。通过 RT-PCR、qRT-PCR 和酶活性检测,结果表明在田间和组织培养条件下,半数(20/40)受测 ZjGSTs 的表达受到植原体感染的抑制,GST 活性也显著降低。在植原体感染下的抗病品种和感病品种中,簇Ⅳ中的 ZjGSTU49-ZjGSTU54 表现出相反的表达模式,这可能是由于进化过程中的功能分化所致。一些上调基因(ZjGSTU45、ZjGSTU49、ZjGSTU59 和 ZjGSTU70)可能参与了大枣抗 JWB 的过程。酵母双杂交结果表明,所检测的 6 个 Tau 类蛋白质均可形成同源或异源二聚体。总之,对红枣 GST 基因家族的全面分析表明,ZjGSTs 对植原体感染有积极的反应。此外,筛选出的一些基因(ZjGSTU24、ZjGSTU49-52、ZjGSTU70 和 ZjDHAR10)将有助于进一步开展红枣与植原体相互作用的功能研究。
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来源期刊
Horticultural Plant Journal
Horticultural Plant Journal Environmental Science-Ecology
CiteScore
9.60
自引率
14.00%
发文量
293
审稿时长
33 weeks
期刊介绍: Horticultural Plant Journal (HPJ) is an OPEN ACCESS international journal. HPJ publishes research related to all horticultural plants, including fruits, vegetables, ornamental plants, tea plants, and medicinal plants, etc. The journal covers all aspects of horticultural crop sciences, including germplasm resources, genetics and breeding, tillage and cultivation, physiology and biochemistry, ecology, genomics, biotechnology, plant protection, postharvest processing, etc. Article types include Original research papers, Reviews, and Short communications.
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