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Microgeographic Genome Size Differentiation of the Carob Tree Ceratonia siliqua at ‘Evolution Canyon’ Israel

机译:以色列进化峡谷上的角豆树(Ceratonia siliqua)角豆树的微地理基因组大小差异

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摘要

• Background and Aims We tested whether the local differences in genome size recorded earlier in the wild barley, Hordeum spontaneum, at ‘Evolution Canyon’, Mount Carmel, Israel, can also be found in other organisms. As a model species for our test we chose the evergreen carob tree, Ceratonia siliqua.• Methods Genome size was measured by means of DAPI flow cytometry.• Key Results In adults, significantly more DNA was recorded in trees growing on the more illuminated, warmer, drier, microclimatically more fluctuating ‘African’ south‐facing slope than in trees on the opposite, less illuminated, cooler and more humid, ‘European’ north‐facing slope in spite of an interslope distance of only 100 m at the canyon bottom and 400 m at the top. The amount of DNA was significantly negatively correlated with leaf length and tree circumference. In seedlings, interslope differences in the amount of genome DNA were not found. In addition, the first cases of triploidy and tetraploidy were found in C. siliqua.• Conclusions The data on C. siliqua at ‘Evolution Canyon’ showed that local variability in the C‐value exists in this species and that ecological stress might be a strong evolutionary driving force in shaping the amount of DNA.
机译:•背景和目的我们测试了早先在以色列卡梅尔山“进化峡谷”的野生大麦大麦自发体中记录的基因组大小的局部差异是否也存在于其他生物中。作为测试的模型物种,我们选择了常绿长角豆树Ceratonia siliqua。•方法通过DAPI流式细胞仪测量基因组大小。•主要结果在成虫中,光照越大,温度越高的树上记录的DNA越多。尽管峡谷底部和地面之间的坡距仅为100 m,但相对干燥,干燥,微气候的“非洲”朝南坡比对面的树木更具波动性,照度低,凉爽和潮湿,“欧洲”朝北坡顶部400 m。 DNA的量与叶长和树长显着负相关。在幼苗中,没有发现基因组DNA量的斜坡间差异。此外,在硅角藻中发现了三倍体和四倍体的首例病例。结论结论“进化峡谷”中的硅角藻的数据表明该物种存在C值的局部变化,生态压力可能是决定DNA数量的强大进化驱动力。

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