THE ESSENTIAL ROLE OF CALCIUM ION IN POLLEN GERMINATION AND POLLEN TUBE GROWTH
American Journal of Botany · 1963 · 1.3K citations · 15 references
BiologyDevelopmental BiologyPollen GrainsBotanyHealth SciencesPhysiologyPlant ReproductionPollen GerminationMedicineCulture MediumPlant PhysiologyPlant Development
Brewbaker, James L., and Beyoung H. Kwack. (U. Hawaii, Honolulu.) The essential role of calcium ion in pollen germination and pollen tube growth. Amer. Jour. Bot. 50(9): 859–865. Illus. 1963.—A pollen population effect occurs whenever pollen grains are grown in vitro. Small pollen populations germinate and grow poorly if at all, under conditions which support excellent growth of large pollen populations. The pollen population effect is overcome completely by a growth factor obtained in water extracts of many plant tissues. This factor is shown to be the calcium ion, and its action confirmed in 86 species representing 39 plant families. Other ions (K + , Mg ++ , Na + ) serve in supporting roles to the uptake or binding of calcium. The high requirement of calcium (300–5000 ppm, as Ca (NO 3 ) 2 ·4H 2 O, for optimum growth) and low calcium content of most pollen may conspire to give calcium a governing role in the growth of pollen tubes both in vitro and in situ. It is suspected that ramifications of this role extend to the self‐incompatibilities of plants and to the curious types of arrested tube growth distinguishing, for example, the orchids. A culture medium which proved its merit in a wide variety of pollen growth studies included, in distilled water, 10% sucrose, 100 ppm H 3 BO 3 , 300 ppm Ca (NO 3 ) 2 ·4H 2 O, 200 ppm MgSO 4 ·7H 2 O and 100 ppm KNO 3 .
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The essential role of calcium in selective cation transport by plant cells
Emanuel Epstein · PLANT PHYSIOLOGY · 1961
430 citations
CULTURAL STUDIES OF THE POLLEN POPULATION EFFECT AND THE SELF‐INCOMPATIBILITY INHIBITION
J. L. Brewbaker, S.K. Majumder · American Journal of Botany · 1961
176 citations
Brij M. Johri, Indra K. Vasil · The Botanical Review · 1961
164 citations
J. L. Brewbaker, George C. Emery · Radiation Botany · 1961
108 citations
104 citations