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11.
李春艳  王曦  周胜花  李希  钟华  董宽虎 《草地学报》2020,28(6):1784-1790
本文以白羊草(Bothriochloa ischaemum)为材料,利用其目前已有的转录组序列,通过搜索、比对、功能域多态性分析、进化树构建和基因表达分析等手段,对白羊草R2R3-MYB型转录因子进行挖掘和干旱胁迫下的表达模式分析。结果从白羊草挖掘出43个R2R3-MYB转录因子,它们具有高度保守的[W]-X(19)-[W]-X(19)-[W]-X(n)-[W]-X(18)-[W]结构,主要参与生长发育、次生代谢和逆境响应等生物过程。通过进一步的分析,本研究筛选出8个可能参与干旱胁迫响应的R2R3-MYB转录因子。这为白羊草R2R3-MYB基因的功能研究和开发利用奠定了基础。  相似文献   
12.
Extreme droughts and heat waves due to climate change may have permanent consequences on soil quality and functioning in agroecosystems. During November 2010 to August 2011, the Southern High Plains (SHP) region of Texas, U.S., a large cotton producing area, received only 39.6 mm of precipitation (vs. the historical avg. of 373 mm) and experienced the hottest summer since record keeping began in 1911. Several enzyme activities (EAs) important in biogeochemical cycling were evaluated in two soils (a loam and a sandy loam at 0–10 cm) with a management history of monoculture (continuous cotton) or rotation (cotton and sorghum or millet). Samplings occurred under the most extreme drought and heat conditions (July 2011), after precipitation resulted in a reduction in a drought severity index (March 2012), and 12 months after the initial sampling (July 2012; loam only). Eight out of ten EAs, were significantly higher in July 2011 compared to March 2012 for some combinations of soil type and management history. Among these eight EAs, enzymes key to C (β-glucosidase, β-glucosaminidase) and P cycling (phosphodiesterase, acid and alkaline phosphatases) were significantly higher (19–79%) in July 2011 than in March 2012 for both management histories regardless of the soil type (P > 0.05). When comparing all sampling times, the activities of alkaline phosphatase, aspartase and urease (rotation only) showed this trend: July 2011 > March 2012 > July 2012. Activities of phosphodiesterase, acid phosphatase, α-galactosidase, β-glucosidase and β-glucosaminidase were higher in July 2011 than July 2012 in at least one of the two management histories. Total C was reduced significantly from July 2011 to March 2012 in the rotation for both soils. Only the activities of arylsulfatase (avg. 36%) and asparaginase showed an increase from July 2011 to March 2012 for both soil types, which may indicate they have a different origin/location than the other enzymes. EAs continued to be a fingerprint of the soil management history (i.e., higher EAs in the rotation than in monoculture) during the drought/heat wave. This study provided some of the first evidence of the adverse effects of a natural, extreme drought and heat wave on soil quality in agroecosystems as indicated by EAs involved in biogeochemical cycling.  相似文献   
13.
丙二烯氧化物合酶(allene oxide synthase, AOS)是茉莉酸合成途径中关键酶,在茉莉酸合成中具有重要的作用。本研究在砂藓(Racomitrium canescens)干旱胁迫转录组数据中发现一个干旱胁迫下表达量上调的AOS基因,将其命名为RcAOS2,我们对RcAOS2的开放阅读框进行了克隆及相关的生物信息学预测分析,并对RcAOS2在砂藓快速脱水和复水过程中的表达量变化进行了检测。结果显示,该基因cDNA全长1 474 bp,开放阅读框长516 bp。RcAOS2编码蛋白质的相对分子质量为4.36 kD,等电点为5.11,不稳定系数为55.02,为不稳定蛋白质;脂肪系数为19.19;RcAOS2蛋白质疏水性较强,属于疏水性蛋白质,存在信号肽,不属于跨膜蛋白质。系统进化分析表明,RcAOS2蛋白质与其他物种AOS蛋白质亲缘关系较远,是具有AOS序列特征的新类型。实时荧光定量PCR分析结果表明RcAOS2基因在砂藓干旱和复水过程中呈现差异性表达,推测RcAOS2可能参与砂藓的干旱胁迫响应和复水回复过程。本研究成果为进一步研究砂藓抗旱基因功能提供理论基础和备选基因资源。  相似文献   
14.
在全球变暖的气候背景下,近年来干旱频发且不断加剧,对人类的生产生活造成了严重的影响。目前,干旱监测已成为全球气候变化研究的一个热点课题。遥感技术以其客观、及时、经济、覆盖范围广、数据连续等优点,已被证明是干旱监测中最具前景的技术手段。本文基于遥感原理,介绍了归一化植被指数、温度状态指数、标准化降雨指数和标准化降雨蒸散指数等几种常见的干旱指数,综述了运用不同指数干旱监测的主要应用。最后针对目前研究中存在的问题,对今后研究的主要方向作出了展望。  相似文献   
15.
Winter rye (Secale cereale L.) will be especially affected by drought induced yield losses in Central and Eastern Europe in the future because it is predominantly cultivated on low-fertile soils with a poor water-holding capacity. In order to examine the performance of winter rye under different drought conditions, field experiments were carried out during the years 2011, 2012, and 2013 near Braunschweig, Germany. Two sets of genotypes were tested under severe, mild, pre-anthesis, and post-anthesis drought stress in rain-out shelters as well as under rainfed and well-watered conditions. The grain, straw, and total above ground biomass yields, harvest index, grain yield components, leaf area index (LAI), and phenological characteristics were examined, as well as phenotypic correlations between grain yield and further characteristics. Drought induced grain yield reduction ranged from 14 to 57%, while straw yield and harvest index were lesser affected by drought than the grain yield. Under drought conditions, fully ripe was reached up to twelve days earlier than under non water-limited conditions. Pre-anthesis drought mainly reduced spikes m−2 and kernels spike−1 while drought during grain filling reduced the 1000-kernel weight (TKW) only. The grain yield was positively associated with straw yield, spikes m−2, and kernels spike−1 under water limited conditions while the TWK was only positively associated with grain yield under drought during grain filling. Consequently, high pre-anthesis biomass as well as high numbers of spikes m−2 and kernels spike−1 are especially important for obtaining high grain yields under water-limited conditions. Focusing on these traits is, therefore, recommendable for developing drought tolerant rye genotypes.  相似文献   
16.
《农业科学与技术》2016,(3):544-550
The morphological characters, physiological characters, yield traits and yield per plant of total 49 rice cultivars from Ningxia were investigated under conditions of water stress and non-water stress so as to determine the relationship between each trait and yield per plant under water stress and the relationship between each relative character and drought resistance coefficient under water stress and non-water stress. The correlation, grey correlation, stepwise regression and path analyses showed that the til er number per plant, plant height, grain density, effective panicle number per plant and grain number per pan-icle, total 5 traits, were significantly correlated with the drought resistance of rice, and they could be used to identify the drought resistance of rice in Ningxia. In addition, the drought resistance of rice was graded qualitatively according to the subordinate function value of corresponding drought resistance coefficient. The results showed that among the 49 rice cultivars from Ningxia, 6 rice cultivars were highly drought resistant, and 9 rice cultivars were moderately drought resistant, suggesting that the evalua-tion method was feasible and effective.  相似文献   
17.
Sandstone massifs with their deep ravines or gorges offer the instructive opportunity to study the response of organisms to steep environmental gradients. In 2008–2010, many groups of soil fauna were studied along transects across three ravines in the Bohemian Switzerland National Park (north-western Czech Republic), a part of the Elbe Sandstone Massif. Each transect included five sampling positions: two opposite edges, two opposite mid-slope positions, and the ravine bottom. The ravines had a specific microclimate characterized by temperature inversion. In general, the cooler and more humid ravine bottoms had also less acid soil with lower carbon content but enriched by litter of deciduous trees and herbs. The other transect positions were characterized by spruce (mid-slopes) and pine (edges) stands with mor humus, exposed to drought in the upper parts. The soil animal communities (identified to species level) differed substantially in dependence on their position along the transects. Ravine bottoms hosted a diverse soil fauna, including a rich macrofauna. The thick duff layer of acid soils on the slopes and edges hosted a poorer fauna but supported high densities of important decomposers such as enchytraeids, oribatid mites and microbivorous nematodes. In general, these were higher on the slopes, presumably due to the drought exposure of the edges. Vertical position in the ravine and soil pH were the most important factors explaining community composition. This confirmed that the area's high geomorphological diversity, leading to steep microclimatic gradients and heterogenous soil conditions, is a major cause of its high biodiversity. A shift in community structure in the lower parts of the ravines, observed after the first half of the study period, was possibly caused by summer flash floods. An increased frequency and severity of dry spells and flash floods due to heavy rains, predicted by relevant climate warming scenarios, will probably have an detrimental effect on the ravines'soil fauna.  相似文献   
18.
本研究以‘Neruda’,‘Accent’,‘MS’,‘AST’4个品种多年生黑麦草(Lolium perenne L.)为试验材料,研究叶片喷施乙烯利对多年生黑麦草耐旱性的影响。结果表明,喷施乙烯利后干旱处理10 d时,‘Neruda’、‘MS’和‘AST’叶片相对含水量显著提高,所有品种电解质渗透率均下降,‘Neruda’、‘Accent’和‘MS’脯氨酸含量的上升减缓,同时喷施乙烯利提高了‘MS’、‘AST’的过氧化物酶(Peroxidase,POD)活性,但对过氧化氢酶(Catalase,CAT)和抗坏血酸过氧化氢酶(Ascorbate peroxidase,APX)活性影响不显著。复水2 d后,乙烯利促进了‘MS’品种相对含水量和‘Neruda’品种脯氨酸含量的恢复。因此,叶片喷施乙烯利可以不同程度缓解多年生黑麦草干旱条件下的胁迫损伤,一定程度上提高干旱复水后的恢复能力。  相似文献   
19.
为探明东北地区常见野生葱属植物耐旱能力,筛选野生葱属植物耐旱种质资源,本研究以野韭(Allium ramosum L.)、山韭(Allium senescens L.)和蒙古韭(Allium mongolicum Regel)3种葱属植物为材料,采用不同浓度的PEG-6000模拟干旱胁迫,分析其种子萌发期渗透调节物质及酶活性的影响,并结合主成分分析和隶属函数分析比较抗旱性。结果表明:干旱胁迫下,3种葱属植物种子萌发期相对电导率显著升高(P<0.05),丙二醛、脯氨酸、可溶性糖、可溶性蛋白含量及超氧化物歧化酶、过氧化氢酶、过氧化物酶、多酚氧化酶活性均呈现先上升后下降的趋势。3种植物相比,山韭相对电导率最低,渗透调节物质积累量最高,酶活性变化明显。主成分分析表明,4种酶活性之间显示出强相关性。隶属函数分析得出3种植物种子的抗旱性由高到低依次为:山韭 > 野韭 > 蒙古韭。  相似文献   
20.
季节性干旱是影响关中平原农业生产最主要的灾害,研究气候变化背景下的关中平原旱情空间分布特征和变化规律具有重要的科学意义与应用价值。基于关中平原2003—2014年每年3月上旬—5月下旬的旬时间尺度条件植被温度指数(VTCI)的干旱监测结果,采用结构相似度(SSIM)研究关中平原VTCI的空间变化特征及其影响因子。结果表明:关中平原VTCI的空间变化特征具有明显的区域差异性和空间异质性,结构性因素是VTCI空间变化的主要影响因子,总体上受水热、地形分布格局等因素的结构性影响,但微地貌、下垫面覆盖的不同及变化和人为因素导致其主体产生变化。当微地貌、下垫面覆盖类型和人为因素成为主导因子时,结构相似度与其高度相关,对其变化的响应非常敏感。与利用某些指数直接作为干旱的指示因子或构建统计模型分析干旱特征相比,引入研究图像的结构信息的参量SSIM实现了定量、准确、形象地描述干旱的空间分布特征和变化规律。  相似文献   
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