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首页> 外文期刊>Frontiers in Plant Science >Global Transcriptional Analysis Reveals the Complex Relationship between Tea Quality, Leaf Senescence and the Responses to Cold-Drought Combined Stress in Camellia sinensis
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Global Transcriptional Analysis Reveals the Complex Relationship between Tea Quality, Leaf Senescence and the Responses to Cold-Drought Combined Stress in Camellia sinensis

机译:全球转录分析揭示了茶质质量,叶片衰老与冷干胁迫的反应之间的复杂关系 Camellia Sinensis

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In field conditions, especially in arid and semi-arid areas, tea plants are often simultaneously exposed to various abiotic stresses such as cold and drought, which have profound effects on leaf senescence process and tea quality. However, most studies of gene expression in stress responses focus on a single inciting agent, and the confounding effect of multiple stresses on crop quality and leaf senescence remain unearthed. Here, global transcriptome profiles of tea leaves under separately cold and drought stress were compared with their combination using RNA-Seq technology. This revealed that tea plants shared a large overlap in unigenes displayed “similar” (26%) expression pattern and avoid antagonistic responses (lowest level of “prioritized” mode: 0%) to exhibit very congruent responses to co-occurring cold and drought stress; 31.5% differential expressed genes and 38% of the transcriptome changes in response to combined stresses were unpredictable from cold or drought single-case studies. We also identified 319 candidate genes for enhancing plant resistance to combined stress. We then investigated the combined effect of cold and drought on tea quality and leaf senescence. Our results showed that drought-induced leaf senescence were severely delayed by (i) modulation of a number of senescence-associated genes and cold responsive genes, (ii) enhancement of antioxidant capacity, (iii) attenuation of lipid degradation, (iv) maintenance of cell wall and photosynthetic system, (v) alteration of senescence-induced sugar effect/sensitivity, as well as (vi) regulation of secondary metabolism pathways that significantly influence the quality of tea during combined stress. Therefore, care should be taken when utilizing a set of stresses to try and maximize leaf longevity and tea quality.
机译:在现场条件下,特别是在干旱和半干旱地区,茶叶植物通常同时暴露于寒冷和干旱等各种非生物胁迫,这对叶片衰老过程和茶品质具有深远的影响。然而,大多数对应激反应中基因表达的研究重点关注单一煽动剂,并且多次应力对作物质量和叶片衰老的混淆效应仍然出土。在这里,使用RNA-SEQ技术将单独冷和干旱胁迫下的茶叶的全局转录组谱进行比较。这揭示茶叶植物在unigenes中分享了大幅重叠“相似”(26%)表达模式,避免拮抗反应(最低水平的“优先级”模式:0%),以表现出对共同发生的寒冷和干旱胁迫的影响非常重要; 31.5%的差异表达基因和38%的转录组随着组合应力的变化是不可预测的,来自寒冷或干旱的单案研究。我们还确定了319个候选基因,用于提高植物抵抗力胁迫。然后,我们调查了冷和干旱对茶质和叶片衰老的综合影响。我们的研究结果表明,(i)调节多种衰老相关基因和冷响应基因的调节,(ii)增强抗氧化能力,(iii)脂质降解,(iv)维持的衰减细胞壁和光合体系,(v)改变衰老诱导的糖效应/敏感性,以及(VI)调节次级代谢途径,显着影响茶叶术后茶度的质量。因此,应在利用一组压力尝试和最大化叶子寿命和茶度质量时进行护理。

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