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11.
对中国甘蔗产业标准发布情况、标准分布、文本质量、管理现状等做了详细的分析研究,指出中国甘蔗产业标准及标准体系建设中存在的主要问题,提出相应甘蔗产业标准化体系建设的对策和建议。  相似文献   
12.
Sugarcane (Saccharum spp.) is an economical crop in the tropical and subtropical countries. However, because of global climate change, flooding has become problematic, particularly during the rainy season, in Thailand. We investigated the effects of floods on three commercial sugarcane cultivars, namely NiF8, U-thong 6 (UT6), and U-thong 9 (UT9), as well as Erianthus spp. Growth was assessed using a pot experiment in a glasshouse with two treatments: (1) control and (2) 60 d of flooding followed by 30 d of normal conditions. In comparison with control, during prolonged flooding, Erianthus showed greatly decreased CO2 assimilation, whereas NiF8, UT6, and UT9 showed slightly declined CO2 assimilation. Growth in plants subjected to 60 d of flooding was less influenced by floods while sucrose content was not affected except in UT6. During flooding, some roots died, resulting in plants compensating adventitious roots to offset the negative effects of root death and to assist them in maintaining their growth, which appeared from the submerged nodes, with different characteristics for each cultivar. However, 30 d after draining, roots remained damaged, while adventitious roots died, resulting in lesser growth as compared with the control, but it did not significantly affect sucrose content and sugar yield. This study suggests that sugarcane plants need to produce the adventitious roots to compensate their roots’ death during flooding and require time to recover their root system after flooding for obtaining the optimum yield and quality at harvest.  相似文献   
13.
为明确中国东北地区水稻纹枯病病原菌种类及融合群的归属情况, 2015-2017年从黑龙江省、吉林省和辽宁省的17个水稻主产区采集水稻纹枯病标样, 分离获得水稻纹枯病菌214株, 运用水稻纹枯病菌的不同病原菌及融合群的特异性引物对214株水稻纹枯病菌进行病原菌种类和融合群鉴定, 并利用rDNA内转录间隔区(ITS)序列, 对供试水稻丝核菌的融合群归属进行了分析。结果表明:供试214株水稻纹枯病菌分属于茄丝核菌Rhizoctonia solani和水稻丝核菌Rhizoctonia oryzae-sativae, 菌株数分别为198株和16株, 占比分别为92.52%和7.48%。茄丝核菌菌株分属于2个融合群, 分别为AG1-IA和AG4, 菌株数分别为191株和7株, 占比分别为96.46%和3.54%。水稻丝核菌菌株均属于AG-Bb融合群, 菌株数为16株。不同年份水稻纹枯病的病原菌种类及融合群出现的频率和地域分布无明显变化, 而不同地域间水稻纹枯病病原菌的种类及融合群具有明显的分化特征, AG1-IA融合群在中国东北三省各个水稻产区均有分布且均为优势融合群, AG4融合群在辽宁省盘锦市出现频率最高, 水稻丝核菌AG-Bb融合群在吉林省吉林市、通化市和梅河口市出现频率最高。  相似文献   
14.
AP2/ERF基因家族转录因子普遍存在于植物中,参与植物体内的各种生物学过程,包括植物的生长发育、生物和非生物胁迫响应等。前期转录组测序的结果发现马铃薯‘加湘1号’一个AP2/ERF家族基因(PGSC0003DMG400012154)在接种晚疫病菌(Phytophthora infestans)24 h后被显著激活。从接种P.infestans 24 h的‘加湘1号’的总RNA中通过RT-PCR获得了该基因CDS序列为885 bp,BLAST分析显示该基因编码一个295个氨基酸残基的蛋白,并且含有1个AP2/ERF结构域,是AP2/ERF转录因子家族中的ERF亚家族的一员。本研究将该基因与XcmⅠ酶切的表达载体pCXSN连接,转化大肠杆菌,通过测序挑选插入正确克隆酶切验证,并成功转化农杆菌。本研究结果为进一步研究该基因的功能提供了帮助。  相似文献   
15.
Ray blight caused by Stagonosporopsis tanaceti is one of the most important diseases of pyrethrum (Tanacetum cinerariifolium), a perennial herbaceous plant cultivated for the extraction of insecticidal pyrethrins in Australia. The disease is responsible for complete yield loss in severe outbreaks. Infected seed is considered as the principal source of S. tanaceti. Infection hyphae remain only in the seed coat and not in the embryo, resulting in pre- and post-emergence death of seedlings and latent infection. Therefore, quantification of the level of infection by S. tanaceti within seed using a qPCR assay is important for efficient management of the disease. Stagonosporopsis tanaceti completes its life cycle within 12 days after leaf infection through production of pycnidia and can infect every tissue of the pyrethrum plant except the vascular and root tissues. Ray blight epidemics occur in pyrethrum fields through splash dispersal of pycnidiospores between adjacent plants. Besides steam sterilization, thiabendazole/thiram and fludioxonil are effective seed-treating chemicals in controlling S. tanaceti before planting begins. Ray blight is currently managed in the field through the foliar application of strobilurin fungicides in the first 1–2 years of crop establishment. Later on, difenoconazole and multisite specific fungicides in the next 2–3 years during early spring successfully reduce ray blight infestation. Avoiding development of resistance to fungicides will require more sustainable management of ray blight including the development and deployment of resistant cultivars.  相似文献   
16.
<正>楠木为我国传统名贵树种,其木质紧密、耐腐蚀性强,能够驱虫美化环境,是建筑、家具、雕刻的首选木料;同时具有净化空气、吸烟滞尘、涵养水源、固土防沙等功能,有着巨大的经济及生态价值。楠木主要包括润楠属(Machilus Nees)以及楠属(Phoebe Nees)植株,均属于濒危树种,在我国境内  相似文献   
17.
ABSTRACT

Sugarcane is a strategic commodity in Indonesia. It is usually raised in a monoculture system. There is a lack of information about the effects of extended sugarcane monoculture on the soil carbon fraction. The aim of this study was to determine the relative changes in the soil organic C fractions in response to the duration of sugarcane monoculture on Entisols, Inceptisols, and Vertisols. The measured variables were the percentages of sand, silt, and clay, organic matter (OM), total nitrogen (TN), pH (H2O), cation exchange capacity (CEC), NH4 +, NO3 -, labile carbon fraction (soil carbon mineralization (C-Min), soil microbial carbon (C-Mic), and carbon particulate organic matter (C-POM)), and stable carbon fraction (humic and fulvic acids). Soil type with sugarcane monoculture period had significant influences on the percentages of clay, sand, silt, CEC, and pH (H2O). Soil type and sugarcane monoculture period had no apparent significant effect on C-Min or C-POM but did significantly influence C-Mic. The humic and fulvic acid levels in all three soil types were affected by the duration of sugarcane monoculture. To establish the impact of long-term sugarcane monoculture on the physicochemical properties of soils with various textures, it is more appropriate to measure the soil stable carbon fractions such as humic and fulvic acid rather than the soil labile carbon fractions such as C-Min, C-POM, or C-Mic.  相似文献   
18.
Fusarium head blight (FHB) is a cereal disease of major importance responsible for yield losses and mycotoxin contaminations in grains. Here, we introduce a new measurement approach to quantify FHB severity on grains based on the evaluation of the whitened kernel surface (WKS) using digital image analysis. The applicability of WKS was assessed on two bread wheat and one triticale grain sample sets (265 samples). Pearson correlation coefficients between Fusarium‐damaged kernels (FDK) and WKS range from r = 0.77 to r = 0.81 and from r = 0.61 to r = 0.86 for the correlation between deoxynivalenol (DON) content and WKS. This new scoring method facilitates fast and reliable assessment of the resistance to kernel infection and shows significant correlation with mycotoxin content. WKS can be automated and does not suffer from the “human factor” inherent to visual scorings. As a low‐cost and fast approach, this method appears particularly attractive for breeding and genetic analysis of FHB resistance where typically large numbers of experimental lines need to be evaluated, and for which WKS is suggested as an alternative to visual FDK scorings.  相似文献   
19.
为明确东北地区水稻纹枯病菌致病性及其群体遗传多样性,将2018年采自东北三省13个水稻主产区的病样分离纯化,共获得176个立枯丝核菌菌株。采用离体叶片接种法测定菌株致病力,利用SRAP分子标记技术分析其遗传多样性。致病力测定结果表明,东北三省各地区菌株致病力存在分化现象,供试的176个菌株中,强致病力菌株占全部菌株23.3%;中等致病力菌株占61.9%;弱致病力菌株占14.8%。地理来源与致病力无明显相关性。根据UPGMA聚类分析,当相似系数为0.63时,176个菌株被划分为6个类群。聚类结果与地理来源具有相关性,但与致病力无明显相关性。利用16对SRAP引物分析176个立枯丝核菌菌株遗传多样性,共得到2 237个扩增条带,多态性频率为82.16%;基因多样度(h)、Shannon信息指数(I)分别为0.2827、0.4150。东北各地区立枯丝核菌群体间遗传距离与地理距离呈一定正相关。群体遗传分化系数Gst=0.3319,基因流Nm=1.0063,说明东北地区立枯丝核菌群体遗传分化度较高且群体间存在基因交流。AMOVA分析结果表明,群体内遗传分化为67.84%,遗传变异主要发生在群体内部。  相似文献   
20.
基于机器视觉的马铃薯晚疫病快速识别   总被引:7,自引:6,他引:1  
晚疫病是马铃薯的一种严重病害,可造成减产甚至绝收。因此马铃薯晚疫病的识别与控制对提高其产量有非常重要的意义。该文基于机器视觉技术对马铃薯叶部晚疫病进行检测,根据马铃薯叶片上晚疫病斑的颜色、纹理和形状特征参数的不同,提取叶片表面的特征参数,并建立数学模型对病害程度做出评价。在RGB、HSV颜色空间中,根据马铃薯叶片在患病早期叶片颜色发生变化且与健康叶片不同,利用颜色特征,建立马铃薯晚疫病的无病和患病模型,该模型对马铃薯患病早期的识别率为67.5%。利用灰度共生矩阵,采用纹理统计参数进行病害等级评价,用熵值和能量值描述晚疫病的严重程度,纹理特征对患病程度的识别率比较稳定,对患病中期与后期的识别率分别为72.5%与80%。利用形状特征的相对特征,根据病斑面积比进行晚疫病诊断,该方法对马铃薯叶片晚疫病患病后期的诊断取得较好效果,识别率为90%,但由于叶片患病早期的病斑面积小且分散,识别难度大,识别率仅为50%。针对颜色、纹理及形状特征在识别马铃薯叶片晚疫病时的优势与局限性,提出颜色纹理形状特征结合的识别方法,对患病中期与后期的识别率分别为90%和92.5%。通常马铃薯晚疫病的理化值检测法耗时数天,但利用机器视觉识别马铃薯晚疫病患病情况非常快速,根据颜色特征进行病害识别的时间约为4 s,纹理特征识别的时间为7 s,形状特征特征识别的时间为3 s,综合颜色纹理形状特征的识别由于计算量较大,识别时间为9 s。该研究可为基于机器视觉的马铃薯晚疫病的快速检测提供理论依据。  相似文献   
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