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排序方式: 共有27条查询结果,搜索用时 15 毫秒
1.
We compared the influence of pollination intensity (PI) on fruit set and seed number per pod in two cacao (Theobroma cacao L.) clones, IFC5 (Forastero Lower-Amazon Amelonado), which is self-compatible and known to produce a high number of seeds per pod under open pollination, and SCA6 (Forastero Upper-Amazon), which is self-incompatible and known to produce a low number of seeds per pod under open pollination. With both clones, PI had a positive effect on fruit set, with the maximum rate requiring more than 150 pollen grains per pod. One-half of the maximum rate of fruit set was reached with 39 pollen grains per pod for SCA6, and 78 for IFC5. With SCA6, a significant positive effect of PI on seed number per pod was also observed, with maximum seed number requiring more than 200 pollen grains per pod. In contrast, seed numbers with IFC5 were approximately equal over the PI range 100–800 pollen grains per pod. Patterns of seed number per pod were compared after: (1) open insect pollination, (2) low-intensity hand pollination and (3) high-intensity hand pollination. The patterns obtained with IFC5 under open pollination showed a peak of 40–50 seeds per pod, whereas the distribution patterns were more even with SCA6. The pattern of seed number under open pollination was similar to that obtained with high-intensity hand pollination for IFC5, and with low-intensity hand pollination for SCA6. We concluded that the high number of seeds per pod observed with IFC5 under natural insect pollination may be explained by a high number of compatible self-pollen grains on the stigma and by a severe drop of low-pollinated flowers eliminating potential lowfilled fruits. With SCA6, however, the number of compatible pollen grains deposited on the stigma was probably low under open pollination, and the flowers required lower pollen quantities to set fruit, which resulted in a high frequency of low seed numbers per fruit. This difference in the capacity to set low-seeded fruits might be considered as an adaptive trait related to the mode of reproduction.  相似文献   
2.
Summary The genetic basis of seed setting was evaluated in seven clones of alfalfa selected under predominantly self-pollinating conditions. They were hand crossed in all possible combinations. Their compatibility was studied by the percentage of flowers forming pods and number of seeds per pod during crossing. The variances for GCA, SCA and reciprocal effects were significant for percentage of pod set with a narrow sense héritability of 64 %. This suggested maternal influence of clones on percent pod set, controlled primarily by additive genetic components. GCA was the only significant component for number of seeds per pod with a narrow sense heritability of 71%. There were wide differences between the clones in their relative magnitude of GCA, SCA and reciprocal effects for both traits used as compatibility indexes. Performance of the diallel crosses was judged by studying seed yield and its related characters, namely seeds per pod, dry matter per plant, frost resistance, plant vigor and plant height. Although GCA and SCA variances were significant for all characters, reciprocal differences in general were absent. The SCA values were very high as compared to GCA. Narrow sense heritability values were very low while broad sense heritability were much higher. This suggested that almost none of the variation was due to additive genetic components and all the variability is controlled by interactions of a digenic, trigenic and quadrigenic nature and heterzozygosity. Heterosis was evaluated by comparing the seed yield of single crosses with their mid-parent and high-parent, and very high values were observed. Thus selection of better genes may not be feasible and further improvement in selected clones may have to be brought about by utilization of various interactions and heterosis. An attempt was made to find combinations of characters that may be used for the selection of seed yield but none were found to be satisfactory.  相似文献   
3.
A large variety of reproductive patterns is present among alpine plants to ensure the persistence of populations in such harsh environments. In the present study, the role of spontaneous selfing and its contribution to the actual reproductive success of an alpine pioneer plant was investigated. The results showed that Saxifraga aizoides is clearly self-compatible. Open-pollinated flowers exhibited higher seed numbers per capsules than selfing flowers, albeit the difference was not significant. Although seed weight seemed to be independent from the kind of pollination, open-pollinated flowers had a significantly higher proportion of germinated seeds than selfed ones. Furthermore, the ability of fast germination found in S. aizoides enables the seeds to take advantage of all possible opportunities for germination. In summary, S. aizoides exhibits a successful recruitment strategy for an alpine pioneer species.  相似文献   
4.
对分布于云南西北部的茄参(Mandragora caulescens)的繁育系统进行了研究。茄参的花期为5月底到6月初,单花持续时间为(9.9±2.8)d,其性表达方式为雌性先熟。有三种昆虫拜访茄参的花,白背熊蜂蜂王是最有效的传粉昆虫,但其访花频率很低;苍蝇和蚂蚁的访花频率较高,但苍蝇传粉效率十分有限;蚂蚁是窃蜜者。授粉实验证明茄参具有部分自交亲和能力,但由于雌性先熟,不具备主动自交能力。人工添加异交花粉显著提高了结实率和结籽数,证明茄参存在花粉限制。茄科的大部分植物是严格自交不亲和的,但茄参族的茄参是自交部分亲和,这和茄科天仙子族的部分成员类似。我们认为这两个独立起源于新世界向欧亚大陆扩散事件的族,各自从自交不亲和向自交亲和转变可能与高山地区恶劣的自然条件有关,这种繁育系统的进化模式是否具有普遍性值得进一步研究。  相似文献   
5.
The breeding system determines different ways whereby seeds will be produced, and the degree of dependency of plants on pollinators for seed set. The genus Chloraea (Orchidaceae) has its main center of diversity in southern South America. There is only poor knowledge concerning its breeding system and pollination. We determined the breeding system of C. crispa, C. chrysantha, C. galeata, and two color forms of C. bletioides (yellow- and white-flowered forms). None of the species in this study produced fruits through apomixis or autogamy, thereby indicating a complete dependency on pollen and pollinators. Geitogamy did not differ significantly with respect to xenogamy excepting in the yellow-flowered form of C. bletioides. Thus, the indexes of self-incompatibility for the white- and yellow-flowered forms of C. bletioides, C. galeata, C. crispa, and C. chrysantha, were 1.00, 0.56, 0.82, 1.09, and 0.81, respectively; indicating that, excluding the yellow-flowered form of C. bletioides which must be regarded as partially self-incompatible, all orchids assessed are totally self-compatible plants. Natural fruiting in the yellow-flowered C. bletioides, C. chrysantha and C. galeata was high, in spite of being nectarless orchids, since the availability of pollinators under natural conditions seemingly resulted unlimited. However, no pollinator was observed visiting C. chrysantha and C. galeata, whereas the yellow-flowered form of C. bletioides was visited by hymenopterans and coleopterans. At contrast, reproductive success of the white-flowered form of C. bletioides and C. crispa was pollen limited, the former being visited by hymenopterans, dipterans, and colepterans; and the latter by two hymenopterans.  相似文献   
6.
铃铛子和赛莨菪(茄科)的传粉机制比较研究   总被引:1,自引:0,他引:1  
通过野外交配系统试验和传粉昆虫观察,以铃铛子(Anisodus luridus)和赛莨菪(A.camiolicoides)为研究对象,探讨了山莨菪属内自交亲和系统的进化与传粉昆虫的转变。结果表明,铃铛子和赛莨菪均属于自交完全亲和的类群,但两个种的自动自交能力均不强,而且都存在传粉限制。北方黄胡蜂(Vespula rtfarufa)和石长黄胡蜂(Dolichovespula saxonica)分别是铃铛子和赛莨菪的主要传粉昆虫,自然状态下两种昆虫的传粉效率均比较高,但两种昆虫访问两种植物时传递花粉的方式不同,其中北方黄胡蜂主要促进了铃铛子的花间传粉,而石长黄胡蜂访花引起赛莨菪同一朵花内的传粉。通过与该属的另一种植物山莨菪(A.tanguticus)的传粉机制比较,发现在山莨菪属的物种分化过程中,由自交不亲和转变为自交完全亲和,传粉昆虫也发生了转变,证明了自交亲和系统存在于起源较晚的类群中。高山环境中频繁且不可预测的降雨可能降低了传粉昆虫的活动能力,进而导致铃铛子和赛莨菪均存在传粉限制。  相似文献   
7.
雌先熟植物茄参(茄科)的繁育系统   总被引:1,自引:0,他引:1  
对分布于云南西北部的茄参(Mandragoraca caulescens)的繁育系统进行了研究。茄参的花期为5月底到6月初,单花持续时间为(9.9±2.8)d,其性表达方式为雌性先熟。有三种昆虫拜访茄参的花,白背熊蜂蜂王是最有效的传粉昆虫,但其访花频率很低;苍蝇和蚂蚁的访花频率较高,但苍蝇传粉效率十分有限;蚂蚁是窃蜜者。授粉实验证明茄参具有部分自交亲和能力,但由于雌性先熟,不具备主动自交能力。人工添加异交花粉显著提高了结实率和结籽数,证明茄参存在花粉限制。茄科的大部分植物是严格自交不亲和的,但茄参族的茄参是自交部分亲和,这和茄科天仙子族的部分成员类似。我们认为这两个独立起源于新世界向欧亚大陆扩散事件的族,各自从自交不亲和向自交亲和转变可能与高山地区恶劣的自然条件有关,这种繁育系统的进化模式是否具有普遍性值得进一步研究。  相似文献   
8.
 Many members of the Solanaceae display a type of gametophytic self-incompatibility which is controlled by a single multiallelic locus, called the S-locus. From our previous survey of more than 100 natural populations of Petunia axillaris (a solanaceous species) in Uruguay, we had found that the majority of the populations of subspecies axillaris were comprised of virtually all self-incompatible individuals. The rest were ”mixed populations” which contained mostly self-incompatible and some self-compatible individuals. In this study, we examined the self-incompatibility behavior and determined the S-genotypes of 33 plants raised from seeds obtained from one such mixed population, designated U1. We found that 30 of the 33 plants (designated U1–1 through U1–33) were self-incompatible and a total of 18 different S-alleles were represented. To determine the S-genotypes of the three self-compatible plants (U1–2, U1–16, and U1–22) and the possible causes for the breakdown of their self-incompatibility, we carried out reciprocal crosses between each of them and each of the 18 S-homozygotes (S 1 S 1 through S 18 S 18 ) obtained from bud-selfed progeny of 14 of the 30 self-incompatible plants. For U1–2 and U1–16, we also carried out additional crosses with U1–25 (with S 1 S 13 genotype) and an S 13 S 15 plant (obtained from a cross between an S 13 -homozygote and an S 15 -homozygote), respectively. Based on all the pollination results and analysis of the production of S-RNases, products of S-alleles in the pistil, we determined the S-genotypes of U1–2, U1–16, and U1–22, and propose that the breakdown of self-incompatibility in these three plants is caused by suppression of the production of S13-RNase from the S 13 -allele they all carry. We have termed this phenomenon ”stylar-part suppression of an S-allele” or SPS. Received: 25 September 1998 / Revision accepted: 22 December 1998  相似文献   
9.
10.
BackgroundSelf-incompatibility (SI) systems prevent self-fertilization in several species of Poaceae, many of which are economically important forage, bioenergy and turf grasses. Self-incompatibility ensures cross-pollination and genetic diversity but restricts the ability to fix useful genetic variation. In most inbred crops it is possible to develop high-performing homozygous parental lines by self-pollination, which then enables the creation of F1 hybrid varieties with higher performance, a phenomenon known as heterosis. The inability to fully exploit heterosis in outcrossing grasses is partially responsible for lower levels of improvement in breeding programmes compared with inbred crops. However, SI can be overcome in forage grasses to create self-compatible populations. This is generating interest in understanding the genetical basis of self-compatibility (SC), its significance for reproductive strategies and its exploitation for crop improvement, especially in the context of F1 hybrid breeding.ScopeWe review the literature on SI and SC in outcrossing grass species. We review the currently available genomic tools and approaches used to discover and characterize novel SC sources. We discuss opportunities barely explored for outcrossing grasses that SC facilitates. Specifically, we discuss strategies for wide SC introgression in the context of the LoliumFestuca complex and the use of SC to develop immortalized mapping populations for the dissection of a wide range of agronomically important traits. The germplasm available is a valuable practical resource and will aid understanding the basis of inbreeding depression and hybrid vigour in key temperate forage grass species.ConclusionsA better understanding of the genetic control of additional SC loci offers new insight into SI systems, their evolutionary origins and their reproductive significance. Heterozygous outcrossing grass species that can be readily selfed facilitate studies of heterosis. Moreover, SC introduction into a range of grass species will enable heterosis to be exploited in innovative ways in genetic improvement programmes.  相似文献   
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