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The earliest indication of ovule abortion in almond (Prunus dulcis [Mill.] D. A. Webb ‘Nonpareil‘) is the deposition of callose (as indicated by aniline blue fluorescence) 2 days after pollination which is 2 days before clear histological symptoms of ovule degeneration are evident and 6 days before fertilization of the viable ovule. Callose deposition begins in the chalazal region of the nucellus where the funicular trace enters the ovule and ramifies into the integuments. As ovule abortion progresses, callose deposition in the inner integument extends as a ring around the nucellus. Movement of the fluorescent dye disodium fluorescein (uranin) indicated that translocation from the vascular trace into abortive ovules becomes blocked at the chalazal position. The dye freely penetrates and diffuses into viable ovules but fails to penetrate abortive ovules. Lack of, or delayed and irregular, megagametophyte development was another characteristic of abortive ovules. Biochemical and histochemical analyses of abortive and viable ovules indicated that carbohydrate depletion parallels ovule abortion. These observations lead to the conclusion that ovule abortion is accompanied by blockage in metabolite supply although whether this blockage is the primary cause or a consequence of ovule abortion is uncertain.  相似文献   

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《Inorganica chimica acta》1986,116(2):171-177
The crystal and molecular structure of [Y(OH2)8]Cl3·(15-crown-5) has been determined by single- crystal X-ray diffraction. The complex crystallizes in the monoclinic space group P21/n with Z = 4. Lattice parameters are a = 9.202(2), b = 17.247(3), c = 15.208(3) Å, and β = 92.39(2)°. The structure was solved by Patterson and Fourier techniques and refined by least-squares to a final conventional R value of 0.081. The Y(III) ion is eight coordinate, bonded to the oxygen atoms of the eight water molecules. Three of the water molecules are hydrogen bonded to crown ether molecules. The three chloride ions participate in hydrogen bonds with the remaining five water molecules. The YO(water) distances range from 2.322(6) to 2.432(7) Å and average 2.37(4) Å. The average O(water)···Cl and O(water)···O(crown) hydrogen bonded separations are 3.08(4) and 2.76(7) Å, respectively.  相似文献   

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Indiscriminate use of synthetic pesticides to control the pests causes negative effects on non-target organisms. Some of the chemicals under B and C categories are carcinogenic to humans. The present study was aimed to assess the antifeedant, larvicidal and pupicidal activities of Hygrophila schulii (syn. H. auriculata) and Blumea mollis against Helicoverpa armigera. Maximum antifeedant activity of 70.01% was observed in ethyl acetate extract of H. schulii at 5.0% concentration with LC50 value of 2.0%. B. mollis ethyl acetate extract at 5.0% concentration showed antifeedant activity of 35.40% with LC50 value of 8.38%. The data for antifeedant activity showed homogeneity of variances in Levene Statistics and normality in Shapiro–Wilk test. Ethyl acetate extract of H. schulii at 5.0% concentration showed 68.66% larvicidal activity with LC50 value of 2.97%. It also showed 73.33% pupicidal activity and was statistically significant from other treatments. No pupicidal activity was observed in ethyl acetate extract of B. mollis. All concentrations of ethyl acetate extract of H. schulii showed promising biological activities which differed statistically from other treatments. Ethyl acetate extract of H. schulii could be used to develop new botanical formulations to manage agricultural pests.  相似文献   

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