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调控葡萄酒石酸生物合成基因VvbHLH79克隆及表达

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[目的]酒石酸不仅影响葡萄果实的味道,还决定葡萄酒的色泽、口感、微生物稳定性和陈酿潜力.探讨调控酒石酸生物合成的转录因子及其机制,通过生物技术调控葡萄内源酒石酸的积累或定向培育高酒石酸积累型优良酿酒葡萄品种具有重要价值.[方法]研究以酿酒葡萄'琼瑶浆'、'马瑟兰'为试验材料,用PCR方法从中克隆到与酒石酸含量相关的VvbHLH79转录因子,对其进行生物信息学和亚细胞定位分析;用HPLC和qRT-PCR技术测定葡萄果实在不同发育时期的酒石酸含量和VvbHLH79的表达量;并构建植物表达载体,用农杆菌介导的果梗侵染法瞬时转化葡萄幼果果实之后检测VvbHLH79的表达量和酒石酸含量.[结果](1)通过RNA-seq测序筛选获得1个葡萄VvbHLH79基因,该基因CDS序列全长831 bp,编码277个氨基酸,分子质量为66.22 kD,理论等电点为5.15,属于无信号肽和跨膜结构的不稳定亲水性蛋白;氨基酸序列第147-232位含有bHLH-SF保守结构域,属于bHLH转录因子家族;亚细胞定位在细胞核.(2)葡萄VvbHLH79编码蛋白与河岸葡萄中的bHLH89编码蛋白(登录号:XP_034699340.1)序列一致性最高,达到99.64%.(3)VvbHLH79相对表达量随着'琼瑶浆'果实发育降低,从坐果期到成熟期降低了67.25%;酒石酸积累主要在葡萄果实转色之前,转色之后酒石酸含量就快速下降.(4)VvbHLH79在低酒石酸葡萄果实中瞬时过表达后使酒石酸含量显著升高,而将VvbHLH79在高酒石酸葡萄果实中沉默后酒石酸含量显著下降,证实VvbHLH79基因正向调控酒石酸含量.[结论]VvbHLH79转录因子可能在葡萄酒石酸生物合成通路中发挥作用.
Cloning and expression of the VvbHLH79 gene involved in grape tartaric acid biosynthesis
[Objective]Tartaric acid not only affects the taste of grape berries but also determines the color,texture,microbial stability,and aging potential of the wine.It is of great value to explore the transcrip-tion factors and mechanisms that regulate tartaric acid biosynthesis,regulate the accumulation of tartaric acid in grapes through biotechnology or to cultivate wine grape varieties with high tartaric acid accumula-tion.[Methods]In this study,using'Traminer'and'Marselan'wine grapes as experimental materials,we cloned the tartaric acid related transcription factor VvbHLH79 by PCR.We performed bioinformatic and subcellular localization analyses of VvbHLH79.Furthermore,we measured the tartaric acid content and VvbHLH79 expression levels in grape berries at different developmental stages using HPLC and qRT-PCR techniques.We also constructed a plant expression vector and the expression and tartaric acid content of VvbHLH79 were detected after transient transformation of young grape berries using Agrobacterium-mediated fruiting pedicle infection,in order to clarify the role of the VvbHLH79 gene in regulating the content of tartaric acid in grape berries.[Results](1)A grapevine VvbHLH79 gene was obtained by RNA-seq,with a CDS of 831 bp,amino acids of 277,molecular weight of 66.22 kD,and isoelectric point of 5.15.It belonged to the class of unstable hydrophilic proteins without signal peptides and transmem-brane structures.Positions 147-232 of amino acid sequence contained the bHLH-SF conserved domain,which belonged to the bHLH transcription factor family.The protein was localized in the cell nucleus.(2)The grapevine VvbHLH79-encoded protein had the highest sequence similarity with the bHLH89-encoded protein in riverbank grape(accession number:XP_034699340.1),with a sequence identity of 99.64%.(3)There was a gradual decrease of VvbHLH79 expression during the development of'Traminer'grape fruits,decreasing 67.25%from veraison to harvest.The accumulation of tartaric acids occurred mainly before color change of the grapes,with a rapid decrease after color change.(4)Transient expression of VvbHLH79 in low tartaric acid grapes resulted in a increase in tartaric acids,whereas silencing of VvbHLH79 in high tartaric acid grapes resulted in a decrease in tartaric acids,confirming that the VvbHLH79 gene positively regulated tartaric acid content.[Conclusion]The VvbHLH79 transcription factor may play a role in the tartaric acid biosynthesis in grape berries.

Vitis viniferaVvbHLH79transcription factorstartaric acidgene cloning

杨环齐、李梦涵、王明慧、苏静、邵建辉、马春花

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云南农业大学园林园艺学院,昆明 650000

云南农业大学云南省高校葡萄与葡萄酒工程技术研究中心,昆明 650000

葡萄 VvbHLH79 转录因子 酒石酸 基因克隆

国家自然科学基金项目国家自然科学基金项目云南省基础农业联合项目

3236073932160691202301BD070001-020

2024

西北植物学报
西北农林科技大学,陕西省植物学会

西北植物学报

CSTPCD北大核心
影响因子:1.031
ISSN:1000-4025
年,卷(期):2024.44(4)
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