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棉属作物富含半胱氨酸受体样蛋白的全基因组研究

Genome wide study of cysteine rich receptor like proteins in Gossypium sp.

机构信息

Genomics Lab, School of Food and Agricultural Sciences (SFAS), University of Management and Technology (UMT), Lahore, 54000, Pakistan.

Department of Life Sciences, School of Science, University of Management and Technology (UMT), Lahore, 54000, Pakistan.

出版信息

Sci Rep. 2022 Mar 22;12(1):4885. doi: 10.1038/s41598-022-08943-1.

Abstract

Cysteine-rich receptor-like-kinases (CRKs), a transmembrane subfamily of receptor-like kinase, play crucial roles in plant adaptation. As such cotton is the major source of fiber for the textile industry, but environmental stresses are limiting its growth and production. Here, we have performed a deep computational analysis of CRKs in five Gossypium species, including G. arboreum (60 genes), G. raimondii (74 genes), G. herbaceum (65 genes), G. hirsutum (118 genes), and G. barbadense (120 genes). All identified CRKs were classified into 11 major classes and 43 subclasses with the finding of several novel CRK-associated domains including ALMT, FUSC_2, Cript, FYVE, and Pkinase. Of these, DUF26_DUF26_Pkinase_Tyr was common and had elevated expression under different biotic and abiotic stresses. Moreover, the 35 land plants comparison identified several new CRKs domain-architectures. Likewise, several SNPs and InDels were observed in CLCuD resistant G. hirsutum. The miRNA target side prediction and their expression profiling in different tissues predicted miR172 as a major CRK regulating miR. The expression profiling of CRKs identified multiple clusters with co-expression under certain stress conditions. The expression analysis under CLCuD highlighted the role of GhCRK057, GhCRK059, GhCRK058, and GhCRK081 in resistant accession. Overall, these results provided primary data for future potential functional analysis as well as a reference study for other agronomically important crops.

摘要

富含半胱氨酸的受体样激酶(CRKs)是受体样激酶的跨膜亚家族,在植物适应中发挥着至关重要的作用。棉花是纺织工业纤维的主要来源,但环境压力限制了其生长和生产。在这里,我们对五个棉属物种(包括亚洲棉(60 个基因)、雷蒙德氏棉(74 个基因)、草棉(65 个基因)、陆地棉(118 个基因)和海岛棉(120 个基因)中的 CRKs 进行了深入的计算分析。所有鉴定出的 CRKs 被分为 11 个主要类和 43 个亚类,发现了几个新的 CRK 相关结构域,包括 ALMT、FUSC_2、CRIP、FYVE 和 Pkinase。其中,DUF26_DUF26_Pkinase_Tyr 是常见的,在不同的生物和非生物胁迫下表达上调。此外,在 35 种陆地植物的比较中,发现了几个新的 CRK 结构域架构。同样,在抗 CLCuD 的陆地棉中观察到了几个 SNPs 和 InDels。miRNA 靶位侧预测及其在不同组织中的表达谱预测 miR172 是主要的 CRK 调节 miR。CRKs 的表达谱鉴定出多个在某些胁迫条件下具有共表达的簇。在 CLCuD 下的表达分析强调了 GhCRK057、GhCRK059、GhCRK058 和 GhCRK081 在抗性品种中的作用。总的来说,这些结果为未来的潜在功能分析提供了初步数据,并为其他农业上重要的作物提供了参考研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92fe/8941122/d1c9a7443574/41598_2022_8943_Fig1_HTML.jpg

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