榴莲全基因组抗性基因类似物(RGAs)的鉴定与鉴定。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Cris Q Cortaga, Romnick A Latina, Rosteo R Habunal, Darlon V Lantican
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引用次数: 10

摘要

背景:榴莲(Durio zibethinus L.)是一种热带水果作物,在东南亚很受欢迎,但最近在世界其他地区也越来越受欢迎。本研究通过挖掘现有的榴莲品种“猫山王”(PRJNA400310)的参考基因组,分析了榴莲的抗性基因类似物(RGAs)。结果:共鉴定出2586个RGAs,包括47个核苷酸结合位点蛋白(NBS)、158个富含NBS-亮氨酸重复序列蛋白(NL)、400个螺旋状NBS- lrr (CNL)、72个toll/白介素-1受体NBS- lrr (TNL)、54个螺旋状NBS (CN)、10个toll/白介素-1受体NBS (TN)、19个toll/白介素-1受体未知结构域(TX)、246个受体样蛋白(RLP)、1377个受体样激酶(RLK)、185个TM-CC和18个其他含有NBS结构域的蛋白。通过基因本体(GO)分析对这些RGAs进行了功能注释和表征。榴莲基因组中拷贝数最高的RGAs包括推定抗病蛋白rpp13样蛋白1、抗病蛋白At4g27190、抗病蛋白RPS6、可能抗病蛋白At4g27220和推定抗病蛋白RGA3,其中35个为新发现的RGAs。系统发育分析表明,基于区域分类,全基因组RGAs大致可分为四个主要分支。结论:这是对榴莲RGAs最全面的分析,为这一重要热带水果作物的遗传、农艺和其他生物学研究提供了宝贵的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Identification and characterization of genome-wide resistance gene analogs (RGAs) of durian (Durio zibethinus L.).

Identification and characterization of genome-wide resistance gene analogs (RGAs) of durian (Durio zibethinus L.).

Identification and characterization of genome-wide resistance gene analogs (RGAs) of durian (Durio zibethinus L.).

Identification and characterization of genome-wide resistance gene analogs (RGAs) of durian (Durio zibethinus L.).

Background: Durian (Durio zibethinus L.) is a tropical fruit crop which is popular in Southeast Asia but recently gaining popularity in other parts of the world. In this study, we analyzed the resistance gene analogs (RGAs) of durian through mining of the currently available reference genome of its 'Musang King' cultivar (PRJNA400310).

Results: A total of 2586 RGAs were identified in the durian genome consisting of 47 nucleotide binding site proteins (NBS), 158 NBS-leucine rich repeat proteins (NL), 400 coiled-coil NBS-LRR (CNL), 72 toll/interleukin-1 receptor NBS-LRR (TNL), 54 coiled-coil NBS (CN), 10 toll/interleukin-1 receptor NBS (TN), 19 toll/interleukin-1 receptor with unknown domain (TX), 246 receptor-like proteins (RLP), 1,377 receptor-like kinases (RLK), 185 TM-CC, and 18 other NBS-containing proteins with other domains. These RGAs were functionally annotated and characterized via gene ontology (GO) analysis. Among the RGAs with the highest copies in durian genome include the putative disease resistance RPP13-like protein 1, disease resistance protein At4g27190, disease resistance protein RPS6, Probable disease resistance protein At4g27220, and putative disease resistance protein RGA3, while 35 RGAs were found to be novel. Phylogenetic analyses revealed that the genome-wide RGAs were broadly clustered into four major clades based on their domain classification.

Conclusion: To our knowledge, this is the most comprehensive analysis of durian RGAs which provides a valuable resource for genetic, agronomic, and other biological research of this important tropical fruit crop.

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