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大花序桉心边材变异规律和候选基因挖掘研究
引用本文:赵海文,王平,翁启杰,李建凡,赵玉清,陈莹莹,李昌荣,李发根.大花序桉心边材变异规律和候选基因挖掘研究[J].热带亚热带植物学报,2024,32(2):237-246.
作者姓名:赵海文  王平  翁启杰  李建凡  赵玉清  陈莹莹  李昌荣  李发根
作者单位:中国林业科学研究院热带林业研究所, 热带林业研究国家林业和草原局重点实验室, 广州 510520;南京林业大学, 南京 210037;玉林市林业科学研究所, 广西 容县 537501;广西壮族自治区林业科学研究院, 广西优良用材林资源培育重点实验室, 中南速生材繁育国家林业局重点实验室, 南宁 530002
基金项目:中国林科院基本科研业务费专项(CAFYBB2021SY001); 广西林业科技推广示范项目(桂林科研[2021]5 号)资助
摘    要:为探究大花序桉(Eucalyptus cloeziana)心材比例差异显著的不同家系间心边材变异规律,挖掘心材变异相关的候选基因,为珍贵用材树种高效培育及育种利用提供基因资源。以18 a生的2个心材比例差异显著的大花序桉家系为材料(家系1和2),各制作解析木3株,沿着树干以1 m为区间分段截取圆盘,测量东西和南北2个方向的带皮直径、去皮直径、总年轮数、边材年轮数、边材直径,并开展心材和边材径向和轴向分析。同时利用各解析木胸径处初生木质部样品进行DNA混池测序,发掘等位基因频率差异显著的SNP位点并挖掘相关功能基因。结果表明,大花序桉边材宽度和心材半径的方位变异中家系2大于家系1,平均差值分别为0.7和5.5 cm,在随树高的变异中,家系1和2的心材半径和心材年轮数的下降速率分别为0.40和0.64及0.43和0.36。两家系间基本密度差异显著,家系1为0.80~0.82 g/cm3,家系2为0.75~0.78 g/cm3。基本密度与树高、横截面半径和心材半径呈显著负相关,与顺纹抗拉强度、弦面硬度和部分力学性质呈显著正相关。利用DNA混池测序共...

关 键 词:大花序桉  单核苷酸多态性  年轮  心材  边材
收稿时间:2022/11/23 0:00:00

Sapwood and Heartwood Variation Pattern and Candidate Gene Discovery in Eucalyptus cloeziana
ZHAO Haiwen,WANG Ping,WENG Qijie,LI Jianfan,ZHAO Yuqing,CHENG Yingying,LI Changrong,LI Fagen.Sapwood and Heartwood Variation Pattern and Candidate Gene Discovery in Eucalyptus cloeziana[J].Journal of Tropical and Subtropical Botany,2024,32(2):237-246.
Authors:ZHAO Haiwen  WANG Ping  WENG Qijie  LI Jianfan  ZHAO Yuqing  CHENG Yingying  LI Changrong  LI Fagen
Institution:Key Laboratory of National Forestry and Grassland Administration on Tropical Forestry Research, Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China;Nanjing Forestry University, Nanjing 210037, China;Yulin Forestry Research Institute, Rongxian 537501, Guangxi, China;Guangxi Key Laboratory of Superior Timber Trees Resource Cultivation, Key Laboratory of Central South Fast-growing Timber Cultivation of Forestry Ministry of China, Gugangxi Forestry Research Institute, Nanning 530002, China
Abstract:In order to provide the genetic resource for accelerating the breeding in Eucalytpus, the variation of heartwood and the related candidate genes were explored in E. cloeziana. Wood discs were cut at intervals of 1 meter along the stem of felled tree in two 18-year-old families with contrasting high and low heartwood width, and each family has three individuals. The diameter outside and inside bark, overall ring number, sapwood ring number, sapwood width at two directions of northeast and southwest were measured. Radial and axial analysis were analyzed and the DNA from developing xylem tissues were harvested at breast height and used for bulk DNA sequencing, the SNP loci and the functional genes highly related with the variation of heartwood were discovered. The variation of sapwood width and heartwood radius among orientations were the highest in family 2, the average difference in family 1 and 2 were 0.7 and 5.5 cm, respectively. The decrease rate of heartwood radius and ring number with tree height were 0.40 and 0.64 in family 1, and 0.43 and 0.36 in family 2. The average basic density of E. cloeziana was significantly different between two families, with family 1 ranged from 0.80 to 0.82 g/cm3, and family 2 from 0.75 to 0.78 g/cm3. The basic density was negatively correlated with tree height, cross-section radius and heartwood radius, and positively correlated with tensile strength parallel to the grain and the hardness of tangential section, along some mechanical properties. Using Bulk DNA sequencing, a total of 1842 SNPs with high difference allele frequency were screened. Approximately 55.8% of these SNPs were distributed between genes, 18.3% in the upstream region, 16.3% in the downstream region, 5.1% in exons and 4.4% in introns using SnpEff annotation. The identified SNPs were used to locate the genes belonging to 50 terms, mainly related to plant cell division, plant cell membrane and plant protein kinase by GO enrichment analysis. By conducting the radial and axial analysis of these two families with contrasting high and low heartwood width, the trend of sapwood and heartwood variation were discussed. The SNPs and candidate genes were screened by bulk DNA sequencing, and the functions of genes involved to the process of sapwood formation were explored.
Keywords:Eucalyptus cloeziana  Single nucleotide polymorphism (SNP)  Tree rings  Heartwood  Sapwood
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