Phylotranscriptomic Analyses of Mycoheterotrophic Monocots Show a Continuum of Convergent Evolutionary Changes in Expressed Nuclear Genes From Three Independent Nonphotosynthetic Lineages

被引:11
作者
Timilsena, Prakash Raj [1 ]
Barrett, Craig F. [2 ]
Pineyro-Nelson, Alma [3 ,4 ]
Wafula, Eric K. [1 ]
Ayyampalayam, Saravanaraj [5 ]
McNeal, Joel R. [6 ]
Yukawa, Tomohisa [7 ]
Givnish, Thomas J. [8 ]
Graham, Sean W. [9 ]
Pires, J. Chris [10 ]
Davis, Jerrold, I [11 ]
Ane, Cecile [12 ]
Stevenson, Dennis W. [13 ]
Leebens-Mack, Jim
Martinez-Salas, Esteban [14 ]
alvarez-Buylla, Elena R. [15 ]
dePamphilis, Claude W. [1 ]
机构
[1] Penn State Univ, Dept Biol, University Pk, PA 16801 USA
[2] West Virginia Univ, Dept Biol, Morgantown, WV USA
[3] Univ Autonoma Metropolitana Xochimilco, Dept Prod Agr & Anim, Mexico City, Mexico
[4] Univ Nacl Autonoma Mexico, Ctr Ciencias Complej, Mexico City, Mexico
[5] Univ Georgia, Dept Plant Biol, Athens 3060, Georgia
[6] Kennesaw State Univ, Dept Ecol Evolut & Organismal Biol, Kennesaw, GA USA
[7] Natl Museum Nat & Sci, Tsukuba Bot Garden, 1-1, Amakubo 4, Tsukuba 3050005, Japan
[8] Univ Wisconsin Madison, Dept Bot, Madison, WI USA
[9] Univ British Columbia, Dept Bot, Vancouver, BC V6T 1Z4, Canada
[10] Univ Missouri Columbia, Div Biol Sci, Columbia, MO USA
[11] Cornell Univ, Sch Integrat Plant Sci & LH Bailey Hortorium, Ithaca, NY USA
[12] Univ Wisconsin Madison, Dept Stat, Madison, WI USA
[13] New York Bot Garden, New York, NY USA
[14] Univ Nacl Autoonoma Mexico, Dept Bot, Inst Biolo, Mexico City, Mexico
[15] Univ Nacl Autonoma Mexico, Dept Ecol Func, Inst Ecol, Mexico City, Mexico
来源
GENOME BIOLOGY AND EVOLUTION | 2023年 / 15卷 / 01期
关键词
mycoheterotrophy; photosynthesis; phylogenomics; transcriptomics; relaxed purifying selection; BUSCO; MYCO-HETEROTROPHIC PLANTS; PLASTID-GENOME; PHYLOGENETIC ANALYSIS; PHOTOSYSTEM-II; ALIGNMENT; PROTEIN; CHLOROPLAST; TOOL; DATAMONKEY; REDUCTION;
D O I
10.1093/gbe/evac183
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Mycoheterotrophy is an alternative nutritional strategy whereby plants obtain sugars and other nutrients from soil fungi. Mycoheterotrophy and associated loss of photosynthesis have evolved repeatedly in plants, particularly in monocots. Although reductive evolution of plastomes in mycoheterotrophs is well documented, the dynamics of nuclear genome evolution remains largely unknown. Transcriptome datasets were generated from four mycoheterotrophs in three families (Orchidaceae, Burmanniaceae, Triuridaceae) and related green plants and used for phylogenomic analyses to resolve relationships among the mycoheterotrophs, their relatives, and representatives across the monocots. Phylogenetic trees based on 602 genes were mostly congruent with plastome phylogenies, except for an Asparagales + Liliales clade inferred in the nuclear trees. Reduction and loss of chlorophyll synthesis and photosynthetic gene expression and relaxation of purifying selection on retained genes were progressive, with greater loss in older nonphotosynthetic lineages. One hundred seventy-four of 1375 plant benchmark universally conserved orthologous genes were undetected in any mycoheterotroph transcriptome or the genome of the mycoheterotrophic orchid Gastrodia but were expressed in green relatives, providing evidence for massively convergent gene loss in nonphotosynthetic lineages. We designate this set of deleted or undetected genes Missing in Mycoheterotrophs (MIM). MIM genes encode not only mainly photosynthetic or plastid membrane proteins but also a diverse set of plastid processes, genes of unknown function, mitochondrial, and cellular processes. Transcription of a photosystem II gene (psb29) in all lineages implies a nonphotosynthetic function for this and other genes retained in mycoheterotrophs. Nonphotosynthetic plants enable novel insights into gene function as well as gene expression shifts, gene loss, and convergence in nuclear genomes.
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