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891.
Olawale Mashood Aliyu Oluwayemisi Oluwatosin Adeigbe Joshua Adedokun Awopetu 《Journal of Crop Science and Biotechnology》2011,14(2):143-150
The problem of declining tree yield has led to an investigation into the effectiveness of foliar application of exogenous
hormones to improve flowering, fruit set, and fruit retention in cashew. Five exogenous hormones, one Gibberellic Acid (GA3) and four Auxins (IAA, IBA, NAA, and 2,4-D) at seven different rates of application (0 mg L−1, 10 mg L−1, 25 mg L−1, 50 mg L−1, 100 mg L−1, 250 mg L−1, and 500 mg L−1) were tested on six yield-related components of the two Brazilian cashew genotypes. This trial was a factorial split-split-plot
design with each treatment replicated five times within a tree and three replications (three trees) per genotype. Responses
varied significantly between exogenous hormones, concentrations and genotypes. The cashew plants used showed hormone-specific
and optimum concentration response patterns. Of the five exogenous hormones tested, GA3 was most effective as its application at 50–100 mg L−1 gave five-fold improvements in flowering (precocity and number of hermaphrodite flowers) and fruiting, and about 69% increase
in fruit retention ability and 25% in nut size. Panicles treated with GA3 also produced relatively bigger nuts compared to the untreated. Days to flowering was found to be hormone sensitive, while
production of hermaphrodite flowers, fruit set, and nut development tended to be concentration specific. The GA3 exhibited a broad concentration tolerance among the five exogenous hormones investigated. Our data showed that using GA3 at 50 mg L−1 will enhance flowering precocity, shorten flowering duration, increase production of hermaphrodite flowers and fruit set
significantly, and resultant nuts develop optimally with high percentage retention. Thus, it suggests cashew yield could be
increased by exogenous foliar application of GA3 at 50–100 mg L−1 at pre-blooming stage. 相似文献
892.
We evaluated support for four alternate hypotheses explaining the distribution of breeding Brown-headed Cowbirds (Molothrus ater) in forests at varying distances from the forest edge in three Midwestern USA landscapes with varying amounts of forest fragmentation
(core forest area ranged from 5 to 70%). We focused on breeding cowbirds’ use of forest because of the risk of nest parasitism
to forest-dwelling hosts and to identify factors affecting breeding cowbird habitat selection. We compared distances of cowbird
locations in the forest from the forest edge (“edge distances”) to distances of random forest locations in the entire landscape
or within individual cowbird home ranges. We analyzed 1322 locations of 84 cowbirds across three landscapes. We found support
for the landscape context hypothesis that breeding cowbird preference for forest edge varied with landscape context. Ninety
percent of cowbird locations were within 150–350 m of forest edge, despite the overall availability of forest at greater distances
from edge (as far as 500–1450 m) both within cowbird home ranges and the entire forested landscape. Cowbird preference for
edge varied by landscape context largely due to differences in the availability of forest edge. In a highly fragmented forest
cowbirds utilized the entire forest and likely viewed it as “all edge.” In less fragmented forests, cowbirds preferred edge.
We consider how variation in cowbird edge preference might relate to patterns in host abundance, host diversity, and host
quality because cowbird movements indicate they are capable of using forest farther from edges. 相似文献
893.
Natural ecosystems are life-supporting systems providing diverse ecosystem services (ESs) and benefits to human societies:
e.g., food and clean water, recreation opportunities or climate regulation. The contribution of natural and semi-natural ecosystems
to the provision of such services depends to a large extent on vegetation structure and composition, which, in turn, change
as a result of interactions between human decisions about land management, and spontaneous biological and environmental processes.
Rational management of these dynamic ecosystems requires an ability to predict short- and long-term effects of management
decisions on the desired ESs. The vegetation then contributes to, and modifies, the products and services obtained from the
land. We applied mathematical modeling to study these complex relationships. We developed a model for a Mediterranean ecosystem
which predicts the dynamics of multiple services in response to management scenarios, mediated by vegetation changes. Six
representative ESs representing different groups were selected, based on available scientific information, for a detailed
study: (1) density of geophytes, (2) potential contribution to honey production, (3) energy density of fleshy fruits foraged
by birds, (4) forage for goats, (5) forage for cattle, and (6) carbon retention in woody plants. Mean contributions to each
service by different vegetation cover types were estimated, and the overall service provided by the site was calculated as
a weighted mean of these contributions. Services were measured in their appropriate units and subsequently standardized to
a percentage of the maximum value observed in the study area. We attempted to combine all studied ESs, despite their different
nature, into one “ESs basket”. This paper presents the dynamics of simulated vegetation composition and values of services
in response to management scenarios involving grazing, fire and their combinations. Our approach can help land managers to
evaluate alternative management scenarios by presenting the “services basket” obtained from the entire managed area. 相似文献
894.
Lignin pyrolysis reactions 总被引:2,自引:0,他引:2
Haruo Kawamoto 《Journal of Wood Science》2017,63(2):117-132
Lignin, an aromatic constituent of woody biomass, is a potential renewable aromatic feedstock for a sustainable future carbon economy. Pyrolysis-based technologies, such as fast pyrolysis and gasification, are promising methods for converting lignin into biochemicals, biomaterials, and biofuels. A better understanding of the molecular mechanisms involved in lignin pyrolysis/gasification would guide the development of the controlled pyrolysis and gasification systems to overcome issues with low product selectivity, an intrinsic drawback of current pyrolysis-based technologies. This review article summaries the state-of-the-art research into molecular mechanisms of lignin pyrolysis and gasification. This information should also be useful for understanding the influence of high temperature heat treatments on the properties of wood. 相似文献
895.
Using three selected overlapping RILs to fine-map the yield component QTL on Chro.D8 in Upland cotton 总被引:1,自引:0,他引:1
Hong Chen Neng Qian Wangzhen Guo Qingping Song Baocheng Li Fujun Deng Cunguang Dong Tianzhen Zhang 《Euphytica》2010,176(3):321-329
Cotton yield improvement is vital to fulfill rising global demands. The identification of major quantitative trait loci (QTL)
for yield components was helpful in molecular marker-assisted selection (MAS) to improve cotton yield. We previously identified
a densely populated QTL region for fiber qualities and yield components on chromosome D8 (Chro.D8) of Upland cotton from a
(7235 × TM-1)RIL. In the present study, to fine-map yield component QTLs, we chose three overlapped recombinant inbred lines
(RILs) with different intervals included the yield component QTLs, and backcrossed each line with TM-1 to develop three large
sized mapping populations. Phenotypic data for yield components were collected in Nanjing (JES/NAU) and Xinjiang (BES/XJ)
in 2006 and 2007. Three simple sequence repeat (SSR) genetic linkage maps on chro.D8 were constructed using 907 individuals
in (7TR-133 × TM-1)F2 (Pop A), 670 in (7TR-132 × TM-1)F2 (Pop B), and 940 in (7TR-214 × TM-1)F2 (Pop C). Three stable QTLs for boll size, two for lint percentage and one for boll number per plant,were detected on chro.D8
following analysis of three RIL backcrossed F2/F2:3 progeny at JES/NAU and BES/XJ although their cultivation practices differ greatly between these two cotton-growing regions.
One QTL for boll number per plant exhibited a phenotypic variance (PV) of 5.6–10.1%, three QTLs for boll size exhibited 15.0–35.5%
PV and two lint percentage QTLs exhibited 10.9–19.3% PV. Negative correlation between lint yield and fiber strength was confirmed. 相似文献
896.
Cultivated peanut, the second most economically important legume crop throughout the United States and the third most important
oilseed in the world, is consistently threatened by various diseases and pests. Sclerotinia minor Jagger (S. minor), the causal agent of Sclerotinia blight, is a major threat to peanut production in the Southwestern U.S., Virginia, and
North Carolina and can reduce yield by up to 50% in severely infested fields. Although host plant resistance would provide
the most effective solution to managing Sclerotinia blight, limited sources of resistance to the disease are available for
use in breeding programs. Peanut germplasm collections are available for exploration and identification of new sources of
resistance, but traditionally the process is lengthy, requiring years of field testing before those potential sources can
be identified. Molecular markers associated with phenotypic traits can speed up the screening of germplasm accessions, but
until recently none were available for Sclerotinia blight resistance in peanut. This study objective of this study was to
characterize the US peanut mini-core collection with regards to a recently discovered molecular marker associated with Sclerotinia
blight resistance. Ninety-six accessions from the collection were available and genotyped using the SSR marker and 39 total
accessions from spanish, valencia, runner market types were identified as new potential sources of resistance and targeted
for further evaluation in field tests for Sclerotinia blight resistance. 相似文献
897.
Fekadu Marame Chemeda Fininsa Harjit Singh Lemma Dessalegne Anhild Andersson Roland Sigvald 《Euphytica》2010,172(1):77-91
The productivity and marketable quality of hot pepper (Capsicum annuum var. annuum L.) are low in tropical regions mainly due to virus infections and lack of effective virus management strategies. The absence
of effective virus management strategies could be attributed to lack of information on virus vectors and host resistance.
Parental (P1 and P2) and progeny (F1, B1, B2 and F2) generations of five hot pepper crosses were grown in Ethiopia at three sites (Bako, Hawasa and Melkasa) to monitor number
and species of potential aphid vectors, disease incidence levels with regards to natural infections by Potato virus Y (PVY) and Ethiopian pepper mottle virus (EPMV) complex, and to determine genetic tolerance of the crop to the viruses. Disease incidence was assessed before the
flowering stage of the crop plants using visible disease symptoms due to infections by PVY and EPMV. The serological tests
revealed presence of symptomless genotypes of the crop to the virus infections. Aphid species potentially transmitting the
viruses, such as Acyrthosiphon pisum (Harris), Aphis fabae (Scopoli), and Myzus persicae (Sulzer), were identified from specimens caught by yellow water traps. The highest number of aphids from yellow water traps
was recorded at a dense foliage growth stage of the crop at Melkasa. Highly significant variation was observed among generations
of the five crosses in response to infections by PVY and EPMV complex. The most susceptible parents had the levels of disease
incidences ranging from 80 to 90%, whereas their progenies had only below 30% incidence levels. The most tolerant parent remained
symptomless to the natural infections of PVY- and EPMV-complex. Incidence levels in progenies of a cross from the most susceptible
and tolerant parents remained below 20%. Based on serological test, the proportion of PVY-positive plants ranged from 0 to
75% and of EPMV-positive plants from 0 to 25%, with 0 to 17% co-infection by the two viruses. Availability of virus sources
in the vicinity, efficiency of aphids in vectoring, weather conditions during the growth period, genetic tolerance and the
growth stage of the crop affected natural infection by PVY- and EPMV-complex. Exploitation of the genetic potential of introduced
elite genotypes and their progenies along with breeding elite local cultivars for resistance and excluding aphid vectors at
young (seedling) stage of the crop plants could be helpful for minimizing losses in yield and quality of hot pepper due to
infections by PVY- and EPMV-complex. 相似文献
898.
Cordia africana Lam. is a commercial timber species that grows naturally throughout sub-Saharan Africa and tropical Arabia. At present very
little is known about genetic variation in this species and baseline information is needed to initiate improvement programs
in Ethiopia. Thus, the objectives of the study were to quantify the inter- and intra-population variations in seed size traits
and germination responses to different constant temperature regimes. Seeds were collected from 30 open-pollinated families
within each of the five populations representing the natural distribution of the species in Ethiopia. To examine seed size
variations, seed length, seed width, and 1,000-seed weight were quantified. Inter- and intra-population variations in seed
germination were investigated under different constant temperature regimes from 20 to 35°C in climate chambers. Significant
variations in seed length, width and weight were detected both at inter- and intra-population levels, and family heritabilities
of 0.63–0.76 showed that much of the phenotypic variation in seed size traits were additive genetic variation. Significant
variation in germination was also found among and within populations as well as between the different constant temperature
regimes. Generally the variation in germination was considerably higher within population than between populations. The optimal
temperature for germination of C. africana seeds was 25–30°C with family heritabilities for germination ranging between 0.20 and 0.33, depending on the germination
temperature. 相似文献
899.
以8个苦荞品种为试验材料,研究不同苦荞品种花和籽粒在植株不同部位的分布特征及差异。结果表明,不同苦荞品种花和籽粒总数存在显著差异,其中川荞2号总花数、总籽粒数最高,分别为3 046.6和1 367.8,而川荞1号最少,分别为1 017.6和487.2,品种间总花数和总籽粒数变异系数分别为34.8%、29.0%。不同苦荞品种花和籽粒空间分布呈现相同趋势,均主要分布于分枝上,分别占整株的76.3%和74.2%以上,且均显著高于主茎,分别高68.7%~87.0%和65.2%~84.5%。生产上可通过调控分枝的有效籽粒数来提高苦荞产量。 相似文献
900.
[Objectives]To probe into the treatment effects of soya lecithin powder combined with conventional therapy on chronic hepatitis B.[Methods]A total of 120 patien... 相似文献