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1.
[Objective] The aim of this study is to evaluate nitrogen efficient cotton germplasms and improve nitrogen use efficiency. [Method] Eighty cotton germplasms were selected and evaluated in the hydroponic experiment under low (0.25 mmol·L-1) and high (5 mmol·L-1) nitrogen concentration. Different traits for screening were identified and nitrogen use efficiency types were classified. Field experiments were also performed for comparison and confirmation of the identified germplasms. [Result] The results showed that there were significant differences in the total plant dry matter, shoot nitrogen accumulation and nitrogen absorption efficiency in cotton germplasms at the two nitrogen levels. Based on coefficient of variation, principal component analysis and correlation, six traits including total plant dry matter, shoot dry matter, root dry matter, total nitrogen accumulation, shoot nitrogen accumulation and nitrogen absorption efficiency were used as screening indicators. According to the Heatmap clustering analysis and the nitrogen efficiency comprehensive index, two germplasms (Lu05R59 and CCRI 69) were identified as low nitrogen tolerant and nitrogen efficient, and two germplasms (Coker 201 and Xinluzhong 30) as low nitrogen sensitive and nitrogen inefficient. The results of field experiment were consistent with the results of the hydroponic culture at the seedling stage. [Conclusion] It was finally determined that Lu05R59 and CCRI 69 were the low nitrogen tolerant and nitrogen efficient germplasms, and Coker 201 and Xinluzhong 30 were low nitrogen sensitive and nitrogen inefficient germplasms. The results of these studies provide the possibility for screening and rapid identification of nitrogen use efficiency in cotton at the seedling stage, and provide the ideal materials and theoretical basis for further study of cotton nitrogen efficient.  相似文献   
2.
利用偏光显微镜镜检等手段,研究了14科22个属、种的双子叶植物的根-茎转变区,提出较全面的有关概念并发现数种异于一般的转变方式,根据该区的存在部位和长短以及结构特点,提出几套新的分类法:1.根型、根-下胚轴和下胚轴型;2.剧变型及缓变型;3.正常型和异常型。  相似文献   
3.
 1986、87两年分别采用上一年无病种薯28个品种/系各3块,取中部切决于切面上蘸接近等量和等浓度的黑疤病(Ceratocystis fimbriata)孢子悬液,恒温、恒湿培养,定期取样作侵染区组织徒手切片、乳酚油封片用BHZ型0lympus荧光显微镜(B+G滤镜激发)观察,取得以下资料。  相似文献   
4.
黄土高原不同纬度下刺槐林土壤生态化学计量学特征研究   总被引:20,自引:0,他引:20  
为了阐明黄土高原不同纬度地区刺槐林土壤的生态化学计量学特征,对黄土高原由南向北13个县区刺槐林下的土壤碳、氮、磷化学计量学特征进行了测定与分析.结果表明:(1)阳坡0 ~ 10 cm土壤C∶N比、C∶P比、N∶P比的变化范围分别为9.48~15.33、8.93~ 59.79、0.77~5.11,10 ~ 20 cm土壤分别为9.13 ~13.57、7.85~ 37.69、0.44 ~ 3.19;阴坡0~ 10 cm土壤C∶N比、C∶P比、N∶P比分别为8.58 ~13.75、9.46 ~ 47.71、0.76~ 3.63,10~20 cm土壤分别为7.60~13.41、5.99 ~31.28、0.54~2.65.(2)土壤全氮的空间分布与有机碳具有一致性,均随纬度的升高呈指数减小的趋势,表层大于表下层,且随着纬度的升高该差异逐渐减小;全磷的空间变异性低于有机碳和全氮,研究区内土壤全磷含量随纬度的升高呈先增加后减小的趋势.(3)土壤C∶N比随纬度的升高无明显的变化趋势,而C∶P比和N∶P比随纬度的升高显著减小;土壤C∶N∶P比均随着土层增加而减小,但差异不显著.  相似文献   
5.
酶解工艺参数不仅会影响畜禽骨蛋白的酶解效率,而且会改变骨胶原肽产物的肽分子量分布、氨基酸组成和微结构性能,从而影响其高值高效化利用。以制备均一性低分子量骨胶原肽为目的,以牛骨粉为研究对象,以水解度为主要评价指标,考察碱性蛋白酶、中性蛋白酶、复合蛋白酶和风味蛋白酶对牛骨粉的酶解效果,探究双酶分步酶解工艺、脂肪酶预处理的单独与组合应用对酶解效果的提升作用,选定最优的低分子量骨胶原肽制备工艺;结合酶解过程中各项指标的变化、产物表征分析和Person相关系数法分析不同复合酶解工艺对产物特性的影响及作用机制。研究发现:经脂肪酶预处理-碱性蛋白酶-复合蛋白酶酶解工艺制备的骨胶原肽产物具有最佳的理化性质,优化的工艺参数为:底物质量浓度为0.09 g/mL、初始pH值7.5的牛骨粉溶液加入碱性脂肪酶(加酶量0.08%)在40℃下反应4 h,再加入碱性蛋白酶(加酶量0.36 U/g)在60℃下反应5 h后,最后加入复合蛋白酶(加酶量0.36 U/g)在55℃下反应5 h,此时,水解度可达16.12%,总游离氨基酸含量可达171.571 mg/g,其Mw、Mw/...  相似文献   
6.
灌浆成熟期温度对稻米品质及有关生理生化特性的影响   总被引:6,自引:0,他引:6  
1987年在湖南农学院分早、中、晚三季研究灌浆成熟期温度对稻米品质及有关生理生化特性的影响,结果表明:a.茎、鞘、叶的总淀粉和粗蛋白质含量快速减少,籽粒总淀粉和蛋白质积累快,直链淀粉和蛋白质含量升高,淀粉酶和蛋白酶浓度提高,气温大于35℃时淀粉酶和蛋白酶的活性则更高,可溶性糖在灌浆成熟后期增加,温度在30~35℃范围内,Q酶活性最高,籽粒直链淀粉减少。b.灌浆成熟期温度提高,籽粒灌浆速率增大,时间缩短,谷粒物质致密度差,容重下降,垩白指数增大,胶稠度变硬,糊化温度上升。此外,还探讨了稻米品质形成的气候生态生理机制。  相似文献   
7.
研究了无胁迫和NaCl胁迫条件下,同基因型二倍体葡萄4个脯氨酸累积变异系和对照系愈伤组织的过氧化氢酶(CAT)和超氧物歧化酶(SOD)活性。结果表明,在无胁迫条件下,葡萄脯氨酸累积变异系的CAT和SOD活性显著高于对照系,4个变异系的CAT活性分别是对照的2.41,2.30,2.29和2.13倍,SOD活性分别是对照的4.51,3.69,3.84和3.72倍。在一定浓度NaCl胁迫下,对照系和变异系的CAT和SOD活性都有一定的增加,变异系的CAT和SOD活性仍高于对照系。脯氨酸累积变异系CAT和SOD活性高是其对NaCl胁迫具有较强抗性的可能原因之一  相似文献   
8.
小麦品种产量与产量因素通径分析   总被引:11,自引:0,他引:11  
通过对94个不同品种小麦在渭北地区干旱条件下的试验数据,分类建立小麦产量与产量因素的回归关系,并做了通径分析。结果表明,在分类小麦的关系中,穗粒数对产量的总影响和直接影响都最大。  相似文献   
9.
【目的】研究新疆“宽早优”模式下施氮量对棉田碳足迹的影响。【方法】采用生命周期评价法(LCA),设置不同施氮水平(0、120、240、360 kg/hm2),分析施氮量对棉田碳足迹、碳足迹构成及产量的影响。【结果】当氮肥施用量( 360 kg/hm2)减少33.3%( 240 kg/hm2)和66.7%( 120 kg/hm2)时,碳足迹分别下降了8.4%和17.6%。在N360处理下籽棉产量为8 035.4 kg/hm2,在N240处理下籽棉产量为7 797.2 kg/hm2,且N240、N360处理棉花籽棉产量差异不显著。灌溉用电、农膜及化肥引起温室气体排放对碳足迹贡献最大,分别占47.4%、25.2%和24.3%。随着施氮量的增加,棉田N2O排放总量随之增加,N360分别比CK、N120和N240显著高221.9%、123.1%和 33.1%。【结论】随着施氮量的减少,棉花单位面积碳足迹也随之减少,在不影响产量的情况下,降低氮肥用量可以减少“宽早优”棉田碳足迹,在新疆地区实现以较少的碳足迹来获得较高的产量。  相似文献   
10.
Xu  Xiangru  Pei  Jiubo  Xu  Yingde  Wang  Jingkuan 《Journal of Soils and Sediments》2020,20(3):1173-1181
Purpose

Mollisols are the most fertile, high-yielding soils in the world. During the past several decades, Mollisols have lost about 50% of their antecedent organic carbon (C) pool due to soil erosion, degradation, and other unsuitable human activities. Therefore, restoring soil organic C (SOC) to Mollisols via reasonable management is crucial to sustainable development and is important for environmental stability. However, the existing literature on SOC and soil quality has focused on one soil type or on a given region where Mollisols occur, and the degree of SOC depletion and stabilization in Mollisols have not been comprehensively evaluated. Overall, we propose to develop an optimum scheme for managing Mollisols, and we outline specific issues concerning SOC restoration and prevention of SOC depletion.

Materials and methods

In this review, we identify the uncertainties involved in analyses of SOC in Mollisols as related to management practices. According to the existing literature on SOC in Mollisols at the global scale, we analyzed the results of SOC depletion research to assess management practices and to estimate the C amount stabilized in Mollisols.

Results and discussion

The review shows that the SOC stocks in Mollisols in North America under cropped systems had 51?±?4 (equiv. mass) Mg ha?1 in the top 30 cm soil layer. The SOC contents in Northeast China decreased from 52 to 24 g kg?1 (46%) after 150 years of cultivation management. All of the Mollisols regions in the world are facing the challenge of SOC loss, and this trend could have a negative influence on global climate change. Hence, it is very important to take proper measures to maintain and enhance organic C contents in Mollisols.

Conclusions

We concluded that reasonable management practices, including no-tillage, manure and compost fertilization, crop straw returning, and mulching cultivation, are the recommended technologies. The C restoration in Mollisols is a truly win-win strategy for ensuring the security of food and soil resources while effectively mitigating global climate change. Thus, more attention should be given to protective management and land use for its impacts on SOC dynamics and soil properties in Mollisols regions.

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