61 resultados para Elymus


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垂穗披碱草Elymus nutans-星星草Puccinellia tenuiflora混播草地3个放牧季的牦牛放牧试验结果表明:相同放牧区每公顷草地牦牛总增重之间的差异不显著(P〉0.05).同一放牧季各放牧区牦牛总增重之间的差异极显著(P〈0.01),且各放牧季牦牛的个体增重与放牧强度均呈显著的线性回归关系;2003年单位面积草地牦牛增重随放牧强度的增加而增加.2004和2005年单位面积草地牦牛增重与放牧强度呈二次回归关系;通过二次回归方程计算得到:牧草生长季牦牛最佳放牧强度为7.23头/hm~2。

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通过研究自然条件下模拟平流层臭氧破坏5%时近地表面增加的太阳UV-B辐射对高寒草甸4种典型植物(矮嵩草Kobresia humilis、垂穗披碱草Elymus nutans、麻花艽Gentiana straminea和鹅绒委陵菜Po-tentilla anserina)的抗氧化系统的影响表明,尽管各植物的抗氧化系统组分变化不同,但4种植物的膜脂过氧化程度没有加剧,长期增强UV-B辐射没有对膜系统造成损伤。在自然长期增强UV-B条件下,4种植物的膜脂过氧化产物——丙二醛(MDA)含量与对照相比无显著差异。垂穗披碱草、鹅绒委陵菜的谷胱甘肽(GSH)含量增加,麻花艽的超氧化物歧化酶(SOD)活性与鹅绒委陵菜的过氧化氢酶(CAT)活性上升,同时麻花艽的类胡萝卜素(Car)含量亦显著增加。可见这些植物已能很好地适应UV-B强辐射,其抗氧化能力除了与抗氧化系统各组分的协同作用有关外,也可能与种的适应性有关。

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了解三江源人工草地净生态系统CO_2交换(Net ecosystem CO_2 exchange, NEE)的季节变化规律和主要生物因子及环境因子对这些过程的影响将有助于认识青藏高原人工草地生态系统碳循环、生态价值、功能,以及对三江源区的生态安全的重要意义.该研究利用涡度相关技术,于2005年9月1日至2006年8月31日对位于青海腹地的垂穗披碱草(Elymus nutans)人工草地的NEE及生物和环境因子进行观测,阐明NEE及其组分的动态变化特征和影响因子.三江源区人工草地生态系统的日最大吸收量为2.38gC•m~(-2)•d~(-1),出现在7月30日.日间最大吸收率和最大排放率都出现在8月,分别为-6.82和2.95/μmol CO_2•m~(-2)•s~(-1).在生长季,白天的NEE主要受光合有效辐射(Photosynthetically active radiation, PAR)变化控制, 同时又与叶面积指数和群落多样性交互作用,共同调节光合速率和光合效率的强度.最大光合同化速率为2.46~10.39μmol CO_2•m~(-2)•s~(-1),表观初始光能利用率为0.013~0.070μmol CO_2•μmol~(-1)PAR.在碳交换日过程中,NEE并不完全随着PAR的增加而增大,当PAR超过某一值(>1200μmol•m~(-2)•s~(-1))时,NEE随PAR的增加而降低.受温度的影响,生长季的生态系统的呼吸商Q10(1.8)小于非生长季节的(2.6).生态系统呼吸主要受温度的控制,同时也受到叶面积指数的显著影响.生长季昼夜温差大并不利于生态系统的碳获取.三江源区人工草地生态系统是一个较强的碳汇,为-49.35gC•m~(-2)•a~(-1).

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研究了青藏高原高寒地区3种多年生植物在生长过程中植物叶组织的可溶性糖、脯氨酸和丙二醛(MDA)含量、超氧化物歧化酶(SOD)和过氧化物酶(POD)活性的变化及其生理特性。结果表明;矮嵩草(Kobresia humilis)、垂穗披碱草(Elymus nutans)和黑褐苔草(Carex atro-fusca)叶中的可溶性糖含量随着生长期的进程而增加;脯氨酸含量的变化因植物种类的不同而表现各异,其中在各生长期.垂穗披碱草的脯氨酸含量均高于矮嵩草和黑褐苔草,并在草盛中期表现出明显的差异;3种高寒植物叶片中的丙二醛(MDA)含量随着生长季和气温的变化而呈现不断增加的趋势;3种植物中的超氧化物歧化酶(SOD)和过氧化物酶(POD)活性表现出随生长期和气温变化而改变的趋势,但黑褐苔草的2种膜保护酶活性最高,垂穗披碱草的次之.矮嵩草最低。可见,在不同生长季,这3种高寒植物的抗寒生理反应或低温适应方式可能是多途径的.其中在抗寒物质代谢、膜脂过氧化能力和抗氧化酶系统等方面,有生理反应的共同规律和各自特有的生理抗寒特性.其适应性与抗逆性有所不同,这种差异和生理特性可能与高寒植物的遗传特性和极端高寒低温环境胁迫有关。

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研究了在野外自然条件下,长期增强UV-B辐射对高寒草甸3种典型植物矮嵩草(Kobresia humilis)、垂穗披碱草(Elymus nutans)和钉柱委陵菜(Potentilla saundersiana)光合放氧速率、光合色素和抗氧化系统的影响。结果表明:长期增强UV-B辐射对3种植物的净光合速率没有明显影响。增强UV-B辐射下,3种植物的叶绿素含量变化不同,Chla/b值,类胡萝卜素(Car)含量,Car/Chl值与对照相比都有升高,说明植物叶片的光合能力、吸收紫外线的能力增强以及忍受逆境能力均有增强,从而产生光保护,有利于光合作用正常进行。由于3种植物膜脂过氧化程度的不同及SOD活性的普遍抑制,植物经受了氧化胁迫。垂穗披碱草叶片GSH含量显著七升,矮嵩草的形态矮小及钉柱委陵菜GSH含量与POD活性显著上升,都能减轻它们所经受的氧化胁迫,使光合器官免受损伤。所以,这些保护性色素的积累和抗氧化系统内部的协同作用可能是高寒草甸植物光合作用正常进行的重要原因。

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在江河源区披碱草Elymus natans+星星草Puccinellia tenuflora混播人工草地上研究了牦牛放牧强度对土壤物理性状的影响,2年的试验结果表明:随着放牧强度的增加,不同土壤层含水量均呈降低趋势,土壤容重、土壤坚实度呈增大趋势.相关分析表明, 放牧强度与不同土壤层含水量呈极显著的负相关(P<0.01), 与土壤容重和坚实度呈极显著的正相关(P<0.01),而且土壤容重和坚实度均具有累积效应.

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There are 47 genera and 161 species of Gramineae except the cultivated species in the area of the Karakorum and Kunlun Mountains. The results of research on the distribution of the genera and species of Gramineae in the Karakorum and Kunlun Mountains show that (1) The Gramineae mainly contains elements of North Temperate, rich Old Word Temperate and other Temperate. It is obvious that the floristic nature of Gramineae in the Karakorum and Kunlun Mountains is the North Temperate; (2) All Pantropic genera can stretch to the Temperate Zone in this region, which all parts of the Pantropic type are the Temperate nature to a certain degree. For example, Erianthus ravennae from mediterranean to the Karakorum and Kunlun Mountains through the Central Asia; (3) As most genera of Grasses are the type of Temperate and the Frigid Zone, they have distinct floristic characteristics of mountainous and plateau flora such as Orinus, Alopecurus, Elymus, Trisetum, Littledalea, Elytrigia, Stephanachne and Paracolpodium etc. All of these indicate adaptive phenomenon of alpine specialization and cold-xerophilization on Grasses in this area; (4) Endemic genus of Gramineae is absent due to its nature and history and the endemic species are also rare in the Karakorum and Kunlun Mountains. Most of the genera with one or fewer species have originated from its relative and widespread genera, such as Ptilagrostis from Stipa, Timouria from Achnatherum, and so on; (5) Flora of the Karakorum and Kunlun Mountains is most closely related to the flora of Tibet, and is also extensively to its adjacent areas.

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首次报道了我国青藏高原3种披碱草局(Elymus)植物的核型,即短芒披减草(E.brachyaristatusA.Love),核型为2n=6x=42=32m+10sm(4SAT),属2A类型;无芒披碱草(E.submuticus(Keng)Kengf.),核型为2n=6x=42=30m+12sm(2SAT),属2A类型;硕穗披碱草(E.barystachyus L.B.Cai),核型为2n=6x=42=32m+10sm(4SAT),属2B类型。

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Genomic constitutions of three taxa of Hystrix Moench, H. patula, H. duthiei ssp. duthiei and H. duthiei ssp. longearistata, were examined by meiotic pairing behavior and genomic in-situ hybridization. Meiotic pairing in hybrids of H. patula x Pseudoroegneria spicata (St), H. patula x Elymus wawawaiensis (StH), H. patula x H. duthiei ssp. longearistata, H. patula x Psathyrostachys huashanica (Ns(h)), H. duthiei ssp. duthiei x Psa. huashanica, H. duthiei ssp. longearistata x Psa. huashanica, Leymus multicaulis (NsXm) x H. duthiei ssp. longearistata averaged 6.53, 12.83, 1.32, 0.29, 5.18, 5.11 and 10.47 bivalents per cell, respectively. The results indicate that H. patula has the StH genome and H. duthiei ssp. duthiei and H. duthiei ssp. longearistata have the NsXm genome. Results of genomic in-situ hybridization analysis strongly supported the chromosome pairing data; therefore it is concluded that the type species of Hystrix, H. patula, should be included in Elymus, and that H. duthiei ssp. duthiei and H. duthiei ssp. longearistata should be transferred to Leymus.

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In the alpine region of the Tibetan Plateau, five perennial grass cultivars, Bromus inermis (B), Elymus nutans (E), Clinelymus nutans (C), Agropyron cristatum (A), and Poa crymophila (P) were combined into nine communities with different compositions and ratios, B+C, E+A, B+E+A, E+B+C,C+E+A,B+E+C+A,B+C+A+P,B+E+A+P and E+C+A+P. Each combination was sown in six 10 X 10 m plots with three hand-weeded plots and three natural-growing plots in a completely randomised design in 1998. A field experiment studied the performance of these perennial grass combinations under the competitive interference of annual weeds in 3 consecutive years from 1998 to 2000. The results showed that annual weeds occupied more space and suppressed the growth of the grasses due to earlier germination and quicker growth in the establishment year, but this pattern changed in the second and third years. Leaf area indexes (LAIs) of grasses were greatly decreased by the competitive interference of weeds, and the negative effect of weeds on LAIs of grasses declined and stabilised in the second and third years. E+B+C, B+E+C+A, and B+E+A+P possessed relatively higher LAIs (P < 0.05) among all grass combinations and their LAIs were close to five when the competitive interference of weeds was removed. Grasses were competitively inferior to weeds in the establishment year, although their competitive ability (aggressivities) increased throughout the growing season. In the second and third years, grasses were competitively superior to weeds, and their competitive ability decreased from May until August and increased in September. Dry matter (DM) yields of grasses were reduced by 29.8-74.1% in the establishment year, 11.0-64.9% in the second year, and 16.0-55.8% in the third year by the competitive interference of weeds. B+E+C+A and B+E+A+P can produce around 14 t/ha of DM yields, significantly higher (P < 0.05) than the production of the other grass combinations in the second and third years after the competitive interference of weeds was removed. It was preliminarily concluded that removal of competitive interference of weeds increased the LAIs of all grass swards and improved the light interception of grasses, thus promoting the production of perennial grass pastures. The germination stage of the grasses in the establishment year was the critical period for weeding and suppression of weeds should occur at an early stage of plant growth. The grass combinations of B+E+C+A and B+E+A+P were productive and can be extensively established in the alpine regions of the Tibetan Plateau. Two or three growing seasons will be needed before determining success of establishment of grass mixtures under the alpine conditions of the Tibetan Plateau.

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In the alpine region of the Qinghai-Tibetan Plateau four indigenous perennial grass species Bromus inermis (BI), Elymus sibiricus (ES), Elymus nutans (EN) and Agropyron cristatum (AC) were cultivated as three mixtures with different compositions and seeding rates, BI + EN, BI + ES + AC and BI + ES + EN + AC. From 1998 to 2001 there were three different weeding treatments: never weeded (CK); weeded on three occasions in the first year (1-y) and weeded on three occasions in both the first and second year (2-y) and their effect of grass combination and interactions on sward productivity and persistence was measured. Intense competitive interference by weedy annuals reduced dry matter (DM) yield of the swards. Grass combination significantly affected sward DM yields, leaf area index (LAI) and foliar canopy cover and also species composition DM and LAI, and species plant cover. Interaction between weeding treatments and grass combination was significant for sward DM yield, LAI and canopy cover, but not on species composition for DM, LAI or species plant cover. Grass mixture BI + ES + EN + AC gave the highest sward DM yield and LAI for both weeding and non-weeding treatments. Species ES and EN were competitively superior to the others. Annual weedy forbs must be controlled to obtain productive and stable mixtures of perennial grasses, and germination/emergence is the most important time for removal. Weeding three times (late May, late June and mid-July) in the establishment year is enough to maintain the production and persistence of perennial grass mixtures in the following growing seasons. Extra weeding three times in the second growing year makes only a slight improvement in productivity.

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Effects of grazing intensity on leaf photosynthetic rate (Pn), specific leaf area (SLA), individual tiller density, sward leaf area index (LAI), harvested herbage DM, and species composition in grass mixtures (Clinelymus nutans + Bromus inermis, Elymus nutans + Bromus inermis + Agropyron cristatum and Elymus nutans + Clinelymus nutans + Bromus inermis + Agropyron cristatum) were studied in the alpine region of the Tibetan Plateau. Four grazing intensities (GI), expressed as feed utilisation rates (UR) by Tibetan lambs were imposed as follows: (1) no grazing; (2) 30% UR as light grazing; (3) 50% UR as medium grazing; and (4) 70% UR as high grazing. Leaf Pn rate and tiller density of grasses increased (P < 0.05), while sward LAI and harvested herbage DM declined (P < 0.05) with the increments of GI, although no effect of GI on SLA was observed. With increasing GI, Elymus nutans and Clinelymus nutans increased but Bromus inermis and Agropyron cristatum decreased in swards, LAI and DM contribution. Whether being grazed or not, Elymus nutans + Clinelymus nutans + Bromus inermis + Agropyron cristatum was the most productive sward among the grass mixtures. Thus, two well-performed grass species (Elymus nutans and Clinelymus nutans) and the most productive mixture of four species should be investigated further as the new feed resources in the alpine grazing system of the Tibetan Plateau. Light grazing intensity of 30% UR was recommended for these grass mixtures when swards, LAI, herbage DM harvested, and species compatibility were taken into account.

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La asociación entre raíces de plantas y hongos micorrícicos arbusculares (HMA) incrementa la absorción de fósforo. Sin embargo, la defoliación puede influenciar el balance de la simbiosis y la recuperación de las plantas. El objetivo de esta tesis fue estudiar el efecto de la simbiosis micorrícica y el suministro de fósforo, sobre el crecimiento y la recuperación post-defoliación de gramíneas forrajeras cultivadas. Para esto, en primer lugar, se caracterizó la respuesta micorrícica de seis especies de gramíneas (tres templadas (C3) : i) Dactylis glomerata, ii) Elymus elongatus y iii) Schedonorus arundinaceus; y tres tropicales (C4) : iv) Paspalum dilatatum, v) Panicum coloratum y vi) Urochloa brizantha) creciendo en déficit nutricional. En estas condiciones, las gramíneas tropicales presentaron mayor respuesta micorrícica que las templadas. En segundo lugar, se estudió el rol de las micorrizas y el suministro de fósforo sobre el crecimiento y la nutrición de E. elongatus y U. brizantha, dos especies con respuestas micorrícicas contrastantes. Al aumentar el suministro de fósforo, en E. elongatus (especie con menor respuesta micorrícic) ) y U. brizantha (especie con mayor respuesta micorrícica) el cambio en la producción de biomasa, entre plantas inoculadas y no-inoculadas, disminuyó. Sin embargo, mostraron diferencias en la eficiencia en el uso del fósforo: U. brizantha hizo un mayor aprovechamiento del fósforo que E. elongatus. Por último, se caracterizaron respuestas de recuperación post-defoliación bajo distinto suministro de fósforo. En E. elongatus en alto fósforo, hubo un efecto parasítico de la micorriza sobre la recuperación post-defoliación. Por el contrario, en U. brizantha no se detectó un compromiso entre defoliación y micorrizas. La información generada en esta tesis servirá de base para mejorar el conocimiento de aspectos básicos de la relación entre hongos micorrícicos arbusculares y gramíneas forrajeras, como también, para establecer pautas de conservación de las relaciones simbióticas en sistemas pastoriles.

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As a continuation of previous research on the naturalization of non-native vascular plants in the Iberian Peninsula new chorological data are presented for 16 xenophytes recorded between 2010 and 2014, mostly in the provinces of Huelva and Barcelona (Spain) and in the Algarve and Estremadura (Portugal). For each taxon details about distribution, habitats occupied, previous records, degree of naturalization, etc. are provided. Lachenalia bulbifera and Cyperus albostriatus are probably reported for the first time in the wild in Europe, as are Gamochaeta filaginea, and Dysphania anthelmintica and Oenothera lindheimeri for Portugal and Spain respectively. Cosmos bipinnatus is cited as a novelty for the Algarve (Portugal). Newly reported or confirmed for the province of Huelva are: Amaranthus hypochondriacus, Epilobium brachycarpum, Nephrolepis cordifolia, Ficus microcarpa, Tamarix parviflora and Tamarix ramosissima, while Atriplex semibaccata, Chloris truncata, and Elymus elongatus subsp. ponticus are new for Barcelona. Finally, Passiflora caerulea is a novelty for both Barcelona and Huelva provinces.