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31.
Summary Allozymic variation in proteins encoded by 48 loci was analyzed electrophoretically in 1984 and 1985 in 137 individual plants of wild emmer wheat, Triticum dicoccoides, from a microsite in Yehudiyya, northeast of the Lake of Galilee, Israel. The test involved two climatic microniches in the open Tabor oak forest (1) sunny between trees and (2) shady under trees' canopies. Significant genetic differentiation at single-, two- and multilocus structures was found between neighboring climatic niches, which were only separated by a few meters. Our results suggest that allozyme polymorphisms in wild emmer wheat are partly adaptive, and differentiate primarily at the multilocus level by climatic factors presumably related to aridity stress.  相似文献   
32.
我国红树林主要分布在热带及亚热带沿海盐滩和河川出口的冲积盐性土上,包括24个科,47种,属于东方群系。从广西钦州湾开始经北海港,沿雷州半岛的海安分为两支,一支往南经海南岛的儋县新英港,向东经琼山县的东寨港和文昌县的清澜港,沿着东海岸至崖县的三亚港,又折向北到达东方县的八所港;另一支向东北经湛江的赤坎,阳江的海陵岛,台山的上下川岛,中山的三灶岛,新会的崖门,再沿海岸往北至福建的福鼎和台湾的新竹港。根据我国红树林的主要构成种类、外貌、生境,大致可分为3大群系和10个群落。(1) 矮灌木群系——这个群系多见于纬度稍高的海滩前缘,包括海榄雌群落和桐花树群落。这些群落在演替上处于前期阶段。(2) 高大稠密灌木群系——这个群系由于气温、年降雨量的差异和土壤性质的不同,组成这个群系的种类也有不同,不过都是以红树族的种类为建群种,它包括4个群落:红树群落、红海兰群落和角果木群落,这些群落在演替上属于中期阶段。(3) 乔木群系——这个群系主要分布在海南岛东北和东部海岸,所在地一般地势较高,前缘地带每日潮涨仍有海水浸淹。后缘地带只有每月大潮时才有海水到达,土壤比较固结,它包括木榄群落、海莲和尖瓣海莲群落、海桑群落及半红树林水椰群落。这些群落在演替上是处于后期阶段。组成我国红树林的种类大多数都具有较高的经济价值,如角果木是优质单宁的原料,有些种类经过发酵处理成为高营养的饲料和肥料。此外,沿海浮游生物的产量有红树林比无红树林的地带高达7倍,因此加强对红树林的经营和保护应采取积极态度和有效措施。  相似文献   
33.
中国的红树林   总被引:1,自引:0,他引:1  
我国红树林主要分布在热带及亚热带沿海盐滩和河川出口的冲积盐性土上,包括24个科,47种,属于东方群系。从广西钦州湾开始经北海港,沿雷州半岛的海安分为两支,一支往南经海南岛的儋县新英港,向东经琼山县的东寨港和文昌县的清澜港,沿着东海岸至崖县的三亚港,又折向北到达东方县的八所港;另一支向东北经湛江的赤坎,阳江的海陵岛,台山的上下川岛,中山的三灶岛,新会的崖门,再沿海岸往北至福建的福鼎和台湾的新竹港。根据我国红树林的主要构成种类、外貌、生境,大致可分为3大群系和10个群落。(1) 矮灌木群系——这个群系多见于纬度稍高的海滩前缘,包括海榄雌群落和桐花树群落。这些群落在演替上处于前期阶段。(2) 高大稠密灌木群系——这个群系由于气温、年降雨量的差异和土壤性质的不同,组成这个群系的种类也有不同,不过都是以红树族的种类为建群种,它包括4个群落:红树群落、红海兰群落和角果木群落,这些群落在演替上属于中期阶段。(3) 乔木群系——这个群系主要分布在海南岛东北和东部海岸,所在地一般地势较高,前缘地带每日潮涨仍有海水浸淹。后缘地带只有每月大潮时才有海水到达,土壤比较固结,它包括木榄群落、海莲和尖瓣海莲群落、海桑群落及半红树林水椰群落。这些群落在演替上是处于后期阶段。组成我国红树林的种类大多数都具有较高的经济价值,如角果木是优质单宁的原料,有些种类经过发酵处理成为高营养的饲料和肥料。此外,沿海浮游生物的产量有红树林比无红树林的地带高达7倍,因此加强对红树林的经营和保护应采取积极态度和有效措施。  相似文献   
34.
红腹锦鸡和白腹锦鸡卵壳的超微结构   总被引:18,自引:2,他引:16  
卢汰春  温江 《动物学研究》1992,13(3):223-226
本文报道了锦鸡属——白腹锦鸡和红腹锦鸡卵壳的气孔、外壳膜、锥体层、木栅层的超微结构。并对两者的卵壳进行了比较。  相似文献   
35.
A collection of 44 cloned 5S DNA units fromTriticum aestivum cv. Chinese Spring were grouped into 12 sequence-types based on sequence similarity and the respective consensus sequences were then produced. The relationship between these 12 consensus sequences (T. aestivum S 1-S 8 andT. aestivum L 1-L 4), together with two clones sequenced byGerlach andDyer, and the 5S DNA consensus sequences from diploidTriticum spp. were then determined by numerical methods. Both phenetic and cladistic analyses were carried out. The following wheat 5S DNA sequences were found to group with respective sequences from diploidTriticum spp.:T. aestivum S 4, S 6 withT. tauschii S;T. aestivum S 3 withT. monococcum S andT. monococcum S-Rus 7;T. aestivum L 1 andT. aestivum L-G&D withT. speltoides L;T. aestivum L 2, L 3 withT. tauschii L;T. aestivum L 4 withT. monococcum L andT. monococcum L-Rus 12. The analyses suggested that 5 out of the 65S Dna loci present in wheat were identified at the sequence level. The locus that could not be identified in this analysis was the5S Dna-B 1 locus. A group ofT. aestivum sequences (T. aestivum S 1, S 7, S 8, S-G&D) were found to be distinct from the other 5S DNA sequences in the data base. The existence of the distinct group of 5S DNA sequences suggests that there is a gap in our current understanding of wheat evolution with respect to the5S Dna loci.  相似文献   
36.
The response to high concentrations of B in soil was compared for Triticum aestivum L. (vars. Chinese Spring and Halberd) and the amphiploid of Chinese Spring × Agropyron elongatum (Host). The tolerance of the three genotypes, with respect to yield at the high B treatments, was amphipolid>Halberd>Chinese Spring. The concentration of B in whole shoots was similar for the amphiploid and Halberd and significantly higher for Chinese Spring. The mechanism for tolerance to B appears to be the same for the amphiploid and wheat and is related to reduced accumulation of B in shoots.  相似文献   
37.
One cultivar (GR876) and two advanced Ohio soft red winter wheat lines (OH413 and OH414), with Kavkaz in their pedigrees, were examined for the presence of the Kavkaz, 1RS/1BL rye/wheat chromosome translocation. Another advanced line (OH416), with Amigo in its pedigree, was examined for the presence of the Amigo, 1RS/1AL translocation. Only two satellited chromosomes were observed in most mitotic root-tip cells from GR876, OH413, and OH414, compared to four in most cells from OH416. Heteromorphic bivalents were observed in most PMCs from hybrids produced by crossing GR876, OH413, and OH414 as females to Chinese Spring. No heteromorphic bivalents were observed in PMCs from OH416 x Chinese Spring hybrids. When GR876 and the Ohio lines were hybridized with Chinese Spring dimonotelosomic-1B, telosomic trivalents, consisting of the short- and longarm telosomes paired with chromosome 1B, were only observed in PMCs from 43-chromosome hybrids involving OH416. The long-arm telosome paired with the translocation chromosome, while the short-arm telosome remained unpaired in all other 43-chromosome hybrids. Separation of gliadin proteins from GR876 and the Ohio lines by PAGE revealed that secalin bands for GR876, OH413, and OH414, migrated similarly to the secalins for Kavkaz. Bands for OH416, identified as possible secalins, migrated similarly to those for Amigo. Cultivar GR876 and advanced Ohio soft red winter wheat lines OH413 and OH414 carry the Kavkaz translocation, while OH416 carries the Amigo translocation.Communicated by K. Tsunewaki  相似文献   
38.
What limits nitrate uptake from soil?   总被引:11,自引:4,他引:7  
Abstract. An accepted view, that unless nitrate concentrations in the soil solution are very low (e.g. below 0.1–0.2 mol m?3) the growth of high-yielding crops is not limited by the availability of nitrogen, is challenged. Conventional analyses of nutrient supply and demand, based on calculations of apparent inflow rates (uptake rates per unit total root length) are invalid. Apparent inflow rates are inversely proportional to root length. The convention of using total root length grossly overestimates the fraction of the root system active in nutrient uptake. Consequently, inflow rates based on total root lengths underestimate the true values, indicating unrealistically low nutrient concentration differentials between bulk soil and root surfaces required to drive uptake. An alternative method of analysis is suggested. This is based on total nutrient uptake rather than on inflow rate. Measurements of the former do not depend on estimates of active root length and can be made directly and reliably. The method was applied to data obtained from a pot experiment using spring wheat (Triticum aestivum L., cv. Wembley) grown in soil without nitrogen fertilizer (N0) or with nitrogen fertilizer equivalent to 200kg N ha?1 (N+). Soil nitrate concentrations calculated using the conventional method based on total root length, suggested that any increases in concentration above those measured in the N0 treatment should not have resulted in increased uptake and growth. However, the N+ plants were always bigger than those in the No treatment, refuting this suggestion. Theoretical uptakes of nitrogen (calculated initially on the basis of a fully active root system) were adjusted, by reducing the effective root length incrementally, until the theoretical uptake matched the measured net uptake of nitrogen. The mean fractions of the root systems likely to have been involved in nitrate uptake were 11% and 3.5% of the total lengths of root in the N0 and N+ treatments, respectively.  相似文献   
39.
Abstract. Epidermal (non-stomatally-controlled) conductance from the fourth leaf, first node leaf, flag leaf and ear of durum wheat (Triticum turgidum var durum L.) grown under Mediterranean field conditions has been measured, along with leaf stomatal frequency and the amount and distribution of epicuticular waxes. Measurements were carried out on varieties and land-races from the Middle East, North Africa, ‘Institut National de la Recherche Agricole’ (INRA) and ‘Centra Internacional de Mejora de Maiz y Trigo’ (CIMMYT). Significant differences were observed among genotypes in the epidermal conductances (ge) of the four organs. For each of the four organs tested, genotypes from the Middle East and CIMMYT showed higher ge. values than those from North Africa and INRA. Ears showed epidermal conductances that were more than four times higher than those of leaves when ge. values were expressed per unit dry weight. The amount of epicuticular waxes was higher in the fourth leaves, intermediate in the first node and flag leaves and lower in the ears. For each organ, ge differences among genotypes were unrelated with the amount of epicuticular waxes. Removal of epicuticular waxes by dipping the organs into chloroform significantly increased the epidermal conductance for the fourth and first node leaves and the ear. However, this did not occur for the flag leaf. For the fourth leaf, ge of intact leaves and ge of leaves in which epicuticular waxes were removed were unrelated (r = -0.265). The regression coefficient of this relation for the first node and flag leaves showed values of 0.666 and 0.650 (P > 0.05), respectively, and values were even higher in the ear (r > m 0.892, P > 0.01). Scanning electron microscope analysis showed that wax bloom decreased from the fourth leaf to the flag leaf, whereas the extent of amorphous wax increased. Wax bloom in leaves consisted mainly of deposits of thin wax plates. In the ears and the adaxial surface of flag leaves, fibrillar waxes predominated. In the first node and flag leaves, the wax deposits on the adaxial side cover the surface of the leaf more densely and uniformly than those on the abaxial side. There was no significant correlation between ge and total stomatal density, or between ge and either adaxial or abaxial stomatal density for any sample of the three different leaves. The contribution of epicuticular waxes plus total stomatal frequency only explained 42.4, 11.8, 28.3 and 16% of ge (per unit leaf area) variations for the fourth leaf, first node leaf, flag leaf and the combined variation of the three leaves together, respectively. From these results, it is concluded that complex interrelationship between different morphophysiological characteristics probably control ge differences among genotypes and that these interrelationships differ for each different plant part.  相似文献   
40.
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