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首页> 外文期刊>Tree Genetics & Genomes >Seed and pollen dispersal and fine-scale spatial genetic structure of a threatened tree species: Pericopsis elata (HARMS) Meeuwen (Fabaceae)
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Seed and pollen dispersal and fine-scale spatial genetic structure of a threatened tree species: Pericopsis elata (HARMS) Meeuwen (Fabaceae)

机译:威胁树种的种子和花粉分散和微尺度空间遗传结构:Pericopsis elata(伤害)meeuwen(fabaceae)

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摘要

Seed and pollen dispersal are important for defining sustainable forest management practices. By reducing population density, selective logging could affect not only the seed production of timber species but also the selfing rate and the patterns of seed and pollen rains. To assess these risks, we characterized seed and pollen dispersal patterns and the fine-scale spatial genetic structure (FSGS) of Pericopsis elata, a gregarious, wind-dispersed legume tree which is highly logged in Central Africa and threatened by overexploitation. Eleven microsatellite markers were used to genotype 189 adults and 664 seedlings in a 4 km(2) plot in the Democratic Republic of Congo (DRC). According to the neighbourhood model, seed dispersal was extremely leptokurtic, with 80% of seeds dispersal distances 75 m, 15% 500 m. Pollen dispersal was locally more extensive (median distance 260 m), but pollen immigration was not detected, and the selfing rate (54%) appeared particularly high compared to other tropical tree species. Limited gene dispersal resulted in remarkably high FSGS (S-p = 0.072). A decay of inbreeding with age also suggests that the species is prone to inbreeding depression. The reproductive success of trees was positively related to their diameter at breast height (dbh), with half of the progeny mothered by trees with dbh 97 cm and fathered by trees with dbh 119 cm. Our study highlights that (1) seed sources must be diversified for plantation or population reinforcement to limit consanguinity, and (2) the legal minimum cutting diameter in DRC (60 cm) should be increased to maintain enough post-logging reproductive potential.
机译:种子和花粉分散对于定义可持续森林管理实践很重要。通过降低人口密度,选择性测井可能不仅影响木材物种的种子生产,而且影响种子生产以及种子和花粉雨的模式。为了评估这些风险,我们表征了种子和花粉分散模式和精细的空间遗传结构(FSGS)eLATA,一种艰巨的风分散的豆科树,其在中非高度登录并被过度开采威胁。 11公里(2)个地块(DRC)的4公里(2)个地块中,使用1179名成人和664个幼苗进行基因型189名幼苗。根据邻域模型,种子分散是极其溶胀的,80%的种子分散距离<75m,15%& 500米。花粉分散局部是更广泛的(中位数260米),但未检测到花粉移民,与其他热带树种相比,自行率(54%)特别高。有限的基因分散率为显着高的FSG(S-P = 0.072)。随着年龄的近期繁殖的衰减也表明该物种易于融合抑郁症。树木的生殖成功与乳房高度(DBH)的直径呈正相关,其中一半的后代由DBH&GT母亲培养; 97厘米,与DBH&GT的树木养殖; 119厘米。我们的研究亮点(1)种子来源必须为种植园或人口加固来限制血缘关系,并且(2)应增加DRC(60厘米)的法定最低切削直径,以保持足够的记录后的伐木生殖潜力。

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  • 来源
    《Tree Genetics & Genomes》 |2021年第3期|27.1-27.14|共14页
  • 作者单位

    Univ Kisangani Fac Gest Ressources Nat Renouvelables BP 2012 Av Kitima 3 Kisangani DEM REP CONGO|Lab Ecol & Amenagement Forestier LECAFOR Kisangani DEM REP CONGO|Univ Libre Bruxelles Fac Sci Evolutionary Biol & Ecol Unit CP 160 12 Av FD Roosevelt 50 B-1050 Brussels Belgium;

    Univ Libre Bruxelles Fac Sci Evolutionary Biol & Ecol Unit CP 160 12 Av FD Roosevelt 50 B-1050 Brussels Belgium;

    Royal Museum Cent Africa Serv Wood Biol B-3080 Tervuren Belgium|Ctr Int Forestry Res Bogor 16115 Indonesia|Resources & Synergies Dev Pte Ltd Hong Leong Bldg Singapore 048581 Singapore;

    Lab Ecol & Amenagement Forestier LECAFOR Kisangani DEM REP CONGO|Univ Kisangani Fac Sci BP 2012 Av Kitima 3 Kisangani DEM REP CONGO;

    Univ Libre Bruxelles Fac Sci Evolutionary Biol & Ecol Unit CP 160 12 Av FD Roosevelt 50 B-1050 Brussels Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Seed and pollen dispersal; Consanguinity; Inbreeding depression; Spatial genetic structure; Pericopsis elata; Minimum cutting diameter;

    机译:种子和花粉分散;血缘;近亲繁殖的抑郁;空间遗传结构;围类ELATA;最小切削直径;

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