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901.
902.
B. C. Vieira E. M. Bicalho S. Munn‐Bosch Q. S. Garcia 《Plant biology (Stuttgart, Germany)》2017,19(2):211-216
- The relationship between the phytohormones, gibberellin (GA) and abscisic acid (ABA) and light and temperature on seed germination is still not well understood. We aimed to investigate the role of the ABA and GA on seed germination of Vellozia caruncularis, V. intermedia and V. alutacea in response to light/dark conditions on different temperature.
- Seeds were incubated in GA (GA3 or GA4) or ABA and their respective biosynthesis inhibitors (paclobutrazol – PAC, and fluridone – FLU) solutions at two contrasting temperatures (25 and 40 °C). Furthermore, endogenous concentrations of active GAs and those of ABA were measured in seeds of V. intermedia and V. alutacea during imbibition/germination.
- Exogenous ABA inhibited the germination of Vellozia species under all conditions tested. GA, FLU and FLU + GA3 stimulated germination in the dark at 25 °C (GA4 being more effective than GA3). PAC reduced seed germination in V. caruncularis and V. alutacea, but did not affect germination of V. intermedia at 40 °C either under light or dark conditions. During imbibition in the dark, levels of active GAs decreased in the seeds of V. intermedia, but were not altered in those of V. alutacea. Incubation at 40 °C decreased ABA levels during imbibition in both V. caruncularis and V. alutacea.
- We conclude that the seeds of Vellozia species studied here require light or high temperature to germinate and ABA has a major role in the regulation of Vellozia seed germination in response to light and temperature.
903.
Dormancy cycles in buried seeds of three perennial Xyris (Xyridaceae) species from the Brazilian campo rupestre
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T. G. S. Oliveira I. P. Diamantino Q. S. Garcia 《Plant biology (Stuttgart, Germany)》2017,19(5):818-823
- Dormancy cycles are an important mechanism for avoiding seed germination under unfavourable periods for seedling establishment. This mechanism has been scarcely studied in tropical species. Here, we studied three tropical and perennial species of Xyris, X. asperula, X. subsetigera and X. trachyphylla, to investigate in situ longevity and the existence of seasonal seed dormancy cycles.
- Seeds of three species of Xyris were buried in their natural habitat, with samples exhumed bimonthly for 18 months. Germination of exhumed seeds was assessed under a 12‐h photoperiod over a broad range of temperatures. Seeds of X. trachyphylla were also subjected to treatments to overcome secondary dormancy.
- Seeds of all species are able to form a persistent seed bank and exhibit seasonal changes in germinability. Secondary dormancy was acquired during the rainy summer and was overcome during the subsequent dry season (autumn/winter). Desiccation partially overcomes secondary dormancy in X. trachyphylla seeds.
- Soil seed bank persistence and synchronisation of seed germination under favourable conditions for seedling establishment contribute to the persistence and regeneration of X. asperula, X. subsetigera and X. trachyphylla in their natural environment.
904.
905.
Experimental assemblage of novel plant–herbivore interactions: ecological host shifts after 40 million years of isolation
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Carlos Garcia‐Robledo Carol C. Horvitz W. John Kress A. Nalleli Carvajal‐Acosta Terry L. Erwin Charles L. Staines 《Biotropica》2017,49(6):803-810
Geographic isolation is the first step in insect herbivore diet specialization. Such specialization is postulated to increase insect fitness, but may simultaneously reduce insect ability to colonize novel hosts. During the Paleocene‐Eocene, plants from the order Zingiberales became isolated either in the Paleotropics or in the Neotropics. During the Cretaceous, rolled‐leaf beetles diversified in the Neotropics concurrently with Neotropical Zingiberales. Using a community of Costa Rican rolled‐leaf beetles and their Zingiberales host plants as study system, we explored if previous geographic isolation precludes insects to expand their diets to exotic hosts. We recorded interactions between rolled‐leaf beetles and native Zingiberales by combining DNA barcodes and field records for 7450 beetles feeding on 3202 host plants. To determine phylogenetic patterns of diet expansions, we established 20 experimental plots in the field, in which we planted plots five exotic Zingiberales, recording beetles feeding on these exotic hosts. In the laboratory, using both native and exotic host plants, we reared a subset of insect species that had expanded their diets to the exotic plants. The original plant–herbivore community comprised 24 beetle species feeding on 35 native hosts, representing 103 plant–herbivore interactions. After exotic host plant introduction, 20 percent of the beetle species expanded their diets to exotic Zingiberales. Insects only established on exotic hosts that belong to the same plant family as their native hosts. Laboratory experiments show that beetles are able to complete development on these novel hosts. In conclusion, rolled‐leaf beetles are preadapted to expand their diets to novel host plants even after millions of years of geographic isolation. 相似文献
906.
Marcos Fernando Basso Karoline Estefani Duarte Thais Ribeiro Santiago Wagner Rodrigo de Souza Bruno de Oliveira Garcia Brbara Dias Brito da Cunha Adilson Kenji Kobayashi Hugo Bruno Correa Molinari 《Plant Biotechnology》2021,38(2):227
The CRISPR/Cas9 system has been used for genome editing in several organisms, including higher plants. This system induces site-specific mutations in the genome based on the nucleotide sequence of engineered guide RNAs. The complex genomes of C4 grasses makes genome editing a challenge in key grass crops like maize (Zea mays), sorghum (Sorghum bicolor), Brachiaria spp., switchgrass (Panicum virgatum), and sugarcane (Saccharum spp.). Setaria viridis is a diploid C4 grass widely used as a model for these C4 crop plants. Here, an optimized CRISPR/Cas9 binary vector that exploits the non-homologous end joining (NHEJ) system was used to knockout a green fluorescent protein (gfp) transgene in S. viridis accession A10.1. Transformation of embryogenic callus by A. tumefaciens generated ten glufosinate-ammonium resistant transgenic events. In the T0 generation, 60% of the events were biallelic mutants in the gfp transgene with no detectable accumulation of GFP protein and without insertions or deletions in predicted off-target sites. The gfp mutations generated by CRISPR/Cas9 were stable and displayed Mendelian segregation in the T1 generation. Altogether, the system described here is a highly efficient genome editing system for S. viridis, an important model plant for functional genomics studies in C4 grasses. Also, this system is a potential tool for improvement of agronomic traits in C4 crop plants with complex genomes. 相似文献
907.
María Carmen Piñero Fabrice Houdusse Jose M. Garcia‐Mina María Garnica Francisco M. del Amor 《Physiologia plantarum》2014,151(4):375-389
This study examines the extent to which the predicted CO2‐protective effects on the inhibition of growth, impairment of photosynthesis and nutrient imbalance caused by saline stress are mediated by an effective adaptation of the endogenous plant hormonal balance. Therefore, sweet pepper plants (Capsicum annuum, cv. Ciclón) were grown at ambient or elevated [CO2] (400 or 800 µmol mol–1) with a nutrient solution containing 0 or 80 mM NaCl. The results show that, under saline conditions, elevated [CO2] increased plant dry weight, leaf area, leaf relative water content and net photosynthesis compared with ambient [CO2], whilst the maximum potential quantum efficiency of photosystem II was not modified. In salt‐stressed plants, elevated [CO2] increased leaf NO3– concentration and reduced Cl– concentration. Salinity stress induced ABA accumulation in the leaves but it was reduced in the roots at high [CO2], being correlated with the stomatal response. Under non‐stressed conditions, IAA was dramatically reduced in the roots when high [CO2] was applied, which resulted in greater root DW and root respiration. Additionally, the observed high CK concentration in the roots (especially tZR) could prevent downregulation of photosynthesis at high [CO2], as the N level in the leaves was increased compared with the ambient [CO2], under salt‐stress conditions. These results demonstrate that the hormonal balance was altered by the [CO2], which resulted in significant changes at the growth, gas exchange and nutritional levels. 相似文献
908.
909.
Tainá CC Monte Rosana Gentile Juberlan Garcia Ester Mota Jeannie N Santos Arnaldo Maldonado Júnior 《Memórias do Instituto Oswaldo Cruz》2014,109(8):1057-1063
Angiostrongylus cantonensis is the etiologic agent of eosinophilic
meningoencephalitis in humans. Cases have been recorded in many parts of the world,
including Brazil. The aim of this study was to compare the differences in the biology
and morphology of two different Brazilian haplotypes of A. : ac8 and
ac9. A significantly larger number of L1 larvae eliminated in the faeces of rodents
at the beginning of the patent period was observed for ac9 haplotype and compared to
the total of L1 larvae eliminated, there was a significant difference between the two
haplotypes. The ac9 haplotype showed a significant difference in the proportion of
female and male specimens (0.6:1), but the same was not observed for ac8 (1.2:1). The
morphometric analysis showed that male and female specimens isolated from ac8
haplotype were significantly larger with respect to body length, oesophagus length,
spicule length (male) and distance from the anus to the rear end (female) compared to
specimens from ac9. The morphological analysis by light microscopy showed little
variation in the level of bifurcations at the lateral rays in the right lobe of the
copulatory bursa between the two haplotypes. The biological, morphological and
morphometric variations observed between the two haplotypes agree with the observed
variation at the molecular level using the cytochrome oxidase subunit I marker and
reinforce the possible influence of geographical isolation on the development of
these haplotypes. 相似文献
910.
Aline Garcia Kozlowski Megmar Aparecida dos Santos Carneiro Márcia Alves Dias de Matos Sheila Araújo Teles Jo?o Alves Araújo Filho Koko Otsuki Ana Carolina Paulo Vicente Regina Maria Bringel Martins 《Memórias do Instituto Oswaldo Cruz》2014,109(1):118-121
Human T-cell lymphotropic virus (HTLV) may impact the clinical course of tuberculosis
(TB). Both infections are highly endemic in Brazil. The aim of this study was to
assess the prevalence of HTLV-1/2 in TB patients in Central-West Brazil and to
perform a genetic characterisation of the respective isolates. Of the 402 patients,
six (1.49%) were positive for anti-HTLV and five (1.24%; 95% confidence interval:
0.46-3.05) were infected with HTLV-1/2. Genetic characterisation demonstrated that
the four HTLV-1 isolates belonged to the Transcontinental subgroup A of the
Cosmopolitan subtype a and that the HTLV-2 isolate belonged to subtype a (HTLV-2a/c).
The prevalence of HTLV infection observed in this study is higher than that observed
in local blood donors and the HTLV-1 and 2 subtypes identified are consistent with
those circulating in Brazil. 相似文献