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1.
Orthoclada laxa and O. africana have uncinate microhairs, which are compared to similar micro-hairs of the unrelated genus Neoslapfia, previously thought to be a unique grass in this respect. The bicellular and marginal microhairs, as well as general leaf anatomy, are also described. The root hair pattern is of the “panicoid” type. The chromosome number from root tip preparations is 2ra = 24. 相似文献
2.
Nels Lersten 《American journal of botany》1965,52(8):767-774
The histogenesis of the leaf venation in Trifolium wormskioldii was followed, using whole cleared leaflets and transverse and paradermal microtome sections. Mature leaflets are about 8 mm in length. The midvein precambium appears in leaflets 100 μ in length; secondary vein procambium is first seen in 230 μ leaflets; procambium of minor veins first appears in leaflets 400-600 μ in length. Phloem is apparent before xylem, in midvein, secondary veins, and minor veins. Vein endings are initiated and they mature last. No evidence was found to support the theory of “vein breakage.” In the greenhouse 24 days elapsed from leaf initiation to exposure of leaf tips; 6 more days elapsed until full leaf expansion. 相似文献
3.
We studied leaflet anatomy, emphasizing secretory structures, from herbarium specimens of 128 species of 44 genera of tribeCaesalpinieae, using clearings, resin sections, and scanning electron microscopy. These observations, combined with those from our three earlier papers, provide a survey of 210 species representing all genera. Seventy-three species had secretory structures: 21 had glands or gland-like trichomes, 40 had living mesophyll idioblasts, and nine had cavities (three species each had two different types). Five additional species, all inCercidium (Caesalpinia group), had paired or clustered large spheroidal, thick-walled, empty cells (veinlet idioblasts) interconnected by perforation plate-like gaps. Secretory structures have systematic significance at various taxonomic levels. 相似文献
4.
Harry T. Horner Nels R. Lersten Cassandra L. Wirth 《American journal of botany》1994,81(10):1267-1274
Quantitative data on sieve tubes in foliar terminal veins (vein endings) were added to the meager published information from only five dicot species. Correlations with other minor vein configurations were also explored. Leaf samples from ten species of dicots (Oxalis nelsonii, O. pes-capri, O. rubra, O. stricta [Oxalidaceae], Caesalpinia pulcherrima. Glycine max, Trifolium repens [Leguminosae], Ampelamus albidus [Asclepidaceae], Eupatorium rugosum [Asteraceae], and Polygonum convolvulus [Polygonaceae]) were selected for two quantitative procedures: 1) a survey of the arrangement of terminal veins and distribution of sieve tubes in terminal veins in 100 areoles per species using stained leaf clearings; and 2) a search for correlations of sieve tube distribution with number and branching patterns of terminal veins, and with sizes of areoles using image analysis. Two Oxalis species (O. pes-capri and O. stricta) had the smallest areoles and virtually no sieve tubes in any terminal vein. Polygonum convolvulus, at the other extreme, had sieve tubes extending to the tips of most terminal veins. The other species had various intermediate sieve tube configurations. The data indicate that species with few or no sieve tubes associated with their terminal veins, regardless of the number of terminal veins per areole, have smaller areoles. These results may have implications regarding the entry of leaf photosynthates into the vascular system. 相似文献
5.
The anatomy of internal secretory spaces in immature and mature aerial stems, rhizomes, and roots of common goldenrod, Solidago canadensis (Asteraceae, tribe Astereae), was studied from resin-embedded samples cut 1–2 μm thick. Oil-filled cavities of different lengths, each lined by a uniseriate epithelium, form in young stems and rhizomes. Epithelial cells enlarge and elongate, and some continue to divide mitotically. The cavities thereby expand and accommodate themselves to the growing stem and rhizome. Septa are sometimes forced open by this enlargement, which merges adjacent cavities. Oil reservoirs in roots are probably also cavities, but their lack of densely cytoplasmic epithelial cells prevented us from locating the end walls. Cavities in stem, root, and the cortex of rhizomes occur only as one median file located just outside of each phloem strand; in the pith of rhizomes, however, several files of cavities of larger diameter seem randomly distributed. This study extends our earlier findings that the oil reservoirs in leaves of this species are cavities; we have therefore verified that cavities, not ducts, permeate the goldenrod plant. 相似文献
6.
Paraveinal mesophyll (PVM) is a distinctive anatomical feature of the leaf mesophyll of some plant taxa that may represent a specialized physiological compartment. A comprehensive review of the 42 published references that mention PVM or similar cell layers and a survey of 121 of the 272 species of all nine genera of thePhaseoleae subtribeErythrininae demonstrate that PVM is nearly exclusively found inLeguminosae. InLeguminosae, PVM is either rare or absent in subfamilyCaesalpinioideae, uncommon inMimosoideae, and extensively distributed amongPapilionoideae. In subtribeErythrininae, PVM is ubiquitous inErythrina, and occurs in four other genera. ThreeErythrininae genera (Apios, Mucuna, andCochlianthus) lack PVM. Unique chloroplast-poor, enlarged conical cells (pellucid palisade idioblasts) occur in 80 species ofErythrina but not in any other genus ofErythrininae. 相似文献
7.
8.
Lactoferrin is a multifunctional mammalian immunity protein that limits microbial growth through sequestration of nutrient iron. Additionally, lactoferrin possesses cationic protein domains that directly bind and inhibit diverse microbes. The implications for these dual functions on lactoferrin evolution and genetic conflicts with microbes remain unclear. Here we show that lactoferrin has been subject to recurrent episodes of positive selection during primate divergence predominately at antimicrobial peptide surfaces consistent with long-term antagonism by bacteria. An abundant lactoferrin polymorphism in human populations and Neanderthals also exhibits signatures of positive selection across primates, linking ancient host-microbe conflicts to modern human genetic variation. Rapidly evolving sites in lactoferrin further correspond to molecular interfaces with opportunistic bacterial pathogens causing meningitis, pneumonia, and sepsis. Because microbes actively target lactoferrin to acquire iron, we propose that the emergence of antimicrobial activity provided a pivotal mechanism of adaptation sparking evolutionary conflicts via acquisition of new protein functions. 相似文献
9.
RAPD markers were used to examine the degree of genetic variation within the putatively asexual basidiomycete fungus (Lepiotaceae: provisionally named Leucoagaricus gongylophorus) associated with the leaf-cutting ant species Atta cephalotes. We analyzed fungal isolates from ant nests in two geographically distant sites, two isolates from Panama and five isolates from Trinidad. Ten decamer primers were used to amplify total DNA from these seven fungal isolates, and RAPD banding patterns were compared. Genetic similarity among isolates was determined by pair-wise comparisons of the shared number of DNA bands on an agarose gel. There was considerable genetic variation among isolates of the symbiotic fungus even within sites. Pairs of fungal isolates from the two different sites shared an average of only 36% of the bands in their RAPD profiles, while pairs from the within sites shared an average of 72% of the bands. RAPD markers may be useful for further investigation of the genetic structure of the fungal symbiont within species of leaf-cutting ants. 相似文献
10.
Previous superficial reports, but only one anatomical study of one species, have supported the view that extrafloral nectaries (EFNs) of the unusual Benincasa type (i.e., with several layers of small nectariferous cells) of “Flachnektarien” (surface nectary) are common in Ebenaceae. An anatomical survey was made of 107 species (24% of the 450 species) of the four genera commonly accepted (Diospyros—73, Euclea—13, Maba— 12, Royena—9). There are 1–15 abaxial EFNs per leaf (two species each of Euclea and Royena had none). They were all of the Benincasa type, subtended by an irregularly 1–2-layered sheath of cells with extremely thick radial walls. The pattern of minor vein association allowed recognition of two subtypes: apovascular (two or more subglandular layers between vein and sheath) and paravascular (one subglandular separating layer). Apovascular EFNs are smaller but more numerous per leaf, paravascular EFNs are larger but fewer per leaf. The apovascular subtype is most common in North America and Asia; a mixture of both subtypes occurs elsewhere; Euclea has only the latter subtype. Both subtypes have the most extensive vascular association yet described for Flachnektarien. They appear to have become specialized early in the family's evolution, before extensive migration occurred. 相似文献