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Biochemical evaluation of Lactuca L. germplasm

机译:乳杆菌种质的生化评价

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The genus Lactuca L. has an economic, edible and medicinal importance. However, it faces many biotic and a biotic problems that limited its yield. Several viral, bacterial and fungal pathogens infect the genus and inflect a devastating effect. Also, some insect pathogens cause damage to leaves of Lactuca serriola and Lactuca sativa. The use of pesticides to control these devastated diseases is harmful for human and environment. The most important abiotic factors that limited the growth of lettuce arelow and high temperature, high soil salinity, soil acidity, high soil moisture and humidity. Therefore, to overcome the harmful effect of biotic and a biotic factors, the scientists pay attention to genetic resources to find the genes conferring resistance, and the genes conferring high and good agronomic traits. The first step in exploiting genetic resources for human interest is the collection of genetic resources and the assessment of genetic diversity within and among species. There are many techniques used in evaluation of genetic diversity within and among plant species. They are extends from morphological traits to molecular markers passing with biochemical markers. In this review, we surveyed all the data on using biochemical markers in the genetic assessment of Lactuca spp.
机译:乳杆菌属(Lactuca L.)具有经济,食用和医学重要性。然而,它面临许多生物和生物问题,限制了其产量。几种病毒,细菌和真菌病原体感染该属,并产生破坏性作用。而且,一些昆虫病原体会损害丝状乳杆菌和紫花苜蓿的叶子。使用农药来控制这些严重的疾病对人类和环境都是有害的。限制生菜生长的最重要的非生物因素是低温和高温,高盐度,土壤酸度,高土壤湿度和湿度。因此,为了克服生物和生物因子的有害作用,科学家们关注遗传资源以寻找具有抗性的基因,以及具有高农艺性状的基因。为人类利益开发遗传资源的第一步是收集遗传资源并评估物种内部和物种之间的遗传多样性。有许多技术可用于评估植物物种内部和物种之间的遗传多样性。它们从形态性状延伸到通过生化标记物的分子标记物。在这篇综述中,我们调查了所有使用生化标记物进行Lactuca spp基因评估的数据。

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