Field of Science

Showing posts with label Grues. Show all posts
Showing posts with label Grues. Show all posts

Cranes Off the Rails (Taxon of the Week: Grues)


The 'Messel rail' Messelornis cristata - a specimen with preserved plumage. Photo from here.


Despite its presentation in years of fieldguides and other popular books, the bird order 'Gruiformes' has in recent times been scattered to the four winds, with analyses both morphological and molecular proclaiming its polyphyly. Nevertheless, molecular analyses such as Hackett et al. (2008) continue to support a clade roughly corresponding to the suborder Grues as recognised by Cracraft (1973)* containing the cranes and the rails. The morphological analysis of Livezey & Zusi (2007) on the other hand, does not support this clade, but it does support monophyly for each of the two primary divisions within Grues, the ralloid and gruoid lineages.

*Just to confuse matters, the name "Grues" has been used by different authors for clades of differing inclusivity. Mayr (2009), for instance, uses "Grues" for the Aramus + Gruidae clade, and refers to the larger clade as "core Gruiformes".

The ralloid line contains the living families Rallidae*, the rails, and Heliornithidae, the finfoots (or should that be finfeet?) Cracraft (1973) regarded the Cretaceous Laornis edvardsianus as a stem ralloid, but no-one else seems to have taken him up on this suggestion. More reliably on the ralloid stem are the Palaeocene to Oligocene Messelornithidae (Mayr, 2009). Messelornithids were medium-sized birds (about the size of a small chicken) best known from Messelornis cristata for which over 500 specimens are available, some even with preserved feathering. Messelornis was highly terrestrialised with limited flight capabilities and almost ludicrously long legs (loss or reduction of flight has been a common occurrence among the Grues). Its beak was relatively short and the overall appearance of Messelornis would probably have not been dissimilar to the modern cariamas.

*Hackett et al. (2008) resolved the Rallidae as paraphyletic to Heliornithidae, with Sarothrura (the flufftails) closer to Heliornis than to the other two included rails Himantornis and Rallus. A few places, at least online, have suggested recognising Sarothrura as a separate family from the Rallidae as a result, but I'd recommend waiting for a more detailed analysis with greater coverage of the Rallidae. Increased taxonomic coverage may return the flufftails to the other Rallidae, or it may make it more appropriate to treat the finfoots as derived rallids.


The sungrebe Heliornis fulica of tropical South America (I tried to find a picture of one carrying chicks, but no luck). Photo by Jerry Oldenettel.


The finfoots of the Heliornithidae are three species (one in Asia, one in Africa, one in South America) of tropical grebe-like birds, renowned for their reclusiveness. The South American sungrebe Heliornis fulica is the most distinctive in appearance of the three species (though mitochondrial analysis indicates that it and the Asian Heliopais personata form a clade to the exclusion of the African Podica senegalensis - Fain et al., 2007) and is also very distinct in its nesting behaviour. Heliopais and Podica, like most aquatic birds, have chicks that hatch out reasonably well-developed and immediately able to swim after their parents. Heliornis, in contrast, has altricial chicks that hatch out after only ten to eleven days of incubation. The really amazing bit, though, is what happens after the chicks hatch. The male sungrebe has a shallow pouch under each wing and he is able to transport the chicks inside this pouch, even flying with them. Whether the chicks remain in the pouches permanently or whether they are only placed in them while the male is travelling remains unknown. Funnily enough, while this chick-carrying behaviour was described by Alvarez del Toro in 1971, it had originally been recorded almost 140 years earlier by Prince Maximilian of Wied. It seems that everyone else had assumed the prince was smoking something.


Grey-winged trumpeters, Psophia crepitans. Photo by A. Vinot.


The gruoid lineage includes Psophia, the trumpeters, Aramus guarauna, the limpkin, and Gruidae, the cranes, as well as the fossil taxa Parvigrus pohli, Geranoididae and Eogruidae. Most recent authors agree that Aramus and Gruidae form a clade to the exclusion of Psophia. The chicken-sized Oligocene Parvigrus was originally described by Mayr (2005) as sister to Aramus + Gruidae, but he later (Mayr, 2009) revised its position to stem gruoid. Parvigrus lacked the long beak of limpkins and cranes, as do the Recent trumpeters, three species of similarly chicken-sized birds found in northern South America.

Whether Geranoididae and Eogruidae possessed crane-like long beaks is an unknown factor as skull material for both has not been found. Cracraft (1973) placed both outside the crown gruoids, but Clarke et al. (2005) placed Eogruidae inside the gruoid crown as sister to Aramus + Gruidae. The Eocene Geranoididae have been described only from leg bones (Wetmore, 1933, assigned some wing bones to Geranoides jepseni in his original description of this species but did not describe them) so little can be said about them except that they were large and long-legged. Wetmore (1933) commented on the unusually wide spacing of the trochleae (the 'knuckles') at the end of the tarsometatarsus suggesting that Geranoides had very widely splayed toes, but Cracraft (1969) later attributed to wide spacing to post-mortem distortion. Cracraft (1969, 1973) included a number of Eocene birds in the Geranoididae but admitted a lack of derived characters uniting them; Geranoididae may represent a paraphyletic assemblage of basal gruoids.


Distal ends of tarsometatarsi of the eogruids Proergilornis and Ergilornis, showing reduction of the inner trochlea in Proergilornis and its loss in Ergilornis. Figure from Cracraft (1973).


The Eocene to Pliocene Eogruidae were also decent-sized long-legged birds from central Asia and (in later times) Europe. Earlier authors recognised two families, Eogruidae and Ergilornithidae, but 'ergilornithids' are now recognised as derived eogruids. Eogruids were highly cursorial birds and a humerus attributed to Ergilornis suggests that it was flightless, though the earlier Eogrus aeola shows no sign of being so (Clarke et al., 2005). Originally three-toed, eogruids showed a reduction in the size of the inner toe, and Ergilornis and Amphipelargus (the latest of the eogruids) lost it entirely (it is easy to present a progression from flying and three-toed to flightless and two-toed, but be warned that three-toed species survived into the Miocene, well after the appearance of the two-toed forms). The only other birds to reduce the number of toes to two are the ostriches, and a relationship between ostriches and eogruids has been suggested in the past (generally in association with the idea that the ratites do not form a monophyletic group). However, Cracraft (1973) confirmed that eogruids were more similar in their fine morphology to gruoids than ostriches, and modern phylogenetic analyses do not support a close relationship of ostriches and gruoids.

Many people carry the impression that flightlessness in birds is associated with lack of predators. However, eogruids evolved flightlessness in an environment in which predators were no rarity (amongst others, they shared their world with such horrors as hyaenodonts and entelodonts*). Similarly, while the exact circumstances in which they became flightless is unknown, modern ostriches (Africa), emus (Australia) and rheas (South America) all live alongside significant predators or at least did so until recently. Obviously, something other than lack of predators is at play here.

*I always imagine Roald Dahl's hornswogglers to be something like an entelodont.

REFERENCES

Clarke, J. A., M. Norell & D. Dashzeveg. 2005. New avian remains from the Eocene of Mongolia and the phylogenetic position of the Eogruidae (Aves, Gruoidea). American Museum Novitates 3494: 1-17.

Cracraft, J. 1969. Systematics and evolution of the Gruiformes (class, Aves). 1, The Eocene family Geranoididae and the early history of the Gruiformes. American Museum Novitates 2388: 1-41.

Cracraft, J. 1973. Systematics and evolution of the Gruiformes (class Aves). 3, Phylogeny of the suborder Grues. Bulletin of the American Museum of Natural History 151: 1-127.

Fain, M. G., C. Krajewski & P. Houde. 2007. Phylogeny of "core Gruiformes" (Aves: Grues) and resolution of the limpkin–sungrebe problem. Molecular Phylogenetics and Evolution 43: 515-529.

Hackett, S. J., R. T. Kimball, S. Reddy, R. C. K. Bowie, E. L. Braun, M. J. Braun, J. L. Chojnowski, W. A. Cox, K.-L. Han, J. Harshman, C. J. Huddleston, B. D. Marks, K. J. Miglia, W. S. Moore, F. H. Sheldon, D. W. Steadman, C. C. Witt & T. Yuri. 2008. A phylogenomic study of birds reveals their evolutionary history. Science 320: 1763-1768.

Livezey, B. C., & R. L. Zusi. 2007. Higher-order phylogeny of modern birds (Theropoda, Aves: Neornithes) based on comparative anatomy. II. Analysis and discussion. Zoological Journal of the Linnean Society 149 (1): 1-95.

Mayr, G. 2005. A chicken-sized crane precursor from the early Oligocene of France. Naturwissenschaften 92: 389-393.

Mayr, G. 2009. Palaeogene Fossil Birds. Springer.

Wetmore, A. 1933. Fossil bird remains from the Eocene of Wyoming. Condor 35: 115-118.

Oh Crake (Taxon of the Week: Amaurornis)


The white-breasted waterhen, Amaurornis phoenicurus, one of the more widespread and distinctive Amaurornis species. Phot from here.


The Rallidae are undeniably a very successful group of birds. Rallids have spread to almost every corner of the globe, including a few island corners that were never reached by other terrestrial birds. The subject of today's post is one of the widespread genera of rallids - but it's one of the trickier ones.

Stable classification of rallids has eluded ornithologists for years, for two main reasons. One is that rallids are a prime example of what may be called the smudge effect - clearly distinct subgroups, but without clear boundaries. Take a rail and a moorhen, and the differences are easy to spot. But then someone comes along with a third species, that looks a bit like a rail and a bit like a moorhen, and it's back to the bench for the frustrated ornithologist. The other is the unusual nature of rallid evolution and dispersal. Rallids are, normally, surprisingly good fliers - that's why they are able to reach so many remote islands. On the other hand, they tend to be very reluctant fliers, only invoking those flying abilities if they absolutely have to. As a result, rallids have tended to disperse to remote localities, and then promptly lost the flying abilities that got them there at the first available opportunity. With those losses of flying ability come other related changes - larger body size and such - resulting in the flightless rails looking not very much like their flying descendants, and an awful lot like unrelated flightless species from completely different islands.


The plain bush-hen of the Philippines, Amaurornis olivacea, type species and fairly typical of the brown species of the genus. Photo taken from here - and while you're at it, click through and take a look at the photo of the peacock-pheasant. Seriously, some birds are so incredible they just beggar belief.


The genus Amaurornis belongs to the subgroup of rallids known as the crakes. Crakes are quite generalised rallids, distinguished from the other major generalised rallid group, the rails, by their shorter beaks. Most crakes are notoriously shy and retiring birds - as an example of their reserve, one crake species, Amaurornis magnirostris of the Talaud Islands in Indonesia, was only described in 1998 (Lambert, 1998). The crake species assigned to Amaurornis, also known as bush hens or water hens, tend to be larger than other crake species in the genus Porzana and its satellite genera. Other than this, however, there seems to have been little or no definition on what actually distinguishes one genus from the other, and species have been shuttled back and forth between the two for years.

Indeed, Olson (1973) regarded Amaurornis as the generalised ancestral group for a number of other rallid genera, including Porzana, Porphyrio (swamphens), Gallinula (moorhens) and Fulica (coots) - effectively paraphyletic, except that he didn't suggest any specific relationships between descendant genera and particular species within Amaurornis. As well as the Asian and Australasian species previously included in the genus, Olson (1973) also assigned three African species previously regarded as the genus Limnocorax to Amaurornis.


The brown crake, Limnocorax akool - long included in Amaurornis, but, it seems, not belonging there after all. Photo by Nikhil Devasar.


The first explicitly phylogenetic analysis of the Rallidae (and still the only morphological analysis of the group) was the gigantic production of Livezey (1998). Livezey confirmed Olsen's suggestion of a close relationship between Amaurornis, Porzana, Gallinula and Fulica (but not Porphyrio), but Porzana was massively paraphyletic, with the other three genera belonging to a clade that was nested within Porzana - specifically within the subgenus Limnocorax (which Livezey had removed from Amaurornis and returned to Porzana so that at least one of the genera could be monophyletic). Livezey refrained from carving up Porzana into bite-sized monophyletic chunks because support for the recovered relationships within the genus was negligible, and while he did support monophyly for the core group of Amaurornis, it apparently didn't take much fiddling with the analysis to make the whole thing topple over like a badly-cooked soufflé (certainly, Livezey's taxonomic separation of Amaurornis from the other crakes as a separate subtribe Amaurornithina fits right into the "tits on a bull" category). There are also hints that convergence may have befuddled a number of results of the Livezey analysis - elsewhere in the tree, for instance, was a highly suspect clustering of flightless taxa from New Zealand and Mauritius.

Subsequent molecular analyses have tackled sections of the Rallidae, but unfortunately none have had the coverage of the Livezey (1998) analysis. The most significant for the crakes has been that of Slikas et al. (2002), which answered the hanging question of "is Porzana or Amaurornis the polyphyletic genus?" with "As it happens, they both are". Their analysis divided Porzana and Amaurornis between three clades - one containing species of the former, one containing species of the latter, and one containing species of both. Christidis & Boles (2008) proposed that the names Porzana and Amaurornis be each restricted to the appropriate one of the first two clades, with the third clade recognised as a third genus. Oh, and the correct name for that third genus just happens to be Limnocorax. That's right - after years of being the subject of a game of taxonomic kickball, Limnocorax breaks free to become its own genus - and one considerably larger than either of the other two. Unfortunately, Slikas et al. didn't include any representatives of Gallinula or Fulica to test where they sat relative to the three clades.


John Gould's painting of Megacrex inepta - this flightless New Guinea bird may be an Amaurornis, or it may be something else entirely. Image from here - I don't normally link to sites selling stuff, but I suspect this one doesn't count as I doubt many of my readers have a spare $875 lying around to spend on a picture of a bird anyway.


If we accept the results of Slikas et al. (2002), Amaurornis includes five species from southern and south-east Asia and northern Australasia - A. olivacea, A. isabellina, A. phoenicurus, A. moluccana and A. magnirostris*. Most of these are some variation on chestnut-brown, but the striking white-breasted A. phoenicurus is a notable exception. An unfortunate omission from Slikas et al.'s (2002) analysis was the large New Guinean flightless rail Megacrex inepta, which was placed in Amaurornis by Livezey (1998). A molecular analysis by Trewick (1997) that included Megacrex placed it in association with Rallus and its relatives (the rails), and far away from Porzana, but (a) none of the other "Amaurornis" species were included in this analysis, and (b) it was a neighbour-joining analysis. Yuck.

*Brief taxonomic note - Amaurornis is one of those genera that has been subject to argument about whether it is masculine or feminine. It's feminine, so the species names have to be formed accordingly (phoenicurus retains the masculine ending because it's a noun, not an adjective).

REFERENCES

Christidis, L., & W. Boles. 2008. Systematics and Taxonomy of Australian Birds. CSIRO Publishing.

Lambert, F. R. 1998. A new species of Amaurornis from the Talaud Islands,
Indonesia, and a review of taxonomy of bush hens occurring from the
Philippines to Australasia. Bulletin of the British Ornithologist’s Club 118 (2): 67 – 82.

Livezey, B. C. 1998. A phylogenetic analysis of the Gruiformes (Aves) based on morphological characters, with an emphasis on the rails (Rallidae). Philosophical Transactions of the Royal Society of London Series B – Biological Sciences 353: 2077-2151.

Olson, S. L. 1973. A classification of the Rallidae. Wilson Bulletin 85 (4): 381-416.

Slikas, B., S. L. Olson & R. C. Fleischer. 2002. Rapid, independent evolution of flightlessness in four species of Pacific Island rails (Rallidae): an analysis based on mitochondrial sequence data. Journal of Avian Biology 33: 5-14.

Trewick, S. A. 1997. Flightlessness and phylogeny amongst endemic rails (Aves: Rallidae) of the New Zealand region. Philosophical Transactions of the Royal Society of London Series B – Biological Sciences 352: 429-446.