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Doyle (1978, 1994, 2005, 2006, 2008, 2012), Friis et al. (2008), Berendse and Scheffer (2009), Friedman (2009), Specht and Bartlett (2009), E. A differing proposal by Dahlgren and Clifford (1982) suggests: "The ancestors of the monocotyledons were probably shrublets or subshrubs which by environmental conditions (a pronounced alternation between wet and dry periods) evolved compact underground stems, mainly short or long rhizomes from which herbaceous aerial stems were developed ..." The preceding quotation is from page 344 of R. Class 1c resin constituents associated with Mesozoic angiosperm amber are known from 320 million year old (Paleozoic) amber samples (Bray and K. Almost certainly, accomplished studies of the Amborella trichopoda genome, though useful in disentangling aspects of the evolution of GRNs and horizontal transfer (HT), will not help paleobiologists determine the origin(s) of angiosperms. 2014), and detailed analyses of paleobiological data (Labandeira 2014). If fertile spur shoots are demonstrably ancient organs known from late Paleozoic seed plant fossils then how could the flower possibly originate in the late Mesozoic? "The flower remains ill-defined and its mode (or modes) of origin remain hotly disputed; some definitions and hypotheses of evolutionary relationships preclude a role for the flower in delimiting the angiosperms." The preceding statement is from the abstract on page 3471 of R. Floral morphologies are deeply-conserved in angiosperms according to Melzer et al. According to Stewart and Rothwell (1993) these main steps were: The above bulleted quotes are from pages 461-462 of W. Flowering plants evolved from herbaceous forms possessing ovule and pollen bearing organs that coalesced over time producing modern flowers according to D. Professor Burger proposed six hypothetical trends in the early evolution of angiosperms: The above bulleted quotation is from pages 191-194 of W. Burger (1981), Heresy revived: the monocot theory of angiosperm origin, Evolutionary Theory 5: 189-225. Oleananes, together with ursenes, lupenes, and taraxerenes are important TSBs that belong to a class of Β-amirin triterpenoids (Moldowan and Jacobson 2002). Oleananes occur in fossilized leaf material of certain gigantopterids, bennettitaleans, and flowering plants (Moldowan and Jacobson 2002), but are absent from samples of several other fossil seed plants (D. Problems with Contemporary Data Sets: Controversial assertions abound in the scientific literature of the 20th Century and three categories of credible hypotheses and theories exist (Rothwell et al. None of these ideas when taken as a whole are neither compelling or plausible to many scientists, including the author. Based on a discussion of floral evo-devo by Becker (2016), there are other points of view to be considered. Deciphering evo-devo of short- (spur-) shoots on growing mother plants in hybridizing Permo-carboniferous seed plant populations is probably a central tenet in disentangling at least some aspects of the allopolyploid origin of the flowering plants. Ontogeny is thus the creative force behind botanical diversification, and small modifications at the genetic level may have a disproportionate effect on plant form as their consequences cascade and multiply through development. Kenrick (1997), Diverted development of reproductive organs: a source of morphological innovation in land plants, Plant Systematics and Evolution 206: 161-174. From the research perspectives of insect- and floral biology, and paleoentomology and floral morphology, scaling data might be applied to understanding and computing theoretical morphospace of whole invertebrate and/or plant organs (Jeune et al. Prothoracicotropic hormone and/or ecdysone secretion in Holometabola is negatively controlled by juvenile hormone (JH) (Truman and Riddiford 2002). Taylor and Hickey (1992, 1996), Loconte (1996), and Krassilov (1997, 2002), among others. "The idea is that plants have a plastic and modular developmental system such that simple changes in regulatory genes need not lead to inviability but can generate novel, potentially favored phenotypes." The preceding quotation is from page 83 of D. "Ontogeny in land plants can be viewed as a complex, partly hierarchical, series of developmental processes, which together with their underlying genetic controls, provide the raw material for morphological innovation. The interface between development and ecology may be studied from such perspectives, among others (Enquist et al. "In theoretical morphospaces, the axes of the reduced space are determined by a small set of parameters of morphogenetic or other biological models, derived from theoretical considerations rather than from the organisms themselves" (page 841, Chartier et al. Scaling studies of reproductive short- (spur-) shoots of living Ginkgo are particularly revealing to plant morphologists (Christianson and 2009). Cessation of growth in holometabolous insects leading to a new moulting cycle is triggered by PTTH that initiates the ecdysone growth regulatory cascade. The image was captured in 1981 while the author was visiting Indiana University. both within and outside the paradigm of transcription-encoding factors ..." (page 129, Niklas 2006). The family Degeneriaceae was discovered in 1942 by I. Endress (1994, 2001 [a book chapter and two papers], 2004), Bateman et al. Several developmental gene families, TFs, and enzymes involved in hormone signaling cascades are known in invertebrates based in part, on experimental studies of the Drosophila model arthropod (S. Wings, halteres, arachnid spinnerets, and insect legs are all organs that develop from limb fields of cells where Ubx expression is prevalent (S. Several insect systematists studying beetle (Coleoptera) evolution are employing some genes and proteins of the insect development tool kit in their phylogenetic analyses (Gómez-Zurita and Galián 2005). The three essays on the succeeding web pages are written from this research perspective. Gómez-Zurita and Galián (2005) discuss the utility of molecular phylogenetic characters appearing in the entomological literature in a review paper, which is organized along the lines of Floyd and Bowman (2007) for land plants (see section below). Understanding the land plant developmental tool kit and gene regulation from a deep time research perspective ties-in with models of cone and floral organization, cell geometry and regulation of growth from SAMs, paleobiology of homeodomain TF trafficking, phyllotaxis, leaf development, and morphogenesis of fertile organs.

All total in this rich flora of some 6,000 species, there are 812 endemic angiosperms and conifers, 12 endemic genera, and one endemic flowering plant family (A. Distant pinnacles and spires are weathered calc-alkaline Miocene andesites known as the Namosi Volcanics (Rodda and Kroenke 1984). (2008), Specht and Bartlett (2009), Dilcher (2010), D. Isoptera (termites) are hemimetabolous insects (Grimaldi and Engel 2005). The insect developmental tool kit is comprised of certain homeotic selector genes (including Hox genes), zygotic (gap- maternal-, and pair-rule-) genes, field-specific selector genes, compartment selector genes, cell-type-specific selector genes, and segment polarity genes; and the TFs they encode (Rosenberg et al. In addition, the insect developmental tool kit is comprised of controlling factors behind the cessation of insect growth including bioactive PTTH, JH, juvenile hormone esterases, and ecdysone steroids (Truman and Riddiford 2002, Nijhout 2003, S. Juvenile hormone biosynthesized in the corpora allata of the insect brain is a sesquiterpenoid epoxide methyl ester (Hartfelder 2000). Key elements of the Drosophila molecular tool kit include: Evolution of the Hox complex. Ice-free terrestrial environments in the Late Silurian were covered in vegetation. Understanding the origin and diversification of holometabolous insects in deep-time. (2014), have contributed to our knowledge of the origin and evolution of flowering plants. fossil-based, molecular, phylogenetic and paleobiogeographic studies) and current viewpoints about the explosive Cretaceous diversification of angiosperms. Further, problems associated with co-radiations of angiosperms and insects are brought to light by phylogenetics (T. 2007) suggesting that evolution of certain clades of late Mesozoic phytophagous ants, bees, beetles, butterflies, flies, and moths might be independent of the explosive origin and spread of eudicot orders and families (Labandeira 2014). Root Gorelick (2001) challenges the validity of a biotic coevolutionary hypothesis on the origin of flowering plants. Deciphering the ancestry of flowering plants and their paleoecologies probably requires an understanding of the paleontology of "fingerprints of developmental regulation" (quoted from page 723, Sanders et al. (2006, 2011), Frohlich (2002, 2003, 2006), and Lipeng Zeng et al. "We have examined herein different methodological approaches (i.e. Donoghue (2007), Molecular Palaeobiology, Palaeontology 50(4): 775-804. Presumed co-radiations of flowering plants with chrysomelid beetles are asynchronous (Gómez-Zurita et al. (2014) and Becker (2016), which are determined by expression of CRMs, GRNs, PINs, and TFs. Antiquity of micro RNAs and their targets in land plants. The image above is the northwestern face of the Korombasabasaga Range, Viti Levu Island, Fiji as viewed from the road between Namosi and Wainimakutu villages. A review of neotenous development in termites is available (Korb and Hartfelder 2008). Structurally similar to bioactive plant brassinosteroids, 20E-ecdysone induces a cascade of TF biosynthesis important in the regulation of insect development (Truman and Riddiford 2002, De Loof 2008). One line of paleobiological thinking hypothesizes that insects took flight to exploit new habitat. Did ingestion of seed plant brassinosteroids by pterygote insects affect the evo-devo of wings from thoracic limb pads and JH signaling? The evo-devo of insect caste polyphenism is reviewed by Emlen and Nijhout (2000). Thummel and Chory (2002) point to a possible coevolutionary connection between the 20E-ecdysone/cytochrome P biosynthetic machinery of insect antagonists and seed plant hosts. Further, changes in the arthropod homeodomain and evolution of new protein motifs led to new Hox developmental tool kit functions in certain insect lineages (S. The paleobiology of insect flight in relation to the advent of arthropod-seed plant mutualisms remains unexplained.

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