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黑胡椒(Piper nigrum L.)的抗旱性:相关基因及其网络基因组资源的开发。

Drought responsiveness in black pepper (Piper nigrum L.): Genes associated and development of a web-genomic resource.

机构信息

Centre for Agricultural Bioinformatics, ICAR-Indian Agricultural Statistics Research Institute, New Delhi, India.

Division of Crop Improvement & Biotechnology, ICAR-Indian Institute of Spices Research, Kozhikode, India.

出版信息

Physiol Plant. 2021 Jun;172(2):669-683. doi: 10.1111/ppl.13308. Epub 2020 Dec 20.

Abstract

Black pepper (Piper nigrum L.; 2n = 52; Piperaceae), the king of spices, is a perennial, trailing woody flowering vine and has global importance with widespread dietary, medicinal, and preservative uses. It is an economically important germplasm cultivated for its fruit and the major cash crop in >30 tropical countries. Crop production is mainly affected by drought stress. The present study deals with the candidate gene identification from drought-affected black pepper leaf transcriptome generated by Illumina Hiseq2000. It also aims to mine putative molecular markers (namely SSRs, SNPs, and InDels) and generate primers for them. The identification of transcription factors and pathways involved in drought tolerance is also reported here. De novo transcriptome assembly was performed with trinity assembler. In total, 4914 differential expressed genes, 2110 transcriptional factors, 786 domains and 1137 families, 20,124 putative SSR markers, and 259,236 variants were identified. At2g30105 (unidentified gene containing leucine-rich repeats and ubiquitin-like domain), serine threonine protein kinase, Mitogen-activated protein kinase, Nucleotide Binding Site-Leucine Rich Repeat, Myeloblastosis-related proteins, basic helix-loop-helix are all found upregulated and are reported to be associated with plant tolerance against drought condition. All these information are catalogued in the Black Pepper Drought Transcriptome Database (BPDRTDb), freely accessible for academic use at http://webtom.cabgrid.res.in/bpdrtdb/. This database is a good foundation for the genetic improvement of pepper plants, breeding programmes, and mapping population of this crop. Putative markers can also be a reliable genomic resource to develop drought-tolerant variety for better black pepper productivity.

摘要

黑胡椒(Piper nigrum L.;2n=52;胡椒科),香料之王,是一种多年生、蔓生木质藤本植物,具有广泛的饮食、药用和防腐用途,具有全球重要性。它是一种经济上重要的种质资源,因其果实而被栽培,是 30 多个热带国家的主要经济作物。作物生产主要受干旱胁迫的影响。本研究涉及从 Illumina Hiseq2000 生成的受干旱影响的黑胡椒叶片转录组中鉴定候选基因。它还旨在挖掘假定的分子标记(即 SSR、SNP 和 InDel)并为其生成引物。这里还报告了参与耐旱性的转录因子和途径的鉴定。使用 trinity 组装器进行从头转录组组装。总共鉴定出 4914 个差异表达基因、2110 个转录因子、786 个结构域和 1137 个家族、20124 个假定的 SSR 标记和 259236 个变体。At2g30105(包含亮氨酸丰富重复和泛素样结构域的未鉴定基因)、丝氨酸苏氨酸蛋白激酶、丝裂原激活蛋白激酶、核苷酸结合位点亮氨酸丰富重复、髓样细胞瘤相关蛋白、碱性螺旋-环-螺旋都被发现上调,并被报道与植物耐旱性有关。所有这些信息都被编入黑胡椒干旱转录组数据库(BPDRTDb),可在 http://webtom.cabgrid.res.in/bpdrtdb/ 上免费供学术使用。该数据库为胡椒植物的遗传改良、育种计划和该作物的作图群体提供了良好的基础。假定的标记也可以成为开发耐旱品种的可靠基因组资源,以提高黑胡椒的生产力。

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