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1.
陇东旱塬区复种不同藜麦品种(系)的适应性初步评价   总被引:1,自引:0,他引:1  
为分析不同藜麦品种(系)在陇东雨养地区夏播复种的生态适应性,以12个藜麦品种(系)为材料,对其物候期、农艺性状、经济性状、品质性状等指标进行考察,采用相关性分析、主成分分析和聚类分析法对其适应性进行综合评价。结果表明:供试的12个藜麦品种(系)除LY-2无法复种成熟外,其余的11个品种(系)均能完成生育期;对其19个性状进行相关性分析表明,单位面积籽粒产量与单株粒质量和千粒质量呈极显著正相关(P0.01),而与根倒率、茎倒率呈极显著负相关(P0.01);株高与千粒质量呈极显著正相关(P0.01),籽粒粗蛋白和淀粉分别与籽粒直径和千粒质量呈极显著正相关(P0.01);对其15个性状指标进行主成分分析和聚类分析,对提出的5个主成分累计贡献率达85.04%,根据综合得分,筛选出适应性最好、得分最高的2个品种(系)‘陇藜4号’和‘Q2’;聚类分析表明,11个藜麦品种(系)系统聚为3大类型,各品种(系)间性状与遗传距离方面存在较大差异,其中第三类产量最高,第二类有矮秆、早熟等特性,可根据生产需要和育种目标进行综合考虑。  相似文献   
2.
Total weed control within a crop is both difficult and expensive to achieve, so that some weeds will often remain to set seed. The seed production resulting from these weeds will ultimately affect the sustainability of the weed control strategy. If too much is allowed to return each season there could be a gradual, but significant, increase in the potential weed flora over a number of seasons. Field trials were carried out in 2000 and 2001 to quantify the potential magnitude of this weed seed return from Chenopodium album L., grown at two planting densities either in pure stands or in competition with one of two crops (cabbage or onion). Crop and weed weights and weed seed production were notably greater in 2001. Both dry weight and seed production of C. album were suppressed by increasing planting density or by the presence of crop, with cabbage having a more suppressive effect. Despite the plasticity in seed production, a linear relationship was demonstrated between log weed seed production and log weed biomass that was robust over a range of competitive situations with onion and cabbage, at different planting densities and in growing seasons. The study also demonstrated that the relationship could be combined with an existing simple competition model to allow the consequences of incomplete weed control to be assessed in terms of potential weed seed return.  相似文献   
3.
This study aimed to evaluate the ability of Piriformospora indica to colonize the root of Chenopodium quinoa and to verify whether this endosymbiont can improve the growth, performance and drought resistance of this species. The study delivered, for the first time, evidence for successful colonization of P. indica in quinoa. Hence, pot experiment was conducted in the greenhouse, where inoculated and non‐inoculated plants were subjected to ample (40%–50% WHC) and deficit (15%–20%WHC) irrigation treatments. Drought adversely influenced the plant growth, leading to decline the total plant biomass by 74%. This was linked to an impaired photosynthetic activity (caused by lower gs and Ci/Ca ratio; stomatal limitation of photosynthesis) and a higher risk of ROS production (enhanced ETR/Agross ratio). P. indica colonization improved quinoa plant growth, with total biomass increased by 8% (controls) and 76% (drought‐stressed plants), confirming the growth‐promoting activity of P. indica. Fungal colonization seems to diminish drought‐induced growth hindrance, likely, through an improved water balance, reflected by the higher leaf ψw and gs. Additionally, stomatal limitation of photosynthesis was alleviated (indicated by enhanced Ci/Ca ratio and Anet), so that the threat of oxidative stress was minimized (decreased ETR/Agross). These results infer that symbiosis with P. indica could negate some of the detrimental effects of drought on quinoa growth, a highly desired feature, in particular at low water availability.  相似文献   
4.
In Bolivia, one of the world’s most important centres of plant domestication, there is growing awareness of the value of native Andean crops, both for domestic consumption and for market sale – notably the virtually boom‐like consumer demand for quinoa around the world. The southern altiplano of Bolivia, south of Oruro, relies almost purely on the production of quinoa and breeding of llamas, which have also been selected as the two commodities of priority to the government to increase the income of the country. Presently, however, quinoa is facing increasing problems in production, owing to its increasing export market and price. The flat areas around the salt desert of the southern altiplano, previously characterized by natural vegetation fed by the llamas, are being increasingly sown with quinoa, hence transformed into deserts, because intensive cultivation methods make the soil loose its fertility. Possible solutions to these problems will require extensive efforts in the south, in addition to various strategies, which also include other parts of the Bolivian altiplano and a strengthened focus on other Andean crops.  相似文献   
5.
外来植物土荆芥入侵的化学基础探讨   总被引:1,自引:0,他引:1  
土荆芥为藜科藜属一年生或多年生直立草本植物,1864年首次发现于中国台湾省台北淡水,2010年1月7日被列入中国《第二批外来入侵植物种名单》。目前对土荆芥的入侵学研究主要集中在生物学、生态学、化学成分、他感作用、逆境抗性等方面,因此其入侵机制主要是化学武器假说,如次生代谢旺盛,具化感潜力,抗逆性强等。但并未从分子学角度进行相关研究,如土荆芥的遗传进化特点、土荆芥入侵的分子标记、土荆芥的代谢组学等。尤其是土荆芥入侵之后,其与本土植物的种子萌发速度或生长速度比较(优先效应),目前尚未有报道。因此,未来在上述研究的基础上,必须对其分子生物学开展深入研究,尤其应重点研究土荆芥入侵的优先效应机制。  相似文献   
6.
为研究不同干旱程度对不同藜麦种子萌发及幼苗生长期耐旱性的影响,以忻藜1号(黑藜)、忻藜2号(白藜)和忻藜3号(红藜)为材料,采用培养皿萌发、土培育苗的方法,设置6个PEG 6000浓度梯度(0、5%、10%、15%、20%、25%),对3种藜麦的种子和幼苗进行处理,测定其种子发芽率、发芽势、下胚轴长、根长等指标和幼苗脯氨酸含量、丙二醛(MDA)含量、超氧化物歧化酶(SOD)活性和过氧化物酶(POD)活性等生理指标。结果表明:(1)随着PEG 6000浓度的升高,藜麦种子的发芽势、发芽率、下胚轴长和根长都呈现逐渐降低的趋势,用回归分析求得白藜半致死PEG 6000干旱胁迫浓度为20.02%,黑藜为20.25%,红藜为24.70%;(2)随着PEG 6000浓度的升高,3种藜麦幼苗SOD和POD活性都呈先升后降的趋势;MDA和脯氨酸含量与干旱胁迫程度呈显著正相关关系。由此可得,红藜耐旱性最强,黑藜次之,白藜最差。  相似文献   
7.
8.
为探讨不同放牧强度下一年生植物种群特征及空间分布的变化特点及差异,本研究以内蒙古四子王旗短花针茅荒漠草原一年生植物刺穗藜(Chenopodium aristatum)为对象,分析了围封对照(CK)、轻度放牧(Light grazing)、中度放牧(Moderate grazing)和重度放牧(Heavy grazing)下刺穗藜种群特征(密度、单株重、株高、比叶面积、叶片/茎/根系干物质含量、叶片全碳、氮含量),种群变异性及其空间分布。结果表明:放牧显著影响刺穗藜种群密度(P<0.05),但对其比叶面积、叶片/根系干物质含量及叶片全碳、氮含量无显著影响;总体而言,放牧使刺穗藜种群密度增加,但对其种群性状影响较小;放牧使得刺穗藜种群相对密度增大(P<0.05),并造成其种群变异性降低(P<0.05);对刺穗藜种群空间分布模拟发现,放牧使得刺穗藜种群空间分布均匀,空间异质性降低。在草地利用过程中,一年生植物种群特征及其空间分布可能对群落结构造成影响,对其进行相关研究很有必要。  相似文献   
9.
Reviewing the situation of quinoa production in southern Bolivia, Jacobsen (2011, J. Agron. Crop Sci. 197: 390) argues that the booming export market has a negative effect on the environment and on the home consumption of quinoa, thereby leading to an environmental disaster in the region. In view of the scarcity of scientific knowledge on the rapid social and environmental dynamics in the region, we consider that Jacobsen’s review misrepresents the situation of quinoa production in southern Bolivia. Specifically, we argue that (i) the data presented by Jacobsen (2011, J. Agron. Crop Sci. 197: 390) do not support any drop in quinoa crop yield supposed to reflect soil degradation and (ii) his demonstration regarding home consumption of quinoa is ill‐founded from both a nutritional and a cultural point of view. We suggest that the diffusion of the arguments exposed by Jacobsen (2011, J. Agron. Crop Sci. 197: 390), because of their flaws, might have strong negative impacts on those concerned with sustainable food production and fair‐trade with developing countries. We conclude that, rather than reinforced agro‐technical controls on local farmers, the rising competition in the international quinoa market requires a shift towards an ethical economy and ethical research cooperation with quinoa producers.  相似文献   
10.
Quinoa is a native Andean crop for domestic consumption and market sale, widely investigated due to its nutritional composition and gluten‐free seeds. Leaf water potential (Ψleaf) and its components and stomatal conductance (gs) of quinoa, cultivar Titicaca, were investigated in Southern Italy, in field trials (2009 and 2010). This alternative crop was subjected to irrigation treatments, with the restitution of 100 %, 50 % and 25 % of the water necessary to replenish field capacity, with well water (100 W, 50 W, 25 W) and saline water (100 WS, 50 WS, 25 WS) with an electrical conductivity (ECw) of 22 dS m?1. As water and salt stress developed and Ψleaf decreased, the leaf osmotic potential (Ψπ) declined (below ?2.05 MPa) to maintain turgor. Stomatal conductance decreased with the reduction in Ψleaf (with a steep drop at Ψleaf between ?0.8 and 1.2 MPa) and Ψπ (with a steep drop at Ψπ between ?1.2 and ?1.4 MPa). Salt and drought stress, in both years, did not affect markedly the relationship between water potential components, RWC and gs. Leaf water potentials and gs were inversely related to water limitation and soil salinity experimentally imposed, showing exponential (Ψleaf and turgor pressure, Ψp, vs. gs) or linear (Ψleaf and Ψp vs. SWC) functions. At the end of the experiment, salt‐irrigated plants showed a severe drop in Ψleaf (below ?2 MPa), resulting in stomatal closure through interactive effects of soil water availability and salt excess to control the loss of turgor in leaves. The effects of salinity and drought resulted in strict dependencies between RWC and water potential components, showing that regulating cellular water deficit and volume is a powerful mechanism for conserving cellular hydration under stress, resulting in osmotic adjustment at turgor loss. The extent of osmotic adjustment associated with drought was not reflected in Ψπ at full turgor. As soil was drying, the association between Ψleaf and SWC reflected the ability of quinoa to explore soil volume to continue extracting available water from the soil. However, leaf ABA content did not vary under concomitant salinity and drought stress conditions in 2009, while differing between 100 W and 100 WS in 2010. Quinoa showed good resistance to water and salt stress through stomatal responses and osmotic adjustments that played a role in the maintenance of a leaf turgor favourable to plant growth and preserved crop yield in cropping systems similar to those of Southern Italy.  相似文献   
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