棉花染色质组织变异和转录调控揭示的干旱响应

IF 4.4 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2024-05-20 DOI:10.1186/s12915-024-01906-0
Boyang Zhang, Yuexuan Long, Liuling Pei, Xianhui Huang, Baoqi Li, Bei Han, Mengmeng Zhang, Keith Lindsey, Xianlong Zhang, Maojun Wang, Xiyan Yang
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引用次数: 0

摘要

背景:棉花是世界上主要的经济作物,也是天然纤维、油脂和蛋白质的重要来源。干旱胁迫正成为影响棉花生产的制约因素。为了促进耐旱棉花品种的开发,有必要通过探索关键的抗旱基因及相关调控因子来研究干旱胁迫响应的分子机制:本研究选择了在干旱胁迫下表现出明显表型差异的两个棉花品种 ZY007(干旱敏感)和 ZY168(干旱耐受)。共鉴定出 25,898 个干旱诱导基因,这些基因在与植物胁迫响应相关的通路中表现出显著的富集。在干旱诱导下,在全基因组水平观察到 At 亚基因组表达偏倚,这可能是由于 Dt 亚基因组表达受到更强的抑制。研究发现了一个与抗旱性显著相关的基因共表达模块。约90%的拓扑关联域(TAD)边界是稳定的,在干旱条件下,两个品种之间共发现6613个TAD变异事件。我们在 ZY007 和 ZY168 中分别发现了 92 个和 98 个与染色质三维结构变异有关并受干旱胁迫诱导的基因。这些基因通过典型激素响应途径、激酶和磷酸酶活性调节、钙离子转运促进及其他相关分子机制与棉花对干旱胁迫的响应密切相关:这些结果为阐明棉花干旱响应的分子机制奠定了基础,并为未来抗旱棉花品种的分子育种提供了重要的调控位点和基因资源。
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Drought response revealed by chromatin organization variation and transcriptional regulation in cotton.

Background: Cotton is a major world cash crop and an important source of natural fiber, oil, and protein. Drought stress is becoming a restrictive factor affecting cotton production. To facilitate the development of drought-tolerant cotton varieties, it is necessary to study the molecular mechanism of drought stress response by exploring key drought-resistant genes and related regulatory factors.

Results: In this study, two cotton varieties, ZY007 (drought-sensitive) and ZY168 (drought-tolerant), showing obvious phenotypic differences under drought stress, were selected. A total of 25,898 drought-induced genes were identified, exhibiting significant enrichment in pathways related to plant stress responses. Under drought induction, At subgenome expression bias was observed at the whole-genome level, which may be due to stronger inhibition of Dt subgenome expression. A gene co-expression module that was significantly associated with drought resistance was identified. About 90% of topologically associating domain (TAD) boundaries were stable, and 6613 TAD variation events were identified between the two varieties under drought. We identified 92 genes in ZY007 and 98 in ZY168 related to chromatin 3D structural variation and induced by drought stress. These genes are closely linked to the cotton response to drought stress through canonical hormone-responsive pathways, modulation of kinase and phosphatase activities, facilitation of calcium ion transport, and other related molecular mechanisms.

Conclusions: These results lay a foundation for elucidating the molecular mechanism of the cotton drought response and provide important regulatory locus and gene resources for the future molecular breeding of drought-resistant cotton varieties.

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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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