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THE LAW CONTROLLING THE QUANTITY OF REGENERATION IN THE STEM OF BRYOPHYLLUM CALYCINUM

机译:百合苔藓茎中再生量的控制规律

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摘要

1. A method is given which allows us to measure the influence of the mass of a leaf upon the quantity of shoots regenerated in an isolated piece of stem. This method consists in isolating a piece of stem with only two leaves left at the basal node and then splitting the stem lengthwise so that each half has one basal leaf. By leaving one leaf intact while the size of the sister leaf is reduced, the influence of the mass of the leaf upon the quantity of shoots regenerated by the stem can be measured. 2. This method has yielded the result that the mass of shoots regenerated at the apex of such a piece of stem increases under equal conditions and in equal time with the mass of the leaf, and is approximately proportional to the mass of the leaf. 3. Such an influence of the mass of the leaf upon the mass of shoots produced by the stem is only intelligible on the assumption that the growth of the regenerating shoot occurs at the expense of material furnished by the basal leaf. 4. This assumption is supported by two facts: first, that in the dark this influence of the leaf disappears more or less completely; and, second, that a leaf attached to the base of a regenerating stem after some time weighs markedly less than does a sister leaf completely detached from the stem, but otherwise under equal conditions. 5. This latter fact that a leaf when attached to the base of an excised piece of stem wilts more rapidly than when completely isolated is the reason that the proportionality between mass of a basal leaf and mass of shoot regenerated at the apex of an isolated piece of stem cannot always be demonstrated with the same degree of accuracy as the proportionality between the mass of completely isolated leaves and the mass of shoots they produce. 6. The material furnished by the leaf to the stem is not restricted to water but includes also the solutes, since not only the fresh weight but also the dry weight of the shoot regenerated by a piece of stem increases with the mass of the leaf attached to the base of the stem; and since not only the water contents but the dry weight of a leaf attached to the base of an excised piece of stem diminish when compared with the dry weight of a completely detached sister leaf. 7. The mass of shoots produced by an isolated piece of stem without leaf is small and almost negligible compared with the mass of shoots produced by the same piece of stem when a leaf of sufficient mass is attached to the base of the stem.
机译:给出了一种方法,该方法使我们能够测量叶片质量对孤立的茎中再生芽的数量的影响。该方法包括分离一片仅在基部节上留有两片叶子的茎,然后沿长度方向将茎劈开,使每一半都有一个基片。通过保持一片叶子完整而减小其姊妹叶子的大小,可以测量叶子的质量对茎再生的芽量的影响。 2.该方法产生的结果是,在这样的茎的顶点处再生的芽的质量在相同的条件下并且在相同的时间内与叶的质量一起增加,并且大约与叶的质量成比例。 3.只有在假定再生芽的生长是以基叶提供的材料为代价的前提下,才能理解叶质量对茎产生的芽质量的这种影响。 4.这一假设有两个事实:第一,在黑暗中,叶子的这种影响或多或少地完全消失了;第二,经过一段时间后,附着在再生茎基部上的叶子的重量明显小于完全脱离茎的姊妹叶,但在相同条件下的重量却要轻得多。 5.后一个事实是,叶片附着在切下的茎片基部上时比完全分离时更容易枯萎,这是基底叶的质量与芽的质量在离体的茎尖处再生成比例的原因。始终无法以完全分离的叶子的质量与其产生的芽的质量之间的比例相同的精确度来证明茎的质量。 6.叶片提供给茎的材料不仅限于水,还包括溶质,这是因为不仅茎的再生重量增加,而且茎的干重也随叶片质量的增加而增加茎的根部并且,与完全分离的姊妹叶的干重相比,不仅水分减少,而且附着在切下的茎基部的叶子的干重也减小了。 7.与单独的一块没有叶子的茎产生的芽的质量相比,当有足够质量的叶子附着在茎的根部上时,与由同一块茎产生的芽的质量相比,它几乎可以忽略不计。

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