Improving grape fruit quality through soil conditioner: Insights from RNA-seq analysis of Cabernet Sauvignon roots.

IF 1.7 4区 生物学 Q3 BIOLOGY Open Life Sciences Pub Date : 2024-05-07 eCollection Date: 2024-01-01 DOI:10.1515/biol-2022-0864
Peng Jiang, Xiaojing Wang, Rui Wang
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Abstract

The application of fertilizers and soil quality are crucial for grape fruit quality. However, the molecular data linking different fertilizer (or soil conditioner [SC]) treatments with grape fruit quality is still lacking. In this study, we investigated three soil treatments, namely inorganic fertilizer (NPK, 343.5 kg/hm2 urea [N ≥ 46%]; 166.5 kg/hm2 P2O5 [P2O5 ≥ 64%]; 318 kg/hm2 K2O [K2O ≥ 50%]), organic fertilizer (Org, 9 t/hm2 [organic matter content ≥ 35%, N + P2O5 + K2O ≥ 13%]), and SC (SC, 3 t/hm2 [humic acid ≥ 38.5%; C, 56.1%; H, 3.7%; N, 1.5%; O, 38%; S, 0.6%]), on 4-year-old Cabernet Sauvignon grapevines. Compared with the NPK- and Org-treated groups, the SC significantly improved the levels of soluble solids, tannins, anthocyanins, and total phenols in the grape berries, which are important biochemical indicators that affect wine quality. Furthermore, we conducted RNA-seq analysis on the grapevine roots from each of the three treatments and used weighted gene co-expression network analysis to identify five hub genes that were associated with the biochemical indicators of the grape berries. Furthermore, we validated the expression levels of three hub genes (ERF, JP, and SF3B) and five selected genes related to anthocyanin biosynthesis (UFGT1, UFGT2, UFGT3, GST, and AT) by using quantitative reverse transcription-polymerase chain reaction. Compared to the NPK and Org treatment groups, the SC treatment resulted in a significant increase in the transcription levels of three hub genes as well as VvUFGT1, VvUFGT3, VvGST, and VvAT. These results suggest that the SC can improve grape fruit quality by altering gene transcription patterns in grapevine roots and further influence the biochemical indices of grape fruits, particularly anthocyanin content. This study reveals that the application of SC can serve as an important measure for enhancing vineyard SC and elevating grape quality.

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通过土壤改良剂提高葡萄果实质量:赤霞珠根部 RNA 序列分析的启示。
施肥和土壤质量对葡萄果实的质量至关重要。然而,目前仍缺乏将不同肥料(或土壤改良剂 [SC])处理与葡萄果实品质联系起来的分子数据。本研究调查了三种土壤处理,即无机肥(氮磷钾,343.5 kg/hm2 尿素[N≥46%];166.5 kg/hm2 P2O5 [P2O5 ≥ 64%]; 318 kg/hm2 K2O [K2O ≥ 50%] )、有机肥(Org,9 t/hm2 [有机质含量≥ 35%, N + P2O5 + K2O ≥ 13%] )和 SC(SC,3 t/hm2 [腐殖酸≥ 38.5%;C,56.1%;H,3.7%;N,1.5%;O,38%;S,0.6%])。与 NPK 和 Org 处理组相比,SC 显著提高了葡萄果实中可溶性固形物、单宁、花青素和总酚的含量,而这些都是影响葡萄酒品质的重要生化指标。此外,我们还对三个处理的葡萄根系进行了 RNA-seq 分析,并利用加权基因共表达网络分析确定了与葡萄浆果生化指标相关的五个中心基因。此外,我们还利用定量反转录聚合酶链反应验证了三个中心基因(ERF、JP和SF3B)和五个选定的与花青素生物合成相关的基因(UFGT1、UFGT2、UFGT3、GST和AT)的表达水平。与 NPK 和 Org 处理组相比,SC 处理显著提高了三个枢纽基因以及 VvUFGT1、VvUFGT3、VvGST 和 VvAT 的转录水平。这些结果表明,SC 可以通过改变葡萄根系的基因转录模式来提高葡萄果实的品质,并进一步影响葡萄果实的生化指标,尤其是花青素含量。这项研究表明,施用SC可以作为提高葡萄园SC和提升葡萄品质的重要措施。
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来源期刊
CiteScore
2.50
自引率
4.50%
发文量
131
审稿时长
43 weeks
期刊介绍: Open Life Sciences (previously Central European Journal of Biology) is a fast growing peer-reviewed journal, devoted to scholarly research in all areas of life sciences, such as molecular biology, plant science, biotechnology, cell biology, biochemistry, biophysics, microbiology and virology, ecology, differentiation and development, genetics and many others. Open Life Sciences assures top quality of published data through critical peer review and editorial involvement throughout the whole publication process. Thanks to the Open Access model of publishing, it also offers unrestricted access to published articles for all users.
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