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981.
为明确杂交中籼水稻在江淮地区种植的适宜播期,提高稻米品质,选用3个杂交中籼水稻品种(系)分5个播期,利用AMMI模型对其营养食味品质性状(糊化温度、胶稠度、直链淀粉含量、蛋白质含量)进行了稳定性和适应性分析。结果表明,糊化温度、胶稠度、直链淀粉含量、蛋白质含量4项指标在基因型间、播期间及基因型×播期互作间的方差均达到极显著水平,这4项指标的交互效应主成分值(IPCA)差异也达到显著水平;穗期(抽穗至成熟期)平均气温较高、累计日照时数长、气温日较差大,有利于杂交中籼水稻品质的提高;3个参试品种(系)营养食味品质稳定性表现为新两优6号两优1128丰两优4号,5个播期对杂交中籼水稻品质影响表现为4月20日5月10日5月20日4月30日5月30日。  相似文献   
982.
《Plant Production Science》2013,16(4):360-366
We examined biomass dry matter and nutrient uptake of live plant parts, leaf area index, and litter of winged bean (Psophocarpus tetragonolobus) and velvet bean (Mucuna pruriens) 12, 18, 24 and 30 weeks after sowing (WAS). The two plants had similar leaf and stem+petiole biomasses. At 30 WAS winged bean had a significantly lower pod yield than velvet bean. Between 18 and 30 WAS, winged bean produced less litter than velvet bean due to differences in growth stages. The total mulch of live parts and litter of winged bean and velvet bean completely covered the ground by 18 and 12 WAS, respectively. Compared to velvet bean, the leaf and stem+petiole of winged bean had a significantly higher N concentration; significantly higher N uptake at 24 and 30 WAS; significantly lower C/N ratio; and significantly higher P, K and Mg concentrations. In winged bean, P uptake was significantly higher in the leaf at 30 WAS and in the stem+petiole at all harvesting times. The total biomass of the leaf, stem+petiole and litter of winged bean was 317–561 g DM m-2, and their N content was 12.3–17.7 g m-2. The total biomass of live parts and litter of winged bean might be sufficient to suppress weeds and increase soil N. Winged bean is an appropriate legume cover crop and green manure due to its longer growing period and superior ground-covering ability and high N input.  相似文献   
983.
通过分析黄淮海地区的水资源供需现状,阐述了夏玉米产量与降水的关系及夏玉米耗水量和耗水规律,并提出了结合中长期天气预报、秸秆覆盖和"双行交错"种植技术等措施,为解决黄淮夏玉米高产过程中水分利用等问题提出了新思路。  相似文献   
984.
The use of improved high yielding crop varieties is an important avenue for reducing hunger and food insecurity in developing countries. Using cross-sectional data obtained from a survey conducted during 2013 crop season, we performed a probit model(plot-level analysis) to determine the probability of adopting new improved rice varieties(NIRVs) by smallholder farmers particularly from two main agro-ecological regions(hills and tropical plain terai regions) of Central Nepal. The results revealed that education, extension services and seed access play significant roles in adoption decisions.Additionally, farm and field characteristic variables such as farm size, endowment of favorable land type(e.g. lowlands), and animal power(e.g. oxen) are the key factors influencing the probability of adopting NIRVs. The results showed that technology specific variables(e.g. yield potential and acceptability) are significant for explaining adoption behavior, implying that it is important to take farmers' preferences to varietal characteristics into consideration in the design of a research and development program. Given the significant role played by extension and access related variables, increased emphasis on information dissemination, field demonstration, and farmers' participatory research and training programs to popularize new rice varieties and enhance their adoption rate are required. This also suggests that policy intervention should be made on improving the educational status of farming households, and developing programs on varietal package of rice seed which offer farmers a variety of choices among the appropriate pools of germplasm. Such programs ultimately help farmers develop more profit-oriented behavior which are necessary to enhance adoption rate, production and food security in the long run.  相似文献   
985.
高寒草甸植物正构烷烃特征分析   总被引:1,自引:0,他引:1  
为研究高寒草甸植物正构烷烃分布特征,对采自黄河源区高寒草甸的58种植物进行了测定和分析。结果表明,单种植物中正构烷烃的碳数在C8和C40之间,含量分布范围为0.81~22.88 mg/kg,其中碳数为C27、C29、C31、C33正构烷烃的含量均较高;总正构烷烃(Ctotal)含量变化范围为35.00~78.64 mg/kg,长链正构烷烃(C25-36)含量范围为16.11~58.68 mg/kg,条叶垂头菊中总正构烷烃和长链正构烷烃含量最小,而阿尔泰狗娃花含量最大。58种植物中含量最高的正构烷烃(Cmax)分布特征为:C19有1种,C22有2种,C27有2种,C29有23种,C31有27种,C32有1种,C33有2种。植物中正构烷烃总正构烷烃碳优势指数(CPItotal)范围为1.07~4.32,CPI25-36范围为1.12~8.20,总的正构烷烃平均碳链长度(ACLtotal)范围为23.52~27.22,ACL27-33范围为28.03~31.07,蜡质指数(Pwax)变化范围为0.60~0.92。植物中长链正构烷烃丰富,奇数碳含量分布优势明显。  相似文献   
986.
基于WIN-YIELD软件的黄土丘陵区作物产量地形分异模拟   总被引:4,自引:1,他引:4  
退耕还林是目前黄土丘陵区整治生态环境和控制水土流失的主体政策。为提高退耕政策贯彻落实的科学性,该文基于WIN-YIELD软件,利用2002年延安气象站的逐日气象数据和燕沟流域地貌、土壤及土地利用等资料,通过对玉米、马铃薯、高粱、大豆和豌豆等作物产量随地形高程、坡度和坡向变化的模拟,以揭示作物产量与地形条件的关系。研究发现:地形坡度对作物的产量有着重要影响,地形坡度越大,作物的产量越低;地形高程除对马铃薯有一定影响外,对其它作物产量的影响不大;地形坡向对不同作物产量的影响普遍较微弱。  相似文献   
987.
针对常规寒地水稻移栽田前期除稗剂多采用一次性施药,药效和安全性差的问题,通过对寒地水稻移栽田稗草的防治采取插前5~7 d、插后15~20 d分期施药试验研究,结果表明:分期施药对稗草防治效果好,提高了对水稻的安全性。  相似文献   
988.
在目前安徽沿江地区不能实现棉花机采的情况下,提出了"植株高度既适于机采也适于人工采收,含絮力适中(不易落花便于集中采收),生育期适中(播种到采收为180天左右),纤维品质及产量性状较优(纤维长度30.0 mm以上,断裂比强度30.0 cN/tex以上,马克隆值5.0以下,籽棉产量3750 kg/hm2以上,衣分在40%...  相似文献   
989.
为揭示东北黑土区农业干旱脆弱性的时空演化过程与特征,本研究以黑龙江省为例,从暴露水平、敏感程度和适应能力的视角,构建了农业干旱脆弱性评价模型,解析了2000—2020年黑龙江省水稻、玉米、大豆的干旱脆弱性的时空演进过程与特征。结果显示:2000—2011年农业干旱事件频发,其中有8个敏感事件和11个韧性事件,2011年以后再无农业干旱事件发生,2011—2020年水稻、玉米和大豆的干旱脆弱性较2000—2010年分别下降了46.14%、51.50%和38.53%;受作物生育需水量与地区降水不匹配的影响,大豆、水稻的干旱脆弱性相对较高。研究表明,黑龙江省农业干旱脆弱性总体呈先增强后减弱的演进趋势,呈北高南低和东西高、中部低的空间分布格局。基于该结果,本研究提出了旨在提升东北黑土区农业适应气候变化韧性的政策及措施建议。  相似文献   
990.
The Okavango catchment in southern Africa is subject to environmental as well as socio‐economic transformation processes such as population growth and climate change. The degradation of soil and vegetation by deforestation and overgrazing is one of the downsides of this development, reducing the capacity of the land to provide ecosystem functions and services. In this study, climate simulations are brought together with secondary socioeconomic, pedologic and remote‐sensing data in a GIS‐based assessment of the factors commonly associated with land degradation risk. A high resolution overview is provided for decision‐makers and stakeholders in the region by identifying priority intervention areas where a long‐term decline in ecosystem function and land productivity is most likely to occur. The approach combines 19 risk factors into seven individual ratings for topography, landcover, soil, demography, infrastructure, livestock pressure and climate. These ratings are then weighted and combined into an integrated degradation risk index (DRI). The results show that the land degradation risk is quite heterogeneously distributed in the study area and caused by different factors. Three hot‐spots are identified and compared, one of which is in the far northwestern part of the catchment, one around the local center Rundu and one on the outskirts of the Okavango Delta. We conclude that the approach is suitable to give an overview on degradation risk in the study area, although the classification process is a crucial procedure that should be standardized for further research. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
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