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穗轴中的表达分析表明,出现浆果皱缩症状的葡萄果穗存在主要细胞壁修饰。

Expression Analyses in the Rachis Hint towards Major Cell Wall Modifications in Grape Clusters Showing Berry Shrivel Symptoms.

作者信息

Savoi Stefania, Supapvanich Suriyan, Hildebrand Heinrich, Stralis-Pavese Nancy, Forneck Astrid, Kreil David P, Griesser Michaela

机构信息

Department of Agricultural, Forest and Food Sciences, University of Turin, 10095 Grugliasco, Italy.

Department of Agricultural Education, School of Industrial Education and Technology, King Mongkut's Institute of Technology Ladkrabang, 1 Chalongkrung Road, Ladkrabang, Bangkok 10520, Thailand.

出版信息

Plants (Basel). 2022 Aug 19;11(16):2159. doi: 10.3390/plants11162159.

Abstract

Berry shrivel (BS) is one of the prominent and still unresolved ripening physiological disorders in grapevine. The causes of BS are unclear, and previous studies focused on the berry metabolism or histological studies, including cell viability staining in the rachis and berries of BS clusters. Herein, we studied the transcriptional modulation induced by BS in the rachis of pre-symptomatic and symptomatic clusters with a custom-made microarray qPCR in relation to a previous RNASeq study of BS berries. Gene set analysis of transcript expression in symptomatic rachis tissue determined suppression of cell wall biosynthesis, which could also be confirmed already in pre-symptomatic BS rachis by CESA8 qPCR analyses, while in BS berries, a high number of SWITCH genes were suppressed at veraison. Additionally, genes associated with the cell wall were differently affected by BS in berries. A high percentage of hydrolytic enzymes were induced in BS grapes in rachis and berries, while other groups such as, e.g., xyloglucan endotransglucosylase/hydrolase, were suppressed in BS rachis. In conclusion, we propose that modulated cell wall biosynthesis and cell wall assembly in pre-symptomatic BS rachis have potential consequences for cell wall strength and lead to a forced degradation of cell walls in symptomatic grape clusters. The similarity to sugar starvation transcriptional profiles provides a link to BS berries, which are low in sugar accumulation. However, further studies remain necessary to investigate the temporal and spatial coordination in both tissues.

摘要

浆果皱缩(BS)是葡萄中突出且尚未解决的成熟生理病害之一。BS的病因尚不清楚,先前的研究集中在浆果代谢或组织学研究上,包括对BS果穗的穗轴和浆果进行细胞活力染色。在此,我们通过定制的微阵列qPCR研究了在症状出现前和出现症状的果穗穗轴中由BS诱导的转录调控,这与之前对BS浆果的RNA测序研究相关。对症状出现的穗轴组织中基因表达的基因集分析确定了细胞壁生物合成受到抑制,这在症状出现前的BS穗轴中通过CESA8 qPCR分析也已得到证实,而在BS浆果中,大量的SWITCH基因在转色期受到抑制。此外,与细胞壁相关的基因在浆果中受BS的影响也有所不同。在BS葡萄的穗轴和浆果中,高比例的水解酶被诱导,而其他组,如木葡聚糖内转糖基酶/水解酶,在BS穗轴中受到抑制。总之,我们提出在症状出现前的BS穗轴中,细胞壁生物合成和细胞壁组装的调节对细胞壁强度有潜在影响,并导致症状出现的葡萄果穗中细胞壁的强制降解。与糖饥饿转录谱的相似性为BS浆果提供了一个联系,BS浆果的糖分积累较低。然而,仍有必要进行进一步研究以探究这两个组织中的时间和空间协调性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44e8/9413262/ec35681889b2/plants-11-02159-g001.jpg

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