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Range change evolution of peat mosses (Sphagnum) within and between climate zones

机译:泥炭藓(Sphagnum)内部和气候区之间的范围变化演变

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Peat mosses (Sphagnum) hold exceptional importance in the control of global carbon fluxes and climate because of the vast stores of carbon bound up in partially decomposed biomass (peat). This study tests the hypothesis that the early diversification of Sphagnum was in the Northern Hemisphere, with subsequent range expansions to tropical latitudes and the Southern Hemisphere. A phylogenetic analysis of 192 accessions representing the moss class Sphagnopsida based on four plastid loci was conducted in conjunction with biogeographic analyses using BioGeoBEARS to investigate the tempo and mode of geographic range evolution. Analyses support the hypothesis that the major intrageneric clades of peat-forming species accounting for &90% of peat moss diversity originated and diversified at northern latitudes. The genus underwent multiple range expansions into tropical and Southern Hemisphere regions. Range evolution in peat mosses was most common within latitudinal zones, attesting to the relative difficulty of successfully invading new climate zones. Allopolyploidy in Sphagnum (inferred from microsatellite heterozygosity) does not appear to be biased with regard to geographic region nor intrageneric clade. The inference that Sphagnum diversified in cool-or cold-climate regions and repeatedly expanded its range into tropical regions makes the genus an excellent model for studying morphological, physiological, and genomic traits associated with adaptation to warming climates.
机译:泥炭藓(Sphagnum)在控制全球碳通量和气候方面保持异国碳助熔剂和气候,因为部分分解生物量(泥炭)含有碳的庞大储备。本研究试验假设SpHagnum的早期多样化在北半球,随后的热带纬度和南半球的范围扩张。基于四个塑性基因座的基于四个塑性基因座的生物地理分析进行了基于四个塑性基因座的192种附加的系统发育分析,研究了地理范围进化的节奏和模式。分析支持肉类形成物种核算的主要肿瘤内切口的假设; GT; 90%的泥炭苔藓多样性起源于北部纬度多样化。该属在热带和南半球区域进行多个范围膨胀。泥炭苔藓的范围演变是纬度地区最常见的,证明成功侵入新的气候区的相对难度。 SpHagnum中的AllopolyPloidy(从微卫星杂合子推断)似乎在地理区域方面并不偏置,也不会对地理区域偏置。在凉爽或冷气候区域中多样化的斯巴格姆和反复扩展到热带地区的推断使得属属的优异模型研究与适应温暖气候的形态,生理学和基因组性状。

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