Page 75 - 《广西植物》2022年第10期
P. 75

10 期                   焦贝贝等: 基于 Ks 分布的被子植物演化的时间尺度研究                                       1 6 9 3

     genome duplications contribute to genome complexity and  aligning 10 legume genomes establishes a family ̄level
     species diversity in angiosperms [ J]. Mol Plantꎬ 11(3):  genomics platform [J]. Plant Physiolꎬ 174(1): 284-300.
     414-428.                                        WANG JPꎬ YUAN JQꎬ YU JGꎬ et al.ꎬ 2019. Recursive
   SHANG JZꎬ TIAN JPꎬ CHENG HHꎬ et al.ꎬ 2020. The       paleohexaploidization shaped the durian genome [J]. Plant
     chromosome ̄level wintersweet ( Chimonanthus praecox )  physiolꎬ 179(1): 209-219.
     genome provides insights into floral scent biosynthesis and  WANG SCꎬ XIAO Yꎬ ZHOU ZWꎬ et al.ꎬ 2021. High ̄quality
     flowering in winter [J]. Genome Biolꎬ 21(1): 1-28.  reference genomesequences of two coconut cultivars provide
   SILVESTRO Dꎬ BACON CDꎬ DING WNꎬ et al.ꎬ 2021. Fossil  insights into evolution of monocot chromosomes and
     data support a pre ̄Cretaceous origin of flowering plants  differentiation of fiber content and plant height [J]. Genome
     [J]. Nat Ecol Evolꎬ 5(4): 449-457.                 Biolꎬ 22(1): 1-25.
   SMITH SAꎬ DONOGHUE MJꎬ 2008. Rates of molecular   WANG XYꎬ GUO Hꎬ WANG JPꎬ et al.ꎬ 2016. Comparative
     evolution are linked to life history in flowering plants  genomic de ̄convolution of the cotton genome revealed a
     [J]. Scienceꎬ 322(5898): 86-89.                    decaploid ancestor and widespread chromosomal fractionation
   SONG XMꎬ SUN PCꎬ YUAN JQꎬ et al.ꎬ 2021. The celery   [J]. New Phytolꎬ 209(3): 1252-1263.
     genome sequence reveals sequential paleo ̄polyploidizationsꎬ  WANG XYꎬ WANG JPꎬ JIN DCꎬ et al.ꎬ 2015. Genome
     karyotype evolution and resistance gene reduction in apiales  alignment  spanning  major  Poaceae  lineages  reveals
     [J]. Plant Biotechnol Jꎬ 19(4): 731-744.           heterogeneous evolutionary rates and alters inferred dates for
   SONG XMꎬ WANG JPꎬ LI Nꎬ et al.ꎬ 2020. Deciphering the  key evolutionary events [J]. Mol Plantꎬ 8(6): 885-898.
     high ̄quality genome sequence of coriander that causes  WU SDꎬ HAN BCꎬ JIAO YNꎬ 2020. Genetic contribution of
     controversial feelings [ J]. Plant Biotechnol Jꎬ 18 ( 6):  paleopolyploidy to  adaptive  evolution  in  angiosperms
     1444-1456.                                         [J]. Mol Plantꎬ 13(1): 59-71.
   SUN PCꎬ JIAO BBꎬ YANG YZꎬ et al.ꎬ 2021. WGDI: a user ̄  YANG YZꎬ SUN PCꎬ LV Lꎬ et al.ꎬ 2020. Prickly waterlily and
     friendly toolkit for evolutionary analyses of whole ̄genome  rigid hornwort genomes shed light on early angiosperm
     duplications and ancestral karyotypes [J]. BioRxiv. https:/ /  evolution [J]. Nat Plantꎬ 6(3): 215-222.
     doi.org/ 10.1101/ 2021.04.29.441969.            YANG Zꎬ 2007. PAML 4: phylogenetic analysis by maximum
   TANG HBꎬ WANG XYꎬ BOWERS JEꎬ et al.ꎬ 2008. Unraveling  likelihood [J]. Mol Biol Evolꎬ 24(8): 1586-1591.
     ancient hexaploidy through multiply ̄aligned angiosperm gene  ZHANG LSꎬ CHEN Fꎬ ZHANG XTꎬ et al.ꎬ 2020a. The water
     maps [J]. Genome Resꎬ 18(12): 1944-1954.           lily genome and the early evolution of flowering plants
   TANG XHꎬ LAI XLꎬ ZHONG Yꎬ 2002. Molecular clock      [J]. Natꎬ 577(7788): 79-84.
     hypothesis and fossil record [J]. Earth Sci Frontꎬ 9(2):  ZHANG LSꎬ WU Sꎬ CHANG XJꎬ et al.ꎬ 2020b. The ancient
     465-474. [唐先华ꎬ 赖旭龙ꎬ 钟扬ꎬ 等ꎬ 2002. 分子钟假说             wave of polyploidization events in flowering plants and their
     与化石记录 [J]. 地学前缘ꎬ 9(2): 465-474.]                   facilitated adaptation to environmental stress [J]. Plant Cell
   VANNESTE Kꎬ VAN DE PEER Yꎬ MAERE Sꎬ 2013.            Environꎬ 43(12): 2847-2856.
     Inference of genome duplications from age distributions  ZHUANG WJꎬ CHEN Hꎬ YANG Mꎬ et al.ꎬ 2019. The genome
     revisited [J]. Mol Biol Evolꎬ 30(1): 177-190.      of cultivated peanut provides insight into legume karyotypesꎬ
   WANG JPꎬ SUN PCꎬ LI YXꎬ et al.ꎬ 2018. An overlooked  polyploid evolution and crop domestication [J]. Nat Genetꎬ
     paleotetraploidization in Cucurbitaceae [J]. Mol Biol Evolꎬ  51(5): 865-876.
     35(1): 16-26.
   WANG JPꎬ SUN PCꎬ LI YXꎬ et al.ꎬ 2017. Hierarchically                            (责任编辑  李  莉)
   70   71   72   73   74   75   76   77   78   79   80