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131.
为筛选适宜保定地区栽植的早熟苹果品种,以嫁接在SH40中间砧上的不同早熟苹果品种(系)为试材,测定了不同品种(系)早熟苹果树体生长发育指标和果实品质。结果表明:除嘎啦早熟变异外,其他供试品种(系)树体生长较好,3年生时Xu2-7、Xu3-2树高330.0~352.5 cm,4年生时为394.0~417.5 cm,Xu3-2、藤牧1号、信浓红4年生为336.5~381.0 cm。4年生时,干径以Xu2-5最大;短枝、中枝、叶丛枝均以Xu2-5最多,长枝以Xu2-7最多,总枝量以Xu2-5最多;藤牧1号短枝所占比例最高(57.4%)。应用模糊综合评判法得出Xu2-5、Xu2-7、信浓红、藤牧1号果实品质较高。 相似文献
132.
福建省新分布植物记录 总被引:2,自引:0,他引:2
在第4次全国中药资源普查福建省建宁县试点县野外调查中陆续发现多个福建省地理新分布记录种,经整理鉴定,继续报道4个新分布记录种:日本金腰[Chrysosplenium japonicum(Maxim.)Makino]、赶山鞭(Hypericum attenuatum Choisy)、异堇叶碎米荠(变种)(Cardamine violifolia O.E.Schulz var.diversifolia O.E.Schulz)和杜鹃兰[Cremastra appendiculata(D.Don)Makino]。 相似文献
133.
J. P. Rodríguez M. Aro M. Coarite S.‐E. Jacobsen B. Ørting M. Sørensen C. Andreasen 《Journal of Agronomy and Crop Science》2017,203(3):254-267
Cañahua (Chenopodium pallidicaule Aellen) is a semi‐domesticated relative of quinoa (Chenopodium quinoa Willd.) with high nutritious quality. It is tolerant to frost, drought, saline soils and pests. One seed yield limitation is seed loss during the maturity stages. Two greenhouse experiments in Denmark and field experiments in Bolivia were carried out to determine seed shattering in landraces and cultivars with different growth habits. 15–21 % of the seed shattering in the fields took place whilst the plants still were flowering and 25–35 % during physiological maturity. Seed shattering varied between locations on the Bolivian Altiplano. Cañahua types with the semi‐prostrate growth (‘lasta’) had the highest seed shattering rate in the greenhouse experiments. The Umacutama landrace had lower seed shattering (1 %) than the cultivar Kullaca (7.2 %) both of the ‘lasta’ type. Under field conditions, the cultivar Illimani with the erect growth (‘saihua’) had the highest seed shattering rate (6.4–33.7 %) at both locations and at four different sowing dates. The Umacutama had the lowest rate (0.5–1.5 %). There were no significant differences between plants of the ‘lasta’ and the ‘saihua’ types. The landrace had significantly less seed loss than the cultivars. However, in the greenhouse, the landrace yield was approximately 25 % lower than the yields of the cultivars. In general, cañahua cultivars had higher yield compared to landraces, but also a higher seed shattering rate. Landraces may be used in breeding programmes to develop high‐yielding cultivars with reduced seed shattering. 相似文献
134.
随着嫁接技术在蔬菜育苗中的广泛应用,根据近年来兴起的一茄多果嫁接技术与园艺景观造型相结合的趋势,介绍了一种改进的一茄多果嫁接技术,技术的流程更简洁,也更易于操作,可使经济效益与人文景观效果得到共同提升。 相似文献
135.
以三年生狐臭柴为实验材料,设置自然光和遮光两种光照条件,用三种叶面肥进行喷施,分析不同肥料对狐臭柴叶片生物量和主要生化指标的影响。结果表明:喷施氮肥能显著提高狐臭柴叶片生物量,自然光及遮光下分别增加37.30%和15.02%,但果胶的积累减少,分别降低19.78%和17.35%;磷肥能显著提升叶片果胶的含量,分别增加158.08%和239.96%,但叶片生物量显著低于对照,分别降低55.83%和47.40%;复合肥对叶片生物量无明显影响,果胶含量轻微降低。各肥料均使可溶性糖含量降低,且在遮光条件下使叶片内可溶性蛋白含量增加,自然光下使可溶性蛋白含量降低。 相似文献
136.
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138.
成都市典型农家乐植物组成特征研究 总被引:1,自引:0,他引:1
本文在成都市北湖公园、农科村、三圣乡选取了60个成都市典型农家乐,对植物群落进行了调查和分析。结果表明:成都市典型农家乐植物群落中应用的乔木种类有56种,灌木种类83种,草本种类有118种,共计257种,分属91科184属。在植物种类组成方面,成都北湖公园的乔木种类所占比例最高,达到22.39%;郫县农科村的灌木种类所占的比例是最高的,达到36.55%;而三圣乡"五朵金花"的草本种类所占的比例最高,达到47.92%。农科村主要树木的平均胸径为13.32±9.07?,平均高度为5.53±2.49 m,在3个地方中均为最高。群落外貌方面,三圣乡"五朵金花"和郫县农科村农家乐以常绿阔叶和落叶阔叶的混交林为主,针叶林少。成都北湖公园则以常绿阔叶为主,落叶和针叶林少。60个农家乐平均配置乔木5.1±2.47(N=60)种,平均配置灌木8.77±3.41(N=60)种,平均拥有草本11.83±6.75(N=60)种,超过50%的植物种类为三地或两地共有,植物配置呈现明显的相似性。 相似文献
139.
140.
The weight and composition of soybean seeds (Glycine Max L. Merrill) depend on changes in carbon and nitrogen assimilate supply during grain filling. Soybean pods and seeds are green, evidencing their capacity to capture light. However, the current physiological knowledge does not consider any effect of incident solar radiation reaching the pods on seed weight and composition. The objective of this work was to investigate the response of seed weight and composition to changes in assimilate supply from leaves, to the incident solar radiation reaching the pods and to the combination of both, changes in assimilate supply from the leaves and incident solar radiation on pods of soybean plants. Field experiments were performed during two growing seasons at Balcarce, Argentina. Treatments modified the amount of assimilates supplied by the leaves (plant shading, defoliation), the solar radiation reaching the pods (pod shading) or both (defoliation and pod shading) during seed filling. Plant shading and defoliation reduced seed weight, oil concentration and oil and protein content and increased the concentration of saturated and poli-unsaturated fatty acids while reduced oleic acid percentage. Pod shading increased the concentration of stearic acid and reduced the concentration of linolenic acid. When pods were shaded on defoliated plants, seed weight and oil and protein content decreased while fatty acid composition was similar to values obtained under defoliation treatment. Based on these results, a conceptual model that considers photoheterotrophic nature of reproductive structures of soybean is proposed. Seed weight, oil and protein content and oil fatty acid composition depended on assimilate availability for the seeds. The response of oil and protein content to assimilate supply depended on whether leaves were present or not. The effect of solar radiation incident on pods depended on the amount of assimilates available for the seeds: (i) when carbon allocated was low (defoliation treatments), pods contributed to seed carbon economy but solar radiation incident on them did not affect fatty acid composition; (ii) when carbon allocated to the seeds was high (intact plants), contribution of pods to seed carbon economy was not significant, but the amount of solar radiation incident on pods produced significant changes in fatty acid composition. 相似文献