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31.
The overall objective of this work was to improve fruit quality, break alternate bearing and reduce hand thinning using fewer chemicals in fruit crops. A device was constructed for mechanical thinning, which consisted of three independent horizontal rotors with ropes and freely adjustable angles on a frame, mounted on a front three point hitch and powered by the tractor hydraulics. This can be adapted to any fruit tree trained as spindle, Solaxe, (tall) vertical axis or fruit wall (le mur fruitier) irrespective of rootstock employed. Rotor speed varied from 300 to 460?rpm at either 5 or 7.5?km/h tractor speed. Eight-year-old or twelve-old apple trees cvs. ‘Gala’ and ‘Golden Delicious’ were mechanically thinned in 2007 between pink bud and full bloom (flower bud stages 6–8 or F1–F2) near Bonn, Germany; non-thinned and hand-thinned apple trees of the same block and variety served as control. Mechanically thinned flowering branches showed a similar amount of ethylene efflux (0.4–0.6?ppm C2H4/branch) as non-thinned flower branches, preventing potentially unexpected subsequent fruit drop, except for those removed by the rotors. The impact of the horizontal rotors on the branches was from the upper side and removed excessive flowers right to the tree trunk viz. the centre of the tree canopy, where fruits of lesser quality are expected leaving 2–3 flowers per cluster. Leaf damage was less than??10%, even at the fast rotor speed of 420?rpm, which was associated with negligible wood injury. Mechanical thinning induced firmer and sweeter fruit, i.e. tastier apples with longer shelf life, relative to control fruit from non-thinned apple trees. The greatest efficacy in terms of final fruit quality in the grading/sorting was achieved by a rotor speed of 360?rpm at a tractor speed of 5?km/h: Fruit mass increased by up to 20?g and the proportion of fruit larger than 70–75?mm by 10–30% compared with the fruit from non-thinned trees. Mechanical thinning with this newly constructed device led to a 10–20% reduction in yield, but increased returns due to better fruit size and colouration in apple with the potential to overcome alternate bearing. 相似文献
32.
Field and pot experiments were conducted to evaluate the effect of co-cultivation and crop rotation on the growth and corm rot disease of gladiolus (Gladiolus grandiflorus sect. Blandus) cv. Aarti caused by Fusarium oxysporum f.sp. gladioli (Massey) Snyd. and Hans. In the field experiment, gladiolus was co-cultivated with 10 agricultural/horticultural crops viz. Allium cepa L., Brassica campestris L., Capsicum annuum L., Eruca sativa Mill., Helianthus annuus L., Tagetes erectus L., Zea mays L., Vinca rosea L. and Rosa indica L., in a soil infested with F. oxysporum. All the crops except V. rosea and R. indica reduced disease incidence. The effect of H. annuus and T. erectus was significant and more pronounced than other co-cultivated crops. In general, root and shoot dry biomass, corm fresh weight, number of cormlets and number of flowers per spike decreased as compared to the un-inoculated monoculture gladiolus treatment (negative control) but these parameters enhanced as compared to the F. oxysporum inoculated monoculture gladiolus treatment (positive control). In a pot experiment, all the crops of the field experiment except V. rosea and R. indica were sown in rotation with gladiolus. Pot grown plants of different species were harvested at maturity and the soil was inoculated with F. oxysporum. Gladiolus was cultivated 1 week after inoculation. Disease incidence was significantly suppressed in all the treatments ranging from 29% to 53%. The highest suppression of disease incidence was recorded in T. erectus (53%) followed by B. campestris (49%). The effect of preceding crops on various vegetative parameters was similar in the pot experiment to that of the field experiment. The present study suggests that corm rot disease of gladiolus can be managed by mixed cropping of H. annuus and T. erectus or cultivation of T. erectus and B. campestris in rotation. 相似文献
33.
MxIrt1是从苹果属植物小金海棠中克隆出的二价阳离子转运膜蛋白基因。为进一步研究该基
因的功能, 利用MxIrt1基因位于第3和第4跨膜区之间的162 bp片段, 构建了原核表达载体pGEX-MxIrt1,经原核表达、亲和层析、获得GST2MxIRT1融合蛋白, 以融合蛋白为抗原, 制备多克隆抗体, ELISA方法检测抗体效价阳性, 蛋白质印迹检测植物体内总蛋白, 获得与预期大小一致的特异性条带。上述结果表明,表达的目的蛋白可用于免疫组织化学、蛋白质印迹检测。 相似文献
34.
以平邑甜茶继代组培苗为试材,研究了NAA、IBA、ZT和6-BA作用下组培苗的生长、内源多胺(PAs)和一氧化氮(NO)含量的变化。结果表明,在MS培养基中添加0.02 ~ 1.00 mg·L-1的NAA或IBA后,外植体鲜样质量增加率和蛋白质含量以及多胺含量和一氧化氮含量均明显增加,其中浓度在0.10 ~ 0.50 mg·L-1 时增加最高;同样浓度下,NAA处理的外植体鲜样质量增加率和腐胺含量高于IBA。在0.08 ~ 4.00 mg·L-1范围内,随着ZT或6-BA浓度的升高,外植体鲜样质量增加率、可溶性蛋白含量、多胺含量和一氧化氮含量均逐渐升高;同样浓度下,6-BA处理的外植体鲜样质量增率和腐胺含量高于ZT。生长素和细胞分裂素促进组培苗生长与促进内源PAs和NO的生成相伴随,组培苗生长动态与内源多胺和一氧化氮含量的变化趋势一致。 相似文献
35.
平邑甜茶后代双胚苗的倍性鉴定及核型分析 总被引:1,自引:0,他引:1
为了确定平邑甜茶双胚苗的倍性特征和核型特点,采用压片和流式细胞仪观测的方法对平邑甜茶后代中双胚苗进行染色体倍性观察和核型分析。结果表明:4株供试材料均为三倍体,2n=3x=51,染色体为小型,染色体长度比差异不大;核型组成由中部着丝点染色体(m)和亚中部着丝点染色体(sm)组成;株系8-1、8-2、12-1和12-2的核型公式分别为2n=3x=45m+6sm,2n=3x=48m+3sm,2n=3x=27m+24sm,2n=3x=33m+18sm;染色体相对长度和着丝点指数的变异范围分别为1.21%~2.68%和34.19%~42.37%,1.44%~2.63%和35.59%~44.08%,1.36%~3.02%和32.85%~42.18%,1.43%~2.87%和34.23%~44.02%;核型分别属于1B、1A、2B和1B类型,表现为株系之间的核型不完全相同。本研究为丰富无融合生殖型砧木的育种理论,获得新的苹果无融合生殖型砧木提供有益的借鉴。 相似文献
36.
激发子物质处理富士苹果果实后抗轮纹病病菌侵染的研究 总被引:3,自引:0,他引:3
富士苹果果实经硝普钠(SNP)、茉莉酸甲酯(MeJA)、水杨酸(SA)和氯化钙处理后再接种轮纹病菌,各个处理均能不同程度地防止轮纹病菌的侵染和扩展,其中MeJA和SNP处理效果最明显,烂果率和烂果面积分别比对照减少26.7%、26.7%和41.6%、36.2%。另外,还对各处理果实的PAL、SOD、POD和PPO活性变化进行了分析,结果表明,接种轮纹病菌的72h内,4个处理的PAL和PPO活性均表现出先升后降的趋势,而SOD和POD活性变化除SA处理一直保持平稳波动上升外,其余3个处理也表现为先升后降趋势;各处理的PAL和POD峰值出现的时间均早于SOD和PPO。PAL、POD和PPO活性峰值和平均值均以MeJA处理最高,SOD活性峰值和平均值SNP处理最高。 相似文献
37.
以2年生平邑茶为试材研究表明:土壤转换后,根系的发生与功能有所改变,由粘壤土转入沙壤土的根系吸收表面积、分泌H^ 速率和吸收NO3^-速率比由沙壤土转入粘壤土的高,但均比未处理植株低;前者新根量大,生长势强,分布广,后者的吸收根大量死亡。。 相似文献
38.
研究9个不同施肥处理对枳及柠檬容器苗生长的影响。结果表明:不同施肥处理对枳容器苗的苗高、地径、分枝高度及嫁接后柠檬苗的发芽率、株高、茎粗、分枝数及生物量都存在显著差异;不同施肥处理对枳及柠檬容器苗综合表现最好的为T4(撒施柠檬专用肥1.6 g)处理,其次是T2(撒施尿素0.6 g)、T3(撒施柠檬专用肥0.8 g)处理,表现最差的是T8(浇施5%柠檬专用肥)和T7(浇施3%柠檬专用肥)处理。在一定施肥浓度范围内,施肥对嫁接后柠檬容器苗的生物量积累有明显促进作用。柠檬容器苗培育时建议采用在基质中撒施柠檬专用肥1.6 g。 相似文献
39.
Rupinder Pal Singh Puja Srivastava Achla Sharma N. S. Bains 《Journal of Crop Improvement》2017,31(2):183-191
With continuous outbreaks of stripe rust (Puccinia striiformis f. sp. tritici) epidemics and rapid breakdown of deployed resistance in bread wheat (Triticum aestivum L.) cultivars in North West Plains Zone (NWPZ) in India warrant knowledge and deployment of new and durable sources of resistance to stripe rust. Bread wheat cultivar PBW 343, until recently the most widely cultivated wheat variety in India, is now highly susceptible to stripe rust (score 9 on a 1–9 scale), whereas PBW 621 (score 5.05–5.65) and HD 2967 (score 5.40–6.20) show low levels of resistance. We conducted an experiment, spanning three crop seasons (2013–2014 to 2015–2016), in which parental lines, F1 and F2 populations, F3 and F4 families from two bread wheat crosses, PBW 621/PBW 343 and HD 2967/PBW 343 were generated and evaluated for stripe rust resistance against a virulent pathotype. While the F1 revealed partial dominance, the segregation pattern for stripe rust resistance in F2 and F3 showed transgressive segregation for resistance in both crosses. Chi-square analysis indicated that resistant segregants possessed two genes, one contributed by PBW 621 or HD 2967 (depending on the cross) and the other, unexpectedly but obviously, came from the most susceptible cultivar, PBW 343. Possible genetic mechanisms for this residual resistance and implications for breeding programs are discussed. 相似文献
40.
Genes for resistance to powdery mildew in European barley cultivars registered in the Czech Republic from 2011 to 2015
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Antonín Dreiseitl 《Plant Breeding》2017,136(3):351-356
Barley (Hordeum vulgare) is cultivated on 49.1 million hectares worldwide with 50.2% of the area located in Europe. Powdery mildew, caused by Blumeria graminis f. sp. hordei (Bgh), occurs wherever barley is grown. Cultivar resistance plays an important role in global barley production, especially in parts of Europe where high concentrations of both spring and winter types are grown. The aim of this report was to postulate specific resistance genes in barleys from nine European countries registered in the Czech Republic from 2011 to 2015. Thirty‐five spring cultivars and 27 winter barleys were tested with 56 diverse Bgh isolates. Twenty‐five known resistance genes were postulated, and unknown genes were detected in Sandra, Saturn and Zeppelin. Unidentified specific resistance genes were also present in winter hybrids Hobbit and Wootan. Spring cultivars Arthur and Francin consisted of three and two genotypes, respectively. Resistance gene mlo was present in 26 spring cultivars, and the proportion of cultivars with this gene increased from 62.9% in 2006–2010 to 75.7% in 2011–2015. The gene Mlp1 was identified for the first time in German winter cultivar Saturn. Five spring cultivars registered in Slovakia were included in the tests. All the cultivars that were tested contained one or more specific resistance genes to powdery mildew. Adaptability of the pathogen and possibilities for breeding winter barleys are discussed. 相似文献