旱后复水,rewatering
1)rewatering旱后复水
1.Effect of rewatering on activity of protect enzymes and membrane peroxidation in Robinia. pseudoacacia seedling旱后复水对刺槐苗木叶片保护酶活性和膜质过氧化的影响
英文短句/例句

1.Effects of Water Stress and Re-Water on Active Oxygen Metabolism of Robinia Pseudoacacia and Playcladus Orientalis Seedling干旱胁迫及旱后复水对刺槐和侧柏苗木活性氧代谢的影响研究
2.Physiological Responses of Robinia Pseudoacacia and Platyclatus Orientalis to Water Stress and Re-Watering刺槐和侧柏苗木对干旱胁迫及旱后复水的生理反应研究
3.Effects of Water Stress and Rewatering on Organic Osmotic Adjustment Substances of Platycladus Orientalis and Robinia Pseudoacacia Seedlings干旱及旱后复水对刺槐和侧柏苗木有机渗透调节物质的影响
4.Physiological Effects of Post-drought and Rewatering on Wheat with Different Pliody;不同倍性小麦对旱后复水的生理生态响应
5.The Compensatory Growth Effect of Maize under Post-Drought Rewatering旱后复水玉米补偿生长效应的生理学响应
6.Effects of Ethylene on Some Physiological Characteristics of Maize at Rehydration after Drought Dress乙烯对旱后复水玉米某些生理特性的影响
7.Effect of Water Stress and Rewatering on Growth and Physiology Characteristics of Platycladus Orientalis and Acer Truncatum Saplings;旱后复水对侧柏和元宝枫幼树生长及生理特性的影响
8.Effect of rewatering on activity of protect enzymes and membrane peroxidation in Robinia. pseudoacacia seedling旱后复水对刺槐苗木叶片保护酶活性和膜质过氧化的影响
9.Osmotic adjustment substance responses of four Elytrigia repens re-watered after drought stress干旱复水后4份偃麦草渗透调节物质的响应
10.Effects of nitrogen on cotton fiber strength formation under water stress and re-watering during the flowering and boll-forming stage氮素对花铃期干旱再复水后棉花纤维比强度形成的影响
11.EFFECTS OF NITROGEN ON COTTON ROOT GROWTH UNDER DROUGHT STRESS AND AFTER WATERING DURING FLOWERING AND BOLL-FORMING STAGES氮素对花铃期干旱再复水后棉花根系生长的影响
12.Study on the Water Requirement of Paddy and Upland Rice and the Genetic Basis of Drought Tolerance at Reproductive Stage in Rice;水、旱稻需水差异及后期抗旱性遗传研究
13.Study of the Ecology Water Demand of Vegetation Restore in the Arid and Semi-arid Prairie Area;干旱半干旱草原区植被恢复生态用水研究
14.The reservoir was very low after the long drought.久旱之后水库的水位很低了.
15.Mechanism of Drain Wetland Restore Water Environment in Semi-arid Areas;半干旱地区沟渠湿地水环境修复机理
16.Influence of Soil Drought on Seeds Germination and Seedling Growth of Soybean and Compensatory Effects of Rewatering during Middle-late Growth Stage;土壤干旱对大豆种子萌发、幼苗生长的影响及复水后的补偿生长研究
17.Physiological response of sugarcane in different water stress and water recovery condition and drought-resistance identification干旱及复水条件下甘蔗的生理响应与抗旱性简易鉴定
18.Effects of alfalfa-grain rotation on soil moisture restoration in semi-arid and drought-inclined areas of the Loess Plateau黄土高原半干旱偏旱区苜蓿-粮食轮作土壤水分恢复效应
相关短句/例句

drought and rewatering干旱和复水
1.Effects of drought and rewatering on photosynthesis and chlorophyll fluorescence of the soybean leaf;干旱和复水对大豆(Glycine max)叶片光合及叶绿素荧光的影响
2.Effect of drought and rewatering on photosynthetic physioecological characteristics of soybean;干旱和复水对大豆光合生理生态特性的影响
3.To investigate the water-saving cultivation and water-efficiency use of soybean,we selected a soybean variety widely cultivated in Henan province,China—Glycine max \'zheng92116\' —to determine the effect of short-term soil drought and rewatering during the blooming stage on soybean leaf photosynthesis and yield.研究发现,在开花期即使短期的土壤干旱,也会对大豆后期的生物量及其分配产生较大的影响,开花期干旱和复水,显著降低了大豆叶片和茎的生物量,使根茎比提高16。
3)drying and rewatering干旱及复水
4)Drought and re-watering干旱和复水
1.Effect of Drought and Re-watering on Photosynthetic Physiology Characteristics and Biomass of Soybean本实验研究了干旱和复水对大豆光合生理及生物量的影响。
5)replanting after winter wheat旱作麦后复种
6)Water stress and rehydration干旱胁迫和复水
延伸阅读

世界防治荒漠化和干旱日世界防治荒漠化和干旱日(world day to combat desertification) 2004年6月17日是第十个“世界防治荒漠化和干旱日”。1994年12月,第49届联合国大会根据联大第二委员会(经济和财政)的建议,决定从1995年起把每年的6月17日定为“世界防治荒漠化和干旱日”,旨在进一步提高世界各国人民对防治荒漠化重要性的认识,唤起人们防治荒漠化的责任心和紧迫感。荒漠化是指气候异常和人类活动等因素造成的干旱、半干旱和亚湿润干旱地区的土地退化。地球陆地表面极薄的一层物质就是土壤层,它对于人类和陆生动植物生存极为关键。没有土壤层,地球上就不可能生长任何草木、谷物,不可能有动物和人类的生存。荒漠化,就是土壤层土质恶化,有机物质下降乃至消失,造成表面沙化或板结从而成为不毛之地。荒漠化不仅造成贫困,而且迫使人们离开故土,造成严重可怕的移民浪潮。地球荒漠化和气侯变化与人类活动密切相关。人口迅速增长和贫困的加剧导致过度耕种、放牧和乱砍滥伐等行为日趋严重,从而加快了土地荒漠化速度。联合国最新统计表明,目前全球有近二分之一的陆地表面、110多个国家和10亿以上人口深受沙漠化影响。非洲和亚洲是土壤荒漠化现象最严重的地区。在非洲,46%的土地和4.85亿人口受到荒漠化威胁。亚洲一半以上的干旱地区已受到荒漠化的影响,其中中亚地区尤为严重。土地荒漠化每年给全球造成的经济损失约420亿美元。我国是世界上荒漠化严重的国家之一,全国沙化土地面积约为174.3万平方公里,占国土总面积的18.2%,超过全国耕地面积的总和。尽管近年我国土地荒漠化防治取得很大成绩,局部地区生态环境得到根本改善,但土地绿化赶不上沙化,“局部好转、整体扩大”的趋势仍未得到根本的改变,沙化的年扩展速度已由1994年前的2460平方公里扩大到目前的3436平方公里。全国40亿亩天然草场也不同程度地出现退化和沙化。今年我国将“世界防治荒漠化和干旱日”的宣传主题确定为“防沙治沙与农民增收”,以使全国人民进一步了解、关心和支持荒漠化防治和防沙治沙工作,加快农民增收步伐,促进荒漠化地区全面、协调、可持续发展。