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Gibberellins, Amylase, and the Onset of Heterosis in Maize Seedlings   总被引:1,自引:0,他引:1  
Rood, S. B. and Larsen, K. M. 1988. Gibberellins, amylase, andthe onset of heterosis in maize seedlings.—J. exp. Bot.39: 223–233. The possible involvement of gibberellins and amylase in heterosisof maize seedlings was investigated in two parental inbreds,CM7 and CM49, and their single cross F1 hybrid, CM7xCM49. Germinationof all three genotypes was complete within 36 h after the onsetof imbibition. By 48 h, heterosis (hybrid vigour) for increasedshoot and root length was consistently observed. The endogenousconcentration of gibberellin A1 (GA1) was measured in 48 h seedlingsby gas chromatography-mass spectrometry with selected ion monitoring(GC-SIM) using [2H2]-GA1 as an internal standard. The GA1 concentrationwas highest in the hybrid (59 ng g–1 dry wt.), intermediatein CM49 (9.0 ng g–1), and lowest in CM7 (<5.0 ng g–1).Amylase activities in all three genotypes were very low at 24h, but increased during the next 24 h, after which time amylaseactivity in the hybrid was significantly higher than that ofeither parental inbred. Inhibitors of gibberellin (GA) biosynthesis,AMO-1618 or CCC, inhibited germination, shoot and root growth,and amylase activity in all three genotypes. Conversely, exogenousgibberellic acid (GA3) increased amylase activity, particularlyin the inbred CM7. Amylase isozymes were separated through polyacrylamidegel electrophoresis and generally similar profiles of starchdegrading enzymes were observed in the three genotypes. SinceGA is known to control a-amylase biosynthesis in some cereals,these results are consistent with the hypothesis that GAs areinvolved in the regulation of heterosis in maize. A higher endogenousGA1 concentration in the hybrid could result in increased amylaseactivity in the hybrid seedlings and consequently, more rapidstarch hydrolysis which fuels heterosis for early growth. Key words: Amylase, germination, gibberellic acid, Gibberellin A1, heterosis, hybrid vigour, Zea mays  相似文献   
2.
Population dynamics and food habits of the banded mongoose   总被引:2,自引:0,他引:2  
A population of approximately 100 banded mongooses living in six packs was studied for over 2 years in Rwenzori National Park, Uganda. The packs were relatively stable, cohesive social units composed of approximately equal numbers of males and females and varied in size from six to thirty-five adults and subadults. Breeding was synchronized within the packs with several females producing their litters at approximately the same time. The packs bred up to four times per year. Mortality of animals over 6 months old was approximately 10% annually. Less than 50% of juveniles survived to the age of 3 months. The banded mongoose feeds primarily on invertebrates, particularly millipedes and beetles. Ants, crickets, termites and earwigs are also important elements of the diet. Vertebrate remains were found in 12% of the droppings analysed. Although the pack forages as a unit each individual finds its own food. The mean home range size of five of the packs was 80-4 ha; the two largest packs had ranges exceeding 1 km2. The banded mongoose is strictly diurnal typically leaving a den in the hour following sunrise and returning a few minutes before sunset with a prolonged rest during the heat of the day. Dens were in termite mounds (usually in thicket clumps), erosion gullies, aardvark holes and occasionally in man-made structures. Most were used for only a few days and then abandoned but a few preferred dens were occupied for periods up to 54 days and re-used repeatedly. Interactions between packs were aggressive and appeared to function in spacing the packs. The result of an encounter depended upon pack size with larger packs dominating smaller ones; the area of occurrence did not appear to affect the outcome. Mating between packs was observed during aggressive encounters. Group life is of adaptive significance in protecting the individual from predators and in care of the young. The pack bunches around young mongooses when disturbed and also bunches to attack certain predators and competitors. One or more adults remain at the den to guard the young when the pack forages.  相似文献   
3.
Major Histocompatibility Locus of Rhesus Monkeys (RhL-A)   总被引:4,自引:0,他引:4  
TISSUE typing in rhesus monkeys is an essential prerequisite of organ and bone marrow transplantation in this and other laboratories. Since our first demonstrations in 1965 that leucocyte antigens are relevant for histocompatibility in primates1, two leucocyte specificities of rhesus monkeys have been defined serologically2 and since then the number of available iso-antisera has gradually increased. Although most of the reagents are not monospecific, the inheritance of the leucocyte “groups” suggests that they are controlled by genes segregating as single units in a Mendelian fashion3, but the data previously obtained were insufficient for a thorough genetic analysis.  相似文献   
4.
Global climate models are constantly being upgraded, but it is often not clear what these changes have on climate change impact projections. We used difference maps to directly compare downscaled projections of temperature and precipitation across North America for two versions (or generations) of three different Atmospheric‐Ocean General Circulation Models (AOGCM)s. We found that AOGCM versions differed in their projections for the end of the current century by up to 4 °C for annual mean temperature and 60% for annual precipitation. To place these changes in an ecological context, we reanalyzed our work on shifts in tree climate envelopes (CEs) using the newer‐generation AOGCM projections. Based on the updated AOGCMs, by the 2071–2100 period, tree CEs shifted up to 2.4 degrees further north or 2.6 degrees further south (depending on the AOGCM) and were about 10% larger in size. Despite considerable differences between versions of a given AOGCM, projections made by the newer version of each AOGCM were in general agreement, suggesting convergence across the three models studied here. Assessing the AOGCM outputs in this way provides insight into the magnitude and importance of change associated with AOGCM upgrades as they continue to evolve through time.  相似文献   
5.
We have examined the hypothesis that cytokinins transportedfrom roots to shoots affects leaf growth, stomatal conductance,and cytokinin concentration of leaves of Phaseolus and a hybridpoplar (Populus trichocarpa x Populus deltoides) with hypoxicroots. Because cytokinins may interact with other substances,potassium and calcium concentrations were determined in xylemsap of Populus plants with hypoxic and aerated roots while gibberellin(GA) concentrations were measured in shoot tissues. Root hypoxiadecreased leaf growth and closed stomata in both species. Inboth species, fluxes of cytokinins out of the roots were reduced,but no differences in bulk leaf concentrations were measuredbetween the hypoxic and aerated plants. Shoots with aeratedroots contained slightly higher concentrations of GA1 and GA3than shoots from hypoxic plants. There were no differences incalcium or potassium concentrations in xylem sap between aerationtreatments. Exogenously applied cytokinins did not alleviatethe growth or stomatal responses caused by root hypoxia. Informationon the site(s) and mechanism(s) of cytokinin action and theways in which cytokinins are compartmentalized within plantcells will be required to understand the physiological significanceof cytokinin transport in the transpirational stream. Key words: Cytokinins, hypoxia, Populus, Phaseolus  相似文献   
6.
To investigate climatic influence on floodplain trees, we analysed interannual correspondences between the Pacific Decadal Oscillation (PDO), river and groundwater hydrology, and growth and wood 13C discrimination (Δ13C) of narrowleaf cottonwoods (Populus angustifolia) in a semi‐arid prairie region. From the Rocky Mountain headwaters, river discharge (Q) was coordinated with the PDO (1910–2008: r2 = 0.46); this pattern extended to the prairie and was amplified by water withdrawal for irrigation. Floodplain groundwater depth was correlated with river stage (r2 = 0.96), and the cottonwood trunk basal area growth was coordinated with current‐ and prior‐year Q (1992–2008: r2 = 0.51), increasing in the mid‐1990s, and decreasing in 2000 and 2001. Annual Δ13C decreased during low‐flow years, especially in trees that were higher or further from the river, suggesting drought stress and stomatal closure, and male trees were more responsive than females (?0.86 versus ?0.43‰). With subsequently increased flows, Δ13C increased and growth recovered. This demonstrated the linkages between hydroclimatic variation and cottonwood ecophysiology, and we conclude that cottonwoods will be vulnerable to drought from declining river flows due to water withdrawal and climate change. Trees further from the river could be especially affected, leading to narrowing of floodplain forests along some rivers.  相似文献   
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