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Estelle Dumont Véronique Fontaine Christophe Vuylsteker Hélène Sellier Sylvie Bodèle Najia Voedts Rosemonde Devaux Marlène Frise Komlan Avia Jean-Louis Hilbert Nasser Bahrman Eric Hanocq Isabelle Lejeune-Hénaut Bruno Delbreil 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2009,118(8):1561-1571
To increase yield in pea (Pisum sativum L.), autumn sowing would be preferable. Hence, frost tolerance of pea became a major trait of interest for breeders. In order
to better understand the cold acclimation in pea, Champagne a frost tolerant line and Terese, a frost sensitive line, and
their recombinant inbred lines (RIL) were studied. RIL frost tolerance was evaluated by a frost damage scale under field as
well as controlled conditions. A quantitative trait loci (QTL) approach was used to identify chromosomal regions linked to
frost tolerance. The detected QTL explained from 6.5 to 46.5% of the phenotypic variance. Amongst them, those located on linkage
groups 5 and 6 were consistent with over all experiments, in field as well as in controlled environments. In order to improve
the understanding of the frost tolerance mechanisms, several cold acclimation key characters such as concentration of sugars,
electrolyte leakage, osmotic pressure, and activity of RuBisCO were assessed. Some of these physiological QTL colocalised
with QTL for frost damage, in particular two raffinose QTL on LG5 and LG6 and one RuBisCO activity QTL on LG6, explaining
8.8 to 27.0% of the phenotypic variance. In addition, protein quantitative loci were mapped; some of them colocalised with
frost damage and physiological QTL on LG5 and LG6, explaining 16.0–43.6% of the phenotypic variance. Raffinose metabolism
and RuBisCO activity and its effect on photosynthesis might play a major role in cold acclimation of pea.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
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The effect of supplying either nitrate or ammonium on nitrate reductase activity (NRA) was investigated in Brassica napus seedlings. In roots, nitrate reductase activity (NRA) increased as a function of nitrate content in tissues and decreased when ammonium was the sole nitrogen source. Conversely, in the shoots (comprising the cotyledons and hypocotyl), NRA was shown to be independent of nitrate content. Moreover, when ammonium was supplied as the sole nitrogen source, NRA in the shoots was surprisingly higher than under nitrate supply and increased as a function of the tissue ammonium content. Under 15 mM of exogenous ammonium, the NRA was up to 2.5-fold higher than under nitrate supply after 6 d of culture. The NR mRNA accumulation under ammonium nutrition was 2-fold higher than under nitrate supply. The activation state of NR in shoots was especially high compared with roots: from nearly 80% under nitrate supply it reached 94% under ammonium. This high NR activation state under ammonium supply could be the consequence of the slight acidification observed in the shoot tissue. The effect of ammonium on NRA was only observed in cotyledons and when more than 3 mM ammonium was supplied. No such NRA increase was evident in the roots or in foliar discs. Addition of 1 mM nitrate under ammonium nutrition halved NRA and decreased the ammonium content in shoots. Thus, this unusual NRA was restricted to seedling cotyledons when nitrate was lacking in the nitrogen source. 相似文献
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Vuylsteker C Cuvellier G Berger S Faugeron C Karamanos Y 《Journal of experimental botany》2000,51(346):839-845
The occurrence of two enzymes performing de-N-glycosylation of glycoproteins, namely, endo-N-acetyl-beta-D-glucosaminidase (ENGase, EC 3.2.1.96) and peptide-N(4)-(N-acetyl-beta-D-glucosaminyl) asparagine amidase (PNGase, EC 3.5.1.52) was investigated in barley, cv. Plaisant (a winter six rowed variety). The dry grain showed both activities according to the HPLC detection of the hydrolysis of fluorescent resorufin-labelled substrates. However, PNGase activity was 16-fold higher than ENGase activity. During germination, both activities increased, PNGase by only 1.5-fold compared to nearly 4.8-fold for ENGase over the 4 d following imbibition. The localization of these activities within the grain showed that the major contribution of PNGase was due to the endosperm, typically representing over 90% of the whole grain activity. In contrast, ENGase activity was especially high in the embryo and, later, in the developing plantlet (10-fold higher than in the endosperm), particularly in the rootlets and scutellum. In developing spikes, PNGase activity was 5.6-fold higher than in the leaves, but similar ENGase activity was measured in both organs. During grain formation, PNGase activity followed dry matter increase together with endosperm development. In contrast, ENGase activity dropped by 66% at the beginning of grain filling before stabilizing until harvest. The occurrence of de-N-glycosylation-performing enzymes throughout the development of barley raises the question of the nature of their natural substrates. Moreover, the prevalence of one of these enzymes over the other depending on the organ and the developmental stage, could represent the first evidence of specific functions for each enzyme. 相似文献
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Vuylsteker C; Prinsen E; Boutin J; Van Onckelen H; Rambour S 《Journal of experimental botany》1998,49(323):937-944
The supply of -naphthaleneacetic acid
(NAA), to excised chicory roots induced the formation of lateral root
meristems mainly localized proximal to the pre-existing apical root
meristem, in a region which does not initiate any lateral roots in control
conditions. Inhibition of root elongation and concomitant enlargement of
the apices were also observed. Quantification of NAA and cytokinin levels
showed that the most reproducible and significant changes occurring after
the NAA treatment consisted of a decrease in the level of
zeatin-O-glucoside conjugates. Hydrolysis of these
conjugates might deliver free zeatin-type compounds which were consumed
during the lateral root growth. After 5 d, control excised roots contained
a high level of amino acids, mainly as asparagine and arginine, probably
issued from proteolysis associated to a senescent-like process. Conversely,
in the presence of NAA, neither accumulation of amino acids nor a decrease
of the total protein content of the tissue could be detected. Newly
initiated meristems expressed the nia gene which
encodes nitrate reductase, the first enzyme of the nitrate assimilatory
pathway. Thus the increased expression of nitrate reductase which was
observed in excised roots of chicory supplied with NAA (Vuylsteker
et al., 1997b) may be ascribed to lateral root
formation and development. The reinduction of nitrate reduction activity
was driven by the increased demand for reduced nitrogen. Thus, the
nia gene is one of the genes expressed during the
early stages of root meristem formation.Keywords:
Auxins, chicory, in situ hybridization,
lateral root, nitrate reductase.
相似文献
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Komlan Avia Marie-Laure Pilet-Nayel Nasser Bahrman Alain Baranger Bruno Delbreil Véronique Fontaine Céline Hamon Eric Hanocq Martine Niarquin Hélène Sellier Christophe Vuylsteker Jean-Marie Prosperi Isabelle Lejeune-Hénaut 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2013,126(9):2353-2366
Freezing is a major environmental limitation to crop productivity for a number of species including legumes. We investigated the genetic determinism of freezing tolerance in the model legume Medicago truncatula Gaertn (M. truncatula). After having observed a large variation for freezing tolerance among 15 M. truncatula accessions, the progeny of a F6 recombinant inbred line population, derived from a cross between two accessions, was acclimated to low above-freezing temperatures and assessed for: (a) number of leaves (NOL), leaf area (LA), chlorophyll content index (CCI), shoot and root dry weights (SDW and RDW) at the end of the acclimation period and (b) visual freezing damage (FD) during the freezing treatment and 2 weeks after regrowth and foliar electrolyte leakage (EL) 2 weeks after regrowth. Consistent QTL positions with additive effects for FD were found on LG1, LG4 and LG6, the latter being the most explanatory (R 2 ≈ 40 %). QTL for NOL, QTL for EL, NOL and RDW, and QTL for EL and CCI colocalized with FD QTL on LG1, LG4 and LG6, respectively. Favorable alleles for these additive effects were brought by the same parent suggesting that this accession contributes to superior freezing tolerance by affecting plants’ capacity to maintain growth at low above-freezing temperatures. No epistatic effects were found between FD QTL, but for each of the studied traits, 3–6 epistatic effects were detected between loci not detected directly as QTL. These results open the way to the assessment of syntenic relationships between QTL for frost tolerance in M. truncatula and cultivated legume species. 相似文献
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Nitrate reductase activity in chicory roots following excision 总被引:1,自引:1,他引:1
Vuylsteker Christophe; Huss Brigitte; Rambour Serge 《Journal of experimental botany》1997,48(1):59-65
In young chicory plantlets (Cichorium intybus L. Witloof cv.Flash), nitrate assimilation takes place mainly in the roots.Nitrate reductase activity (NRA) was measured in roots deprivedof shoot control by excision and transferred into a sucrose-containingmedium. Such a treatment resulted in a drop of about 60% ofNRA within 3 h. The level of NR protein decreased after 12 hand the level of NR-mRNA after several days. This adaptationof nitrate assimilation to excision was affected by a phosphorylation-dephosphorylationmechanism as shown by increased sensitivity to magnesium ofin vitro NRA. Okadaic acid, a serinethreonine protein phosphatasesinhibitor, enhanced the decrease of NRA. Conversely, staurosporine,a serine-threonine protein kinases inhibitor, antagonized theinhibition of NRA. This suggests that excision caused a rapidinactivation of NRA in roots of chicory by modifying the phosphorylationbalance towards a phosphorylated NR form which could enter aninactive complex. Key words: Chicory, nitrate reductase, staurosporine 相似文献
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