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31.
为筛选最适合芽菜培养的小豆品种,以‘白红8号’为试材,设置3种生长调节物质(乙酰水杨酸、乙烯利和6-苄氨基腺嘌呤(6-BA))的各6个浓度(0.0、0.1、0.2、0.3、0.4、0.5 mmol/L;0、20、30、40、50、60 mg/L和0、2、3、4、5、6 mg/L)喷施处理,测定其生物特性(上胚轴长度、上胚轴直径、萌发率、鲜重、干重和产出比)、营养成分(可溶性蛋白和可溶性糖)及抗氧化等特性。结果表明:3种生长调节物质喷施处理都能够提升其营养价值,在乙烯利喷施浓度为50 mg/L,‘白红8号’小豆芽苗菜中各营养成分、酶活性及抗氧化性等均可达到最大值,显著提高了其营养价值。因此,为提高生产中小豆芽苗菜的产量和营养价值,最终确定乙烯利喷施浓度为50 mg/L效果最佳。  相似文献   
32.
早熟薄皮甜瓜新品种香瑞1号的选育   总被引:1,自引:1,他引:0  
赵艳霞 《中国瓜菜》2011,24(3):29-31
香瑞1号是黑龙江省青冈县瑞雪农业有限责任公司以NY-99为父本、RX-99为母本选育的早熟薄皮甜瓜新品种.全生育期68d,果实发育期27 d.子、孙蔓均可结瓜.果实长圆形,果皮黄白色,果实大小整齐,外形美观,不裂果;中心可溶性固形物14%,品质优.单果质量500~600g,667m2产量3 500 kg左右.田间表现对...  相似文献   
33.
利用5个锈病成株期抗性基因的KASP标记Sr2_ger9 3p、Lr34jagger、CSTM4_67G、Lr68-2、VPM_SNP和抗赤霉病基因Fhb1的KASP标记TaHRC-KASP,对云南省育成的42个小麦品种(系)进行检测,旨在筛选出含有目标基因的优异小麦种质,为云南省持久抗病小麦新品种(系)的选育提供材料。结果表明,4个材料含兼抗型成株抗锈病基因Lr34/Yr18/Sr57,频率为9.52%;6个品种(系)含兼抗型成株抗锈病基因Lr67/Yr46/Sr55,频率为14.29%;7个材料含抗慢叶锈病基因Lr68,频率为16.67%;含兼抗型成株抗锈病基因Sr2/Yr30和成株抗叶锈基因Lr37的材料各有1个,频率均为2.38%;未检测出含抗赤霉病基因Fhb1的品种(系)。云麦69、云麦75、云麦56、宜麦1号和宜麦3号等兼有2个成株期抗锈病基因,可作为今后云南持久抗锈病育种的抗源材料。  相似文献   
34.
苦瓜枯萎病是由尖孢镰孢菌苦瓜专化型(Fusarium oxysporum f. sp. momordicae)侵染引起的一种土传病害,目前市场上缺乏防治效果较好的农药或生防菌剂。为了更好地防治苦瓜枯萎病,通过盆栽试验筛选出绿针假单胞菌(Pseudomonas chlororaphis)G5 与恶霉灵复配施用的最优组合,并在苦瓜枯萎病发病样地对盆栽试验筛选出的最优组合进行防效验证。试验结果表明:菌药组合B+0.75Hym(1×109 cfu · mL-1 G5 菌悬液+187.5 mg · L-1 恶霉灵)处理对盆栽苦瓜枯萎病的防病效果为81.60%,明显高于其他处理;同时该组合对苦瓜幼苗的促生作用最为明显。接种苦瓜枯萎病菌后,菌药组合B+0.75Hym的苦瓜叶片中PAL、PPO、POD 防御酶活性较高。田间防效验证试验中苦瓜苗移栽30、60 d 后菌药组合B+0.75Hym 对苦瓜枯萎病的防治效果较高,分别达到了52.59%、32.13%,且苦瓜产量也高于其他处理。表明盆栽试验筛选出的菌药最优组合B+0.75Hym 不仅能够降低农药的使用量,而且能够有效防治苦瓜枯萎病,提高苦瓜产量,有一定的生产实用价值。  相似文献   
35.
36.
为筛选西瓜枯萎病拮抗菌株并探究其抑菌特性,以齐齐哈尔市青昕蔬菜基地根际土为材料,采用平板对峙法筛选到1株能高效抑制西瓜专化型尖孢镰刀菌(Fusarium oxysporum f.sp. niveum,Fon)的拮抗菌株,通过形态特征、16S rDNA、gyrAgyrB序列分析鉴定其菌种;通过盆栽试验验证拮抗菌株对西瓜枯萎病的抑制作用;采用生长速率法研究拮抗菌株不同生长时期的无菌发酵滤液及其不同贮存条件下的抑菌能力;利用扫描电子显微镜(SEM)和共聚焦激光扫描显微镜(CLSM)观察并分析无菌发酵滤液对Fon孢子形态和膜完整性的影响。结果表明,拮抗菌株WD为Bacillus amyloliquefaciens,能有效抑制西瓜枯萎病的发生,抑制率达到57.57%,其无菌发酵滤液在衰亡期有较高的抑菌能力,对Fon菌丝生长抑制率为54.32%;无菌发酵滤液对温度、pH具有较高的耐受性,30 ℃、pH 7时抑菌活性最强,抑菌率可达58.36%;在4 ℃贮存至少45 d,且紫外光照120 min内对其抑菌活性没有影响;Fon孢子暴露在WD无菌发酵滤液下,孢子表面皱缩凹陷,膜完整性被破坏。综上所述,Bacillus amyloliquefaciens WD是1株高效的拮抗菌株,为西瓜枯萎病生防菌剂的研发与利用奠定了基础。  相似文献   
37.
Soya bean [Glycine max (L.) Merr] yields >6719 kg/ha (100 bu/ac) have only recently and infrequently been achieved. Quantifying soil property differences between high‐ and average‐yielding areas can help to further identify non‐plant‐related properties contributing to soya bean yield potential. The objective of this study was to evaluate the effects of region and soil depth on soil property differences between high‐ and average‐yielding areas. In each of the seven regions of the ‘Grow for the Green’ yield contest in Arkansas, prior to or just after harvest in 2014 and 2015, soil samples were collected from the top 20 cm of one contest high‐yield (HY ) area that was in close proximity to an average‐yield (AY ) area. Across all regions and both years, soya bean yields differed (<  0.05) between yield areas, averaging 4701 and 5498 kg/ha in AY and HY areas, respectively. Averaged across soil depth and years, numerous soil properties differed (<  0.05) between HY and AY areas within at least one of seven regions. Total soil C content was at least 20.2% greater in the HY than in the AY area in three of seven regions. Extractable soil P content was, on average, 19.4 kg/ha greater in HY than in AY areas in three of the seven regions. Results from this study have the potential to help producers better understand soil properties that contribute to or hinder achieving ultra‐high (>6719 kg/ha) soya bean yields.  相似文献   
38.
Increasing atmospheric carbon dioxide concentration (CO2) is an important component of global climate change that will have a significant impact on the productivity of crop plants. In recent years, growth and yield of agricultural crop plants have been shown to increase with elevated CO2 (EC) and have enticed considerable interest due to variation in the response of crop plants. In this study, comparative response of two mung bean cultivars (HUM‐2 and HUM‐6) was evaluated against EC at different growth stages under near‐natural conditions for two consecutive years. The plants were grown in ambient as well as EC (700 ppm) in specially designed open‐top chambers. Under elevated CO2, marked down‐regulation of reactive oxygen species (ROS) levels, membrane disruption and activities of superoxide dismutase and catalase were noticed in both the cultivars, but the extent of reduction was more in HUM‐6. As compared to ambient CO2, EC increased total chlorophyll, photosynthetic rate, growth and yield parameters. Cultivar‐specific response was noticed as HUM‐6 showed higher increase in yield attributes than HUM‐2. Under CO2 treatment, soluble protein and reducing sugars decreased while total soluble sugars and starch showed an opposite trend. Principal component analysis showed that both the cultivars responded more or less similarly to EC in their respective groupings of physiological and growth parameters, but the magnitude of ROS and antioxidative enzymes was variable. The experimental findings depict that both the cultivars of mung bean showed contrasting response against EC and paved the way for selecting the suitable cultivar having higher productivity in a future high‐CO2 environment.  相似文献   
39.
Watermelon yield loss due to Fusarium wilt is increasing in the U.S., due in part to the emergence of the virulent race 2 of Fusarium oxysporum f. sp. niveum, and to the shift in production to triploid cultivars, which generally have less host resistance than previously grown diploid cultivars. One potential management strategy is the use of soil-applied fungicides to reduce Fusarium wilt. The U.S. national program, interregional project 4 (IR-4) supported multistate trials of soil-applied chemicals to manage Fusarium wilt of watermelon. Greenhouse trials were conducted in Maryland, Indiana and Georgia to test the efficacy of 14 chemicals on Fusarium wilt. Based on the performance of these chemicals in the greenhouse, six in Maryland and Delaware and eight in Indiana were selected for subsequent field evaluations. These chemicals were applied once, as a drench at planting, in field trials in Maryland, Indiana, and Delaware in 2008. The fungicides prothioconazole, acibenzolar-S-methyl, and thiophanate-methyl resulted in the greatest reduction in Fusarium wilt, and caused no phytotoxicity. In Maryland and Indiana in 2009, these chemicals were applied through the drip irrigation line alone and in combination, at 0, 2 and 4 weeks after planting. The experiment was repeated in 2010 in Maryland. Prothioconazole alone and in combination with acibenzolar-S-methyl or/and thiophanate-methyl resulted in the greatest decrease in the area under the disease progress curve (AUDPC) of Fusarium wilt of watermelon in Maryland in 2009. The same trend was observed in 2010 in Maryland where three of the prothioconazole treatments ranked the lowest of all treatments and prothioconazole in combination with thiophanate-methyl had significantly lower Fusarium wilt AUDPC compared to the non-treated control. All chemical applications except for acibenzolar-S-methyl in combination with prothioconazole reduced Fusarium wilt AUDPC in Indiana in 2009. Prothioconazole alone and prothioconazole in combination with thiophanate-methyl ranked lowest in Fusarium wilt AUDPC, although not significantly lower than most other treatments. These studies are the first to demonstrate that the soil-applied fungicides prothioconazole and thiophanate-methyl may provide an additional field management option for Fusarium wilt of watermelon.  相似文献   
40.
杨迪  杜婵娟  叶云峰  彭军  张欣  付岗 《热带作物学报》2020,41(12):2582-2590
香蕉枯萎病是全世界香蕉产业共同面临的毁灭性病害,但目前生产上仍缺乏适宜的抗病品种和有效的治疗措施。因此,借助快速准确的枯萎病菌检测技术及时明确病原菌以控制该病的传播和蔓延显得尤为重要。本文回顾了近年来国内外香蕉枯萎病菌分子检测技术的发展历程,归纳和总结了DNA指纹图谱、普通PCR、多重PCR、荧光定量PCR及等温扩增技术在该病菌检测中的研究进展,分析了不同检测技术的优缺点,并指出可能存在的问题和研究发展方向,为该病的分子检测技术优化和防控策略制定提供参考。  相似文献   
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