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1.
Aspects of intensive management practices such as high-yielding cultivars, narrow-row spacings and fungicide treatments could potentially increase cereal yields in regions with a short crop-growing season and occasionally dry and hot weather. A field experiment was carried out at McGill University, Canada for three years (1987 to 1989) to test the effects of triadimefon (1-[4-chlorophenoxy]-3,3-dimethyl-1-[1H-1,2,4-triazol-1-yl]-2-butanone, or Bayleton, a trade name) fungicide (0 vs. 140 g a.i. ha−1) and row spacing (10 vs. 20 cm) on the yield components, yield and other agronomic traits (spike emergence, days to maturity, leaf disease and plant height) of spring barley ( Hordeum vulgare L.) cv. Cadette, Laurier and Leger. A cultivar by row spacing interaction resulted in a 11 to 13.5 % increase in grain yield due to narrow rows for Laurier in two out of the three years and up to 16 % for Leger in one year. Over the three years grain yields were on average increased 6 to 12 % due to use of the narrower row spacing. Fungicide application to barley at the early heading stage effectively controlled leaf diseases without influence on yield components or grain yield. Our results indicate that some components of intensive management such as narrow row spacing can be applicable in regions with a short crop-growing season.  相似文献   
2.
Time course of grain filling pattern in two rice (Oryza sativa L.) cultivars, grown under normal and low light intensities, was studied. The number of spikelets, partially filled grains and high density grains were monitored at a 5 day interval during grain filling period from uniform panicles tagged at anthesis. The low light tolerant cultivar Swarnaprabha had more high density grains and less partially filled grains throughout the grain filling period and at harvest compared to cultivar Ratna under both normal and low light intensities. Further, the opening of spikelets in two flushes in Swarnaprabha seemed to result in a more efficient resource allocation and hence better yield as compared to Ratna, in which the opening of spikelets was in a single flush on day 10.  相似文献   
3.
对N×特青示范田中试区与肥料试验田各处理小区稻株分析结果表明:抽穗后,亚种间杂交稻N×特青比常规稻特青干物质生产能力强,灌浆速度快;地上部各器官占植株干重比例,前者叶片比重大于茎,后者茎比重大于叶。亚种间杂交稻对肥料反应敏感,抽穗后,干物质累积,植株高度,每穗总粒数和粒重均随施肥量增加而增加,在高肥区有利于进一步提高产量,但增施氮肥后,灌浆速度明显滞后。  相似文献   
4.
The response of Cuscuta campestris Yuncker, a non‐specific above‐ground holoparasite, to amino acid biosynthesis inhibitor (AABI) herbicides, was compared with other resistant and sensitive plants in dose–response assays carried out in Petri dishes. Cuscuta campestris was found to be much more resistant to all AABI herbicides tested. The I50 value of C. campestris growth inhibition by glyphosate was eightfold higher than that of transgenic, glyphosate‐resistant cotton (RR‐cotton). The I50 value for C. campestris shoot growth inhibition by sulfometuron was above 500 μM, whereas that of sorghum roots was only 0.004 μM. Cuscuta campestris exposed to glyphosate gradually accumulated shikimate, confirming herbicide penetration into the parasite and interaction with an active form of the target enzyme of the herbicide, 5‐enolpyruvylshikimate‐3‐phosphate synthase. More than half of the C. campestris plants associated with transgenic, glyphosate‐resistant sugarbeet (RR‐sugarbeet) treated with glyphosate or with transgenic, sulfometuron‐resistant tomato (SuR‐tomato) treated with sulfometuron recovered and resumed regular growth 20–30 days after treatment. New healthy stems developed, followed by normal flowering and seed setting. The results of the current study demonstrate the unique capacity of C. campestris to tolerate high rates of AABI. The mechanism of this phenomenon is yet to be elucidated.  相似文献   
5.
Glyphosate is a key component of weed control strategies in Australia and worldwide. Despite widespread and frequent use, evolved resistance to glyphosate is rare. A herbicide resistance model, parameterized for Lolium rigidum has been used to perform a number of simulations to compare predicted rates of evolution of glyphosate resistance under past, present and projected future use strategies. In a 30‐year wheat, lupin, wheat, oilseed rape crop rotation with minimum tillage (100% shallow depth soil disturbance at sowing) and annual use of glyphosate pre‐sowing, L. rigidum control was sustainable with no predicted glyphosate resistance. When the crop establishment system was changed to annual no‐tillage (15% soil disturbance at sowing), glyphosate resistance was predicted in 90% of populations, with resistance becoming apparent after between 10 and 18 years when sowing was delayed. Resistance was predicted in 20% of populations after 25–30 years with early sowing. Risks of glyphosate resistance could be reduced by rotating between no‐tillage and minimum‐tillage establishment systems, or by rotating between glyphosate and paraquat for pre‐sowing weed control. The double knockdown strategy (sequential full rate applications of glyphosate and paraquat) reduced risks of glyphosate and paraquat resistance to <2%. Introduction of glyphosate‐resistant oilseed rape significantly increased predicted risks of glyphosate resistance in no‐tillage systems even when the double knockdown was practised. These increased risks could be offset by high crop sowing rates and weed seed collection at harvest. When no selective herbicides were available in wheat crops, the introduction of glyphosate‐resistant oilseed rape necessitated a return to a minimum‐tillage crop establishment system.  相似文献   
6.
瓜类蔬菜光合特性研究进展   总被引:3,自引:0,他引:3  
综述了瓜类蔬菜光合特性的研究进展,总结了光照、温度、CO2浓度、水分、矿质营养、叶龄、叶住及嫁接等因素对光合作用的影响,并提出了今后的研究方向。  相似文献   
7.
Testing of soil samples in greenhouse assays for suppressiveness to soilborne plant pathogens requires a considerable investment in time and effort as well as large numbers of soil samples. To make it possible to process large numbers of samples efficiently, we compared an in vitro growth assay with a damping-off assay using Pythium aphanidermatum as the test organism on tomato seedlings. The in vitro test compares the radial growth or relative growth of the fungus in soil to that in autoclaved soil and reflects suppressiveness of soils to the pathogen. We used soils from a field experiment that had been farmed either organically or conventionally and into which a cover crop (oats and vetch in mixture) had been incorporated 0, 10, 21, and 35 days previously. We obtained a significant, positive correlation between damping-off severities of tomato seedlings in damping-off assays and both relative and radial growth in vitro. In addition, radial and relative growth of P. aphanidermatum in the in vitro assay were positively correlated with several carbon and nitrogen variables measured for soil and incorporated debris. We did not find differences between the two farming systems for either growth measures of P. aphanidermatum or disease severities on tomato at different stages of cover crop decomposition. The in vitro assay shows potential for use with any fungus that exhibits rapid saprophytic growth, and is most suitable for routine application in suppressiveness testing.  相似文献   
8.
中国再生稻种植的影响因素及可持续性研究进展   总被引:3,自引:0,他引:3  
宋开付  张广斌  徐华  马静 《土壤学报》2020,57(6):1365-1377
再生稻作为一种特殊的水稻耕作模式,种一茬可收获两次,对增加粮食产量、保障国家粮食安全和提高稻田综合效益有重大意义。综述了中国再生稻的发展趋势,分析了再生稻种植的关键影响因子,阐释了再生稻高产栽培技术,提出在种好头季稻的前提下,适当高留桩,在头季稻齐穗后15d施用尿素150kg·hm-2作为促芽肥,头季稻收割后3d施用尿素150 kg·hm-2作为发苗肥,同时配施磷钾肥,可在保证土壤养分平衡的基础上使再生稻获得高产,最后讨论了当前存在的问题及今后发展的方向,认为未来的研究需重点关注再生稻产业化、土壤养分管理、高产栽培技术、稻米品质、温室气体和水体质量,以促进再生稻的发展并为国内同行的研究提供参考与借鉴。  相似文献   
9.
番茄斑驳花叶病毒在我国茄科作物上的发生及生物学特性   总被引:1,自引:0,他引:1  
【目的】鉴定烟草花叶病毒属(Tobamovirus)新种番茄斑驳花叶病毒(Tomato mottle mosaic virus,ToMMV)当前在我国茄科作物上的发生危害情况、主要分布地区和自然寄主,明确其主要寄主范围、传播途径和致病性等生物学特性。【方法】利用RT-PCR方法对2013—2017年采自我国云南、贵州、四川、海南、湖南、河南、陕西、山东、湖北、浙江、辽宁、西藏和内蒙古13个省(自治区),表现为花叶、皱缩、畸形、黄化、坏死等疑似病毒病症状的茄科作物辣椒、番茄、茄子、马铃薯和烟草等样品进行ToMMV的检测。分别将ToMMV进行摩擦接种和注射接种,对感染ToMMV的珊西烟获得的种子及由种子萌发的幼苗进行ToMMV检测,对由健康种子萌发且在含有ToMMV毒源土壤中生长的6—8叶龄辣椒和番茄幼苗进行ToMMV检测,以此开展ToMMV传播方式的测试。在茄科、葫芦科、豆科和十字花科等6科30种植株上开展ToMMV的寄主范围鉴定和不同辣椒、番茄材料对ToMMV的抗性鉴定。【结果】我国13个省(区)共采集茄科作物疑似病毒病样品1 622份,ToMMV的平均检出率为2.59%,目前ToMM...  相似文献   
10.
光对园艺植物花青素生物合成的调控作用   总被引:2,自引:0,他引:2  
花青素是植物中一类重要的类黄酮化合物,在植物花朵、果实等器官色泽形成和抗氧化过程中起着重要作用。植物组织中花青素的形成依赖于光信号,但是光信号对花青素生物合成的调控机制及信号网络很大程度上还不清晰。本文简述了花青素生物合成及运转过程的研究进展,简要归纳了MYB、bHLH、WDR三类主要因子对花青素合成的转录调控作用,重点阐释光信号(光强、光质、光照时长)对植物花青素合成的调控作用。研究表明,光环境(光强、光质、光照时长)主要通过不同的光受体(UVR8、CRYs、PHOTs、PHYs)影响光信号通路重要因子COP1的泛素化能力和HY5的稳定性,以及其他光信号转录因子如光敏色素互作因子PIFs的稳定性,进而调控花青素的生物合成过程。这些光信号因子一方面直接结合到调控花青素合成的MYB、bHLH、WDR三大类转录因子上,转录激活或抑制它们的表达进而调控花青素的合成;另一方面,这些光信号因子通过与MYB、bHLH、WDR三大类转录因子蛋白互作,影响它们形成的MBW复合体稳定性,进而调控花青素的合成。此外,这些光信号因子还可以通过不依赖于MBW复合体的通路调控花青素的合成,如HY5通过调控miR...  相似文献   
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