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61.
气候变化条件下中国灌溉面积变化的产量效应   总被引:7,自引:7,他引:0  
灌溉可以有效缓解气候变化对粮食生产的不利影响。采用中国不同区域2006-2019年实际灌溉用水量,对4个气候模式(GFDL-ESM2M,Had GEM2-ES,IPSL-CAM5-LR,MIROC5)驱动下的3种作物模型(GEPIC、PEPIC和LPJml)的灌溉用水量进行评估,优选模拟结果较好的前5个模式组合,分析RCP2.6和RCP6.0情景下,2021-2050年中国玉米、水稻、大豆和小麦产量变化,评估灌溉面积扩张的增产效应。结果显示:未来气候变化下,2021-2050年降水量的增加使得中国水稻和大豆以及北方地区玉米和小麦产量均呈现增长趋势,其中东北80%左右的地区和西北70%左右的地区玉米产量将提高0.2~0.8 t/hm~2,东北85%左右的地区水稻和大豆增产幅度分别超过1.0、0.5 t/hm~2,东北90%左右的地区和西北75%左右的地区小麦产量增幅分别介于1.0~2.0、0.5~1.0 t/hm~2之间。降水量的减少使得西南南部地区的玉米和小麦产量均下降0.2 t/hm~2左右。不同区域玉米和小麦的增产效应差异明显,由于北部地区光热条件较差、小麦基础产量较低,使得小麦灌溉增产潜力(1%~11%)以及增产效率((0.12±0.06)kg/m~3)均较高,北部地区小麦的灌溉面积扩张可有效应对气候变化的不利影响。  相似文献   
62.
冷藏大黄鱼SSO希瓦氏菌致腐能力差异机制初探   总被引:3,自引:2,他引:3  
为探讨特定腐败菌(SSO)希瓦氏菌(Shewanella)致腐能力的差异机制,采用生化和16S rDNA鉴定冷藏大黄鱼货架期终点的产H2S菌,在灭菌鱼汁和无菌鱼块筛选4株致腐差异的希瓦氏菌,扩增氧化三甲胺(TMAO)还原酶基因及分析其表达量,并预测其蛋白质的理化性质。结果显示,22株产H2S菌均为希瓦氏菌属,其中 S.baltica占54.5%,为S. putrefaciens占40.9%,S. hafniensis占4.5%。希瓦氏菌在灭菌鱼汁中致腐能力存在显著差异,其中S. balticaXH2和XH8的缺点评分和TVB-N最高,S. putrefaciensXH14和XH17菌最低。接种无菌鱼块的4株希瓦氏菌中XH2的样品在72h出现腐败气味,48h细菌高于107cfu/g,产生较高的TMA、TVB-N、尸胺和腐胺和,XH8菌次之,XH14和XH17菌最慢。四株希瓦氏菌都扩增出2490bp的torA基因,且torA基因的表达量与致腐能力密切相关,S.balticaXH2最高。预测的TorA蛋白中S.balticaXH2的分子量和不稳定指数最大,理论等电点和总平均疏水性最小。可见,S. baltica XH2为冷藏大黄鱼的SSO,其强致腐能力与torA基因高表达量和TorA蛋白理化性质有关。研究为阐明希瓦氏菌致腐机制奠定了良好的基础。  相似文献   
63.
2004年6、8和10月分别对乳山湾东流区共进行了3个航次的调查。调查结果表明,乳山湾东流区属于弱还原环境,表层沉积物中硫化物的含量基本呈北侧高、南侧低的趋势,而氧化-还原电位则呈北侧低、南侧高变化趋势。硫化物的垂直分布基本表现为随深度的增加而增加,氧化-还原电位的垂直分布基本表现为随深度的增加而降低。但是,由于受到贝类养殖的影响,出现了较多的例外情况。硫化物含量和氧化-还原电位随季节的变动较明显,硫化物含量8月最高,6月次之,10月最低;而氧化-还原电位则10月最高,6月次之,8月最低。贝类养殖对沉积环境中硫化物与氧化-还原电位有明显影响,养殖区硫化物的含量高于非养殖区,而氧化-还原电位则低于非养殖区。  相似文献   
64.
2006-2007年分4次对余姚四明湖水库水质理化指标、浮游生物群落结构进行了调查,并进行了多样性指数分析及渔产潜力估算。结果表明,四明湖水库浮游植物种类共计8门、47种(属),其中以绿藻为最优势类群,占总密度的36.2%;浮游动物共计3大类、30种,其中原生动占40%;浮游植物年均生物量为10.20mg/L,浮游动物年均生物量2.36mg/L。从水体理化指标数据来看,四明湖水库水质属于II~IV类;从浮游植物群落结构和多样性指数分析结果来看,水库属于富营养水平;根据相关公式估算四明湖水库的鱼产潜力为20  相似文献   
65.
The Andean seed crop quinoa (Chenopodium quinoa Willd.) is traditionally grown under drought and other adverse conditions that constrain crop production in the Andes, and it is regarded as having considerable tolerance to soil drying. The objective of this research was to study how chemical and hydraulic signalling from the root system controlled gas exchange in a drying soil in quinoa. It was observed that during soil drying, relative gs and photosynthesis Amax (drought stressed/fully watered plants) equalled 1, until the fraction of transpirable soil water (FTSW) decreased to 0.82 ± 0.152 and 0.33 ± 0.061, respectively, at bud formation, indicating that photosynthesis was maintained after stomata closure. The relationship between relative gs and relative Amax at bud formation was represented by a logarithmic function (r2 = 0.79), which resulted in a photosynthetic water use efficiency WUEAmax/gsWUEAmax/gs of 1 when FTSW > 0.8, and increased by 50% with soil drying to FTSW 0.7–0.4. Mild soil drying slightly increased ABA in the xylem. It is concluded that during soil drying, quinoa plants have a sensitive stomatal closure, by which the plants are able to maintain leaf water potential (ψl) and Amax, resulting in an increase of WUE. Root originated ABA plays a role in stomata performance during soil drying. ABA regulation seems to be one of the mechanisms utilised by quinoa when facing drought inducing decrease of turgor of stomata guard cells.  相似文献   
66.
This paper reports the effects of irrigation amount and partial rootzone drying (PRD) on water relations, growth, yield and wine quality of Vitis vinifera cv. ‘Tempranillo’ during two consecutive years in a commercial vineyard with a deep, light-clay soil located in Requena, Valencia, Spain. Partial rootzone drying applied at two amounts (100% and 50% of the estimated crop evapotranspiration), was compared to conventional drip irrigation, and also to rainfed vines. Results showed that the effects of irrigation amount on yield and wine quality were different between years. In 2003 with low yield values (around 6.3 t ha−1) irrigation did neither affect grape production nor wine quality. However, in the following year, with much higher general yield (17 t ha−1), the high irrigation dose increased yield by 30% compared to rainfed vines and it also increased must total soluble solids and wine alcohol content. In both seasons, PRD did not significantly affect physiological parameters, nor growth, yield or fruit and wine quality, when compared to the same amount of water applied by conventional drip irrigation. Overall these results suggest that, under our experimental conditions, it was the irrigation amount rather than the system of application what affected vine performance, indicating the difficulties of successfully employing the PRD type of irrigation with a drip system in heavy and deep soils.  相似文献   
67.
The use of plant water status indicators such as midday stem water potential (Ψstem) and maximum daily trunk shrinkage (MDS) in irrigation scheduling requires the definition of a reference or threshold value, beyond which irrigation is necessary. These reference values are generally obtained by comparing the seasonal variation of plant water status with the environmental conditions under non-limiting soil water availability. In the present study an alternative approach is presented based on the plant’s response to water deficit. A drought experiment was carried out on two apple cultivars (Malus domestica Borkh. ‘Mutsu’ and ‘Cox Orange’) in which both indicators (Ψstem and MDS) were related to several plant physiological responses. Sap flow rates, maximum net photosynthesis rates and daily radial stem growth (DRSG) (derived from continuous stem diameter variation measurements) were considered in the assessment of the approach. Depending on the chosen plant response in relationship with Ψstem or MDS, the obtained reference values varied between −1.04 and −1.46 MPa for Ψstem and between 0.17 and 0.28 mm for MDS. In both cultivars, the approach based on maximum photosynthesis rates resulted in less negative Ψstem values and smaller MDS values, compared to the approaches with sap flow and daily radial stem growth. In the well-irrigated apple trees, day-to-day variations in midday Ψstem and MDS were related to the evaporative demand. These variations were more substantial for MDS than for midday Ψstem.  相似文献   
68.
农业灌溉节水潜力及回归水利用研究进展   总被引:6,自引:0,他引:6  
目前,对农业灌溉节水潜力尚未形成一个统一、公认的概念,相应的评价和计算体系也没有很好地建立起来.对农业灌溉节水潜力方面的研究成果进行了全面的回顾总结,提出了存在的问题和以后研究的重点.指出不同尺度回归水重复利用的量化是合理计算真实节水潜力的关键.最后,对回归水重复利用研究计算方法进行了归纳总结,提出了考虑回归水重复利用率的灌溉节水潜力评价思路.  相似文献   
69.
Information about reproductive season, size at sexual maturity and size-dependent reproductive potentials is important for efficient resource management. Such information is necessary to determine seasonal closures and minimum legal size limits. To conserve resources of coconut crab Birgus latro, which are in danger of extinction due to excessive exploitation, their reproductive season, female size at functional maturity and relationship between female size and reproductive potentials were investigated. The reproductive season started in early June and ended late August, and females with higher reproductive potentials showed a tendency to spawn early in the reproductive season. The prohibition of exploiting the resources during the reproductive season, especially early in the season, would be appropriate for sustainability of high reproductive outputs. Fifty percent of investigated females matured functionally at 24.5-mm thoracic length (TL). However, the size at which all females reached functional maturity was 32.3 mm TL, and there was a wide variation in the size of functional maturity among individuals. We must determine minimum legal size by taking the variation into account to allow all individuals to mate at least once before they are caught, which may prevent serious depression in reproductive rate and genetic diversity.  相似文献   
70.
提出了一种改进的积因子层次分析方法—积因子位次赋值数据求权重法,该方法采用算术平均数赋值代替专家打分,最大程度的避免了主观判断可能造成的决策失误。用该方法对影响黑龙江省粮食生产潜力的17个因素进行排序,结果与实际情况较吻合。  相似文献   
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