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111.
112.
In southwest France, much of the forested land on sandy spodosols has been converted to continuous maize cropping in the last few decades. To evaluate the impacts of this change on soil organic matter properties, we compared total organic C and neutral and amino sugars content in whole soil and particle size separates of two forested, and five related sites that had been either clear-cut for 12 and 18 mo, or cultivated to maize for 4-22 yr. Soil carbohydrates accounted for 4-7% of the total organic C across all sites. Soil organic C contents of clear-cut and cultivated sites were only 57-79% of the average value measured in forested sites. Accordingly, carbohydrate content of clear-cut and cultivated sites were only 35-66% of the value in forested sites. Ordering the sites in a chronosequence indicated that both total organic C and carbohydrate contents decreased with an increase in time elapsed since clear-cutting and maize cultivation. The only exception was a partial recovery of carbohydrate content in the site that had been under continuous maize for 22 yr. The clay+silt fraction (0-50 μm) was enriched in carbohydrates, mainly of microbial origin, whereas the sand size fractions (50-200 and 200-2000 μm) contained fewer carbohydrates which were mainly of plant origin. Monosaccharide analysis of particle size separates revealed significant differences in carbohydrate composition between sites. Relative to forested sites, the coarse and fine sand fractions in clear-cut and cultivated sites were depleted in carbohydrates and were relatively enriched in plant-derived carbohydrates. Carbohydrate content of the clay+silt fraction drastically decreased upon clear-cutting. Amino sugar content was consistently lower in clear-cut and cultivated sites than in forested sites, indicating that microbial populations were negatively affected by clear-cutting and cultivation. The fungal population appeared more sensitive than bacteria to these land-use changes as indicated by a greater decline in glucosamine than in muramic acid contents. 相似文献
113.
种瓣及密度对大蒜产量的影响 总被引:1,自引:0,他引:1
采用二次正交通用旋转设计,进行了种辩大小与种植密度对大蒜产量影响的研究,建立了大蒜产量与种植密度及种瓣大小间的二元二次数学模型。通过模型解析得出,种植密度对产量的影响大于种瓣大小,但密度对单株产量的贡献为负值。通过计算机模拟试验,得出本试验条件下,获得30000kg/hm2以上产量的种植密度为52.95~63.45万株/hm2、种瓣大小为4.9~7.0g;;单株产量大于50g的种植密度为34.05~4.55万株/hm2、种瓣大小4.9~7.0g。 相似文献
114.
Salinity is a major constraint to irrigated rice production, particularly in semi-arid and arid climates. Irrigated rice is
a well suited crop to controlling and even decreasing soil salinity, but rice is a salt-susceptible crop and yield losses
due to salinity can be substantial. The objective of this study was to develop a highly predictive screening tool for the
vegetative growth stage of rice to estimate salinity-induced yield losses. Twenty-one rice genotypes were grown over seven
seasons in a field trials in Ndiaye, Senegal, between 1991 and 1995 and were subjected to irrigation with moderately saline
water (3.5 mS cm-1, electrical conductivity) or irrigation with fresh water. Potassium/sodium ratios of the youngest three leaves (K/NaLeaves) were determined by flame photometry at the late vegetative stage. Grain yield was determined at maturity. All cultivars
showed strong log-linear correlations between K/NaLeaves and grain yield, but intercept and slope of those correlations differed between seasons for a given genotype and between
genotypes. The K/NaLeaves under salinity was related to grain yield under salinity relative to freshwater controls. There was a highly significant
correlation (p < 0.001) between K/NaLeaves and salinity-induced grain yield reduction: the most susceptible cultivars had lowest K/NaLeaves and the strongest yield reductions. Although there were major differences in the effects of salinity on crops in both the
hot dry season (HDS) and the wet season, the correlation was equally significant across cropping seasons. The earliest possible
time to establish the relationship between K/NaLeaves under salinity and grain yield reduction due to salinity was investigated in an additional trial in the HDS 1998. About 60
days after sowing, salinity-induced yield loss could be predicted through K/NaLeaves with a high degree of confidence (p < 0.01). A screening system for salinity resistance of rice, particularly in arid and semi-arid climates, is proposed based
on the correlation between K/NaLeaves under salinity and salinity-induced yield losses.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
115.
石灰性土壤硒含量与小麦籽粒硒相关性研究 总被引:2,自引:0,他引:2
对新疆不同地区的39个小麦田耕层土壤及籽粒进行调查取样,研究土壤的全硒、有效硒含量与小麦籽粒硒含量的相关性及土壤硒含量的影响因素。结果表明:土壤全硒含量在0.144~1.153 mg·kg-1之间,其中10%属于少硒土壤(0.125~0.175 mg·kg-1),49%属于足硒土壤(0.175~0.450 mg·kg-1),41%属于富硒土壤(0.450~2.000 mg·kg-1),土壤硒的活化率平均为25.11%;小麦籽粒全硒含量在0.004~0.055 mg·kg-1之间,达到国家谷物类食品富硒标准(0.040~3.000 mg·kg-1)的仅有8%,92%小麦籽粒硒含量低于国家谷物类食品富硒标准,由此可知土壤全硒含量与小麦籽粒硒含量无相关性,而土壤有效硒与籽粒硒含量呈极显著正相关,所以要充分利用富硒土壤生产富硒小麦就必须提高土壤中硒的有效性;土壤有效硒与土壤p H值呈极显著正相关,因此在实际生产中可以通过改善土壤条件的方法来提高土壤硒的有效性,从而提高小麦籽粒中硒的含量;土壤全硒含量随土壤质地粘重程度的增加而增加。 相似文献
116.
通过建设堆顶镁制瓦盖顶架空,堆脚预制板架空,四周维布挂边,粮堆内码隧道通风,露天堆具有防潮、防漏、防热、防霉、防虫、防鼠、防倒的特点,规范了台、垫、码、盖、挂、密、风、架,探出了冬通风、春密闭、夏隔热、秋防治的露天堆管理程序。同时利用自然通风降温、密闭隔热保冷等措施,不仅保证了储粮安全和品质新鲜,也为企业节约了大量经费。 相似文献
117.
118.
Abstract – Home ranges are central to understanding habitat diversity, effects of fragmentation and conservation. The distance that an organism moves yields information on life history, genetics and interactions with other organisms. Present theory suggests that home range is set by body size of individuals. Here, we analyse estimates of home ranges in lakes and rivers to show that body size of fish and water body size and shape influence home range size. Using 71 studies including 66 fish species on five continents, we show that home range estimates increased with increasing water body size across water body shapes. This contrasts with past studies concluding that body size sets home range. We show that water body size was a consistently significant predictor of home range. In conjunction, body size and water body size can provide improved estimates of home range than just body size alone. As habitat patches are decreasing in size worldwide, our findings have implications for ecology, conservation and genetics of populations in fragmented ecosystems. 相似文献
119.
M. V. Braunack 《Soil & Tillage Research》1995,33(3-4):149-161
Rapid wetting of irrigated soils often leads to slaking and slumping, and on drying a surface crust and hard-set conditions may occur. This results in reduced crop emergence unless the surface is kept moist. The effect of aggregate size and water content on the emergence of soybean and maize from an Entic chromustert (heavy cracking clay) was determined using pots of sieved aggregates with size ranges less than 1, 1–2, 2–5 and 5–15 mm at soil water contents of 15, 20 and 25 g (100 g)−1. Unsieved soil was used as a control. Greatest emergence tended to occur from fine (1–2 mm) seedbeds compared with coarse (5–15 mm) seedbeds for both crops. A covered treatment, simulating a stubble mulch, resulted in greater emergence than an uncovered treatment for all water contents and aggregate sizes. Earlier emergence occurred from finer (less than 1 mm and 1–2 mm) seedbeds than from coarse (5–15 mm) seedbeds, and at the greatest water content used. Soil strength, measured with a shear vane, decreased with increasing water content and tended to be less on fine (1–2 mm) seedbeds compared with very fine (less than 1 mm) or coarse (5–15 mm) seedbeds. It is recommended that, for good emergence from this Entic chromustert, seedbeds be brought to a water content of 25 g (100 g)−1 by capillary wetting to prevent hardsetting and consist of 1–2 or 2–5 mm aggregates for soybean and maize, respectively, and have a stubble mulch on the surface. This corresponds to an equivalent depth of water of 15 mm and 9 mm for soybean and maize, respectively, in the top 50 mm of the profile. 相似文献
120.
Ludwig John A. Eager Robert W. Bastin Gary N. Chewings Vanessa H. Liedloff Adam C. 《Landscape Ecology》2002,17(2):157-171
The cover, number, size, shape, spatial arrangement and orientation of vegetation patches are attributes that have been used
to indicate how well landscapes function to retain, not ‘leak’, vital system resources such as rainwater and soil. We derived
and tested a directional leakiness index (DLI) for this resource retention function. We used simulated landscape maps where
resource flows over map surfaces were directional and where landscape patch attributes were known. Although DLI was most strongly
related to patch cover, it also logically related to patch number, size, shape, arrangement and orientation. If the direction
of resource flow is multi-directional, a variant of DLI, the multi-directional leakiness index (MDLI) can be used. The utility
of DLI and MDLI was demonstrated by applying these indices to three Australian savanna landscapes differing in their remotely
sensed vegetation patch attributes. These leakiness indices clearly positioned these three landscapes along a function-dysfunction
continuum, where dysfunctional landscapes are leaky (poorly retain resources).
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献