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1.
受经济和气候驱动,长江经济带水田空间格局发生了显著变化,影响区域粮食安全与生态安全。本研究基于1990-2015年土地利用遥感监测数据,利用GIS的空间分析功能,探究长江经济带水田空间格局动态变化特征,采用当量因子法计算生态系统服务价值(ESV),分析了水田变化的综合影响。结果表明:1)1990-2015年长江经济带水田规模持续缩减,共减少了17390km2,减幅呈增长态势具有显著地域差异,长江中上游与下游的水田减幅相差约为9.56%。其中下游减幅较大,水田占区域比例随之降低,中上游恰好相反。2)由于经济建设及水产养殖的发展,水田主要转化为建设用地和水系,水田主要由水系、旱地和湿地等转化而来。长江三角洲城市群、长江中游及成渝城市群的水田变化最为剧烈,建设用地侵占水田扩张的现象分布广泛,水田转为水系主要在两湖平原局部地区。3)水田与其他生态系统的转化对ESV是正影响,水田转为水系对此贡献最大,其转化规模决定了不同时期ESV净增量的大小,水系转化为水田损失的价值最多,建设用地侵占水田次之。不同市域的水田变化情况不一致,因此ESV增减情况具有明显差异。4)生态系统服务中水文调节、水资源供给增强的同时,食物生产、气体调节受到严重损害,与水资源规模扩大和水田资源大量流失有直接关系。研究结果有助于揭示长江流域水田的时空变化过程及其对各项生态系统服务的影响,可为区域土地利用规划、农业政策与生态可持续发展提供理论支持。  相似文献   
2.
研究了11个葡萄品种3年生树在四川乐山地区避雨栽培条件下的花芽分化表现。结果表明,结果母枝的花芽分化率,魏可、维多利亚、黑芭拉多、金手指、金优2号和巨玫瑰6个品种的都高于50%,较易形成花芽;户太8号、巨峰、夏黑的在43%~48%;美人指和红指较难形成花芽。结果母枝不同节位的花芽分化率,多数品种在第3节位≥50%;结果枝上花穗着生节位在第3.8~4.9节,其中双花率以巨玫瑰、巨峰和户太8号较高,分别为83.45%、73.61%和73.06%。以结果母枝的花芽分化率≥50%节位作为冬剪的最低节位,则金优2号、户太8号、巨玫瑰、金手指、维多利亚5个品种在第3~4节,黑芭拉多和巨峰2个品种在第2~3节,魏可在1~2节。夏黑表现花芽分化率较低,为43.33%,可能与夏黑不耐弱光有关,设施栽培时应加强透光性。  相似文献   
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4.
为了解流溪河光倒刺鲃国家级水产种质资源保护区鱼类群落结构,分析不同河段、不同季节鱼类群落多样性的变化,于2017年12月-2018年10月对保护区上、中、下游的鱼类开展了每个季度一次的调查。调查结果显示,共采集鱼类57种,隶属于5目14科50属,其中鲤形目43种、鲈形目6种、鲇形目5种,合鳃鱼目2种,鳉形目1种;计算57种鱼类的相对重要性指数,结果显示,尼罗罗非鱼、越南■及鲤鱼为2017-2018年度优势种;Shannon-Wiener多样性指数、Margalef丰富度指数和Pielou均匀度指数计算结果显示,下游鱼类群落的多样性及均匀度最高,夏季鱼类群落的多样性、丰富度及均匀度最高;各监测点之间的种类相似性系数显示,保护区上中游、上下游之间鱼类种类组成为中等不相似,中下游种类组成为中等相似,春夏、春冬、夏冬及夏秋季节鱼类种类组成为中等不相似,春秋、秋冬季节为中等相似;ABC分析结果显示,春、夏及冬季鱼类群落处于稳定状态,秋季处于中度干扰状态。  相似文献   
5.
近60年河北省冬小麦干旱风险时空规律   总被引:2,自引:0,他引:2  
张力  陈阜  雷永登 《作物学报》2019,45(9):1407-1415
干旱是造成作物减产的主要自然灾害,开展作物干旱成因机制和时空特征研究,对于稳定区域粮食生产有重要意义。本研究基于河北省内18个国家标准气象站点1958—2016年的长时间序列观测资料,采用水分亏缺指数(CWDI)作为干旱评价指标,分析了近60年来河北省冬小麦的干旱风险时空格局;通过CWDI对不同气象因子的敏感性分析,进一步探究了冬小麦干旱的成因机制。研究表明,冬小麦生育期需水量和干旱风险呈先增后减再增加的特征,在拔节–抽穗阶段的干旱风险最高,其次是抽穗-成熟阶段。冬小麦全生育期间干旱等级以重旱和特旱为主,特别在其产量形成的关键生长中后期,河北省东南部黑龙港地区面临较高的旱灾风险。冬小麦干旱受降水、气温、湿度等多种因素的影响,其中影响最大的是降水;气温是影响冬小麦生育后期干旱程度的关键因子,伴随近几十年气候变化冬小麦生长期内温度明显升高,将增加冬小麦生长期的耗水量和灌溉需求。本研究揭示了气候变化影响下河北省冬小麦干旱风险的时空演变规律,识别出了干旱灾害的高风险区和关键生育期阶段,可为优化冬小麦灌溉管理和农田防灾减灾提供参考依据。  相似文献   
6.
The upper earshoots with higher superiority usually have higher yield potential and higher efficiency. To determine the key period for the asynchronous differentiation of superior and inferior earshoots and how hormones are involved in this process, a two-year experiment was designed using two maize hybrids: Suyu 41 (S41, single-ear hybrid) and AN 101 (A101, double-ear hybrid). The results showed that the lag of lower earshoot differentiation was not only caused by the delay of the differentiation starting time but also related to extension of the duration in spikelet differentiation (stage II) and sexual organ formation stage (stage IV). From 12 days before silking (DBS), the contents of indole-3-acetic acid (IAA), zeatin riboside (ZR)+zeatin (ZT), and gibberellic acid (GA3) in both upper and lower earshoots of the two hybrids increased dramatically and then decreased quickly. ABA slightly increased in the two hybrids and then decreased slowly in S41, while it was maintained at a high level in A101. At 8 DBS, i.e., the transition period from floret differentiation to sexual organ formation stage, not only the growth of upper-to-lower earshoot difference (ULED), but also the values for ULED of IAA, ZR+ZT and GA3 were all significantly higher in S41 than in A101. Furthermore, the upper-to-lower hormone ratios IAAU//AAL and (ZR+ZT)U/(ZR+ZT)L were also much higher in the single-ear hybrid than in the double-ear hybrid, while the GA3U/GA3L and ABAU/ABAL had no significant differences. In addition, the time course of ULEDhormone/ULEDearshoot growth rate also suggested that the hormones work in different ways in earshoot superiority/inferiority formation. The delayed differentiation of lower ear shoots was conclusively related to the later initiation of differentiation and the longer durations of specific differentiation stages. Compared with the regulating roles of IAA and ZR+ZT in the key period (8 DBS) of superiority/inferiority differentiation, GA3 seems to be affected earlier, while ABA contributes little to this process.  相似文献   
7.
Niche differentiation facilitates the coexistence of species within a community through avoidance of competition via mechanisms involving spatial, temporal and/or trophic dimensions. Where invasive species coexist in their non‐native range, niche differentiation could allow their persistence at higher levels of abundance. Here, we tested whether there was temporal and/or trophic niche differentiation between two congeneric invasive goby species (Rhinogobius cliffordpopei and Rhinogobius giurinus) in the sublittoral habitat of Lake Erhai (south‐west China) through quantifying their diel and seasonal rhythm of locomotion activities, feeding activities and diet composition. Both species displayed two similar diel peaks in activity and two main feeding periods (6:00–10:00 and 18:00–22:00), with rhythms of locomotion and feeding activity not differing significantly between the species in each season. Their diets had a high degree of overlap, being primarily composed of macrozooplankton, aquatic insects and shrimp larvae, with no diel changes across the seasons. Thus, in this habitat, there was no clear temporal or trophic niche differentiation between the invasive congeners, indicating their coexistence with high temporal and trophic overlap. In conjunction with data from the littoral and profundal habitats, the gobies revealed different strategies across the habitats (e.g. spatial segregation, trophic niche differentiation) that minimised their competitive interactions and promoted their coexistence. This suggests that the interactions of invasive fishes during the integration into native communities can be context dependent, varying according to factors including habitat and the availability of food resources.  相似文献   
8.
基于农作制分区的1985—2015年中国小麦生产时空变化   总被引:4,自引:0,他引:4  
Comparing spatio-temporal variation characteristics of China’s wheat production, yield, sown area and yield-area-contribution in different farming zones in the past 30 years could help improving wheat planting layout and adjusting planting structure. Concentration index, rate of change, moving of gravity and resolution of yield-area-contribution were used to analyze spatio-temporal changes of China’s wheat production and yield-area-contribution based on county wheat production statistics including sown area, production and yield from 1985 to 2015. The wheat sown area decreased obviously in Northeast farming region, Northwest farming region and South farming region and increased rapidly in Huang-Huai-Hai farming region and Yangtze Plain farming region. In Huang-Huai-Hai farming region, the concentration indexes of Haihe Plain farming region, Huang-huai Plain farming region and Fenwei Basin farming region reached to 20.64%, 25.77%, and 21.65% respectively in 2015. Wheat production increased significantly by more than 48 milliontons in Huang-Huai-Hai farming region, and nearly 8 million tons Yangtze Plain farming region but decreased by more than 2.6 million tons in Northeast farming region. In Huang-Huai-Hai farming region, wheat production was concentrated in Haihe Plain farming region, Huang-huai Plain farming region and Yuxi Hill farming region. The average wheat yield continuously improved during the study period, Huang-Huai-Hai farming region and Northwest farming region had the yield increase up to 103.5 kg hm -2 and 92.9 kg hm -2 each year. Wheat yield in Yuxi Hill farming region, Fenwei Basin farming region and Haihe Plain farming region was relatively high in Huang-Huai-Hai farming region. The yield-reduced area was mainly caused by the decreasing of sown area, while the yield-area-contribution rate was different in yield-increased area. Yield-dominant counties were reduced, area-dominant counties were increased and yield-area-dominant counties were relatively steady. In production increased area, yield-dominant and yield-area-dominant counties were the main types in Huang-Huai-Hai Farming region, area-dominant and yield-area-dominant counties were the main types in Yangtze Plain farming region. Chinese wheat production was increasingly concentrated in Huang-Huai-Hai farming region which has high and rapid increase of wheat yield over the past three decades. Haihe Plain farming region, Huang-huai Plain farming region and Fenwei Basin farming region were the most concentrated areas in Huang-Huai-Hai farming region for wheat production during this period. Wheat yield and sown area jointly promoted the increase of wheat production in Huang-Huai-Hai farming region, wheat sown area was the crucial factor to increase wheat production in Yangtze Plain farming region, especially in the north of Jiangsu, Anhui province and greater part of Xinjiang.  相似文献   
9.
分子标记技术在工业大麻性别分化研究中的应用进展   总被引:1,自引:0,他引:1  
工业大麻性别表达影响着工业大麻种子、纤维和药用成分产量,其性别表达除了受到遗传物质控制外,还受到外界环境条件的影响,这种复杂性使得性别研究一直是工业大麻研究的难点和热点。分子标记技术能在DNA水平上鉴定工业大麻性别,开发与工业大麻性别紧密连锁的分子标记可为大麻性别早期鉴定和特定性别分子辅助选择育种提供理论依据。本文就分子标记在工业大麻性别研究中的应用进展进行了总结,并对应用前景进行了展望。  相似文献   
10.
西江流域卷口鱼线粒体D-loop序列的遗传多样性分析   总被引:1,自引:0,他引:1  
为研究西江流域广西境内卷口鱼(Ptychidio jordani)种群的遗传变异情况,自广西境内6个江段采集了139尾样本,采用PCR与DNA测序技术分析其线粒体D-loop序列的遗传多样性及群体历史动态;139条D-loop序列长度均为725 bp,碱基组成A+T (65.7%)远远高于C+G (34.3%),共检测到变异位点25个,转颠换比R值为11.5。139尾样本共定义23个单倍型。单倍型的NJ系统树以及网络结构图显示,23个单倍型间有2个明显分支,不同地理群体来源的单倍型混杂分布在2个分支中,未能观察到明显的地理聚群。6个群体遗传多样性较好,单倍型多样性Hd=0.71585~0.92063,核苷酸多样性Pi=0.00173~0.00668,遗传分化极其显著(遗传分化系数Fst=0.36737,P<0.001)。AMOVA分析表明,群体内变异占63.26%,群体间为36.74%。中性检验(Tajima’s D= –0.50322,P=0.34600;Fu’s Fs= –5.05210,P=0.08800)与核苷酸错配分布表明,西江流域卷口鱼种群近期内未经历过种群扩张。综上所述,西江流域广西境内的卷口鱼遗传多样性表现为高单倍型、低核苷酸多样性的特征,群体间不同程度的遗传分化表明水坝阻隔及捕捞因素可能促进其发生,而水利梯级开发可能是促进卷口鱼群体遗传分化的首要原因。  相似文献   
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