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1.
Does transpiration have an essential function in long-distance ion transport in plants? 总被引:6,自引:3,他引:3
Abstract. Long-term effects of transpiration on growth and on long-distance ion transport were investigated in maize over a whole growth cycle. Maize plants were grown with nutrients supplied at adequate levels in hydroculture or in soil at 50–60% and at >95% relative humidity. Although the amount of water lost by the plants under these conditions differed by a factor 2 to 3, there was neither a decrease in growth (fresh weight and dry weight) nor in ash content of the 'humid'plants. This was also found when the upper part of the shoot (70–150 cm) was tested separately. It is suggested that transpiration is not essential for long-distance transport of mineral elements in plants. Alternatives are discussed. 相似文献
2.
Abstract. Current opinion is divided on whether the free IAA in cereal shoots is derived from the coleoptile tip or from the grain. To date these hypotheses have been considered to be mutually exclusive. In this paper the idea is advanced that both sources may function in the supply of IAA in the shoot. Critical review of the literature shows that such an explanation best fits all the available evidence. It is argued that the relative importance of each source may vary between species of the Gramineae, with the supply of IAA in Avena shoots being derived predominantly from the grain, whereas in Zea the coleoptile tip is the more important source. 相似文献
3.
研究了玉米叶片中层基本分生组织3个相邻细胞形成主脉原形成层及维管束鞘(BS)的早期发育过程和超微结构。结果表明,在由3个相邻细胞组成的3-细胞单元中,位于中间的细胞发生2次平周分裂,产生1个较小的和1个较大的细胞,前者分化为近轴端BS细胞前体,后者再发生1次不均等平周分裂产生1个远轴端BS细胞前体和1个原形成层起始细胞;位于两侧的细胞其中有1个也发生1次平周分裂,所产生的2个子细胞与另1个侧向细胞 相似文献
4.
The inhibitory effects of PEG on whole-plant growth can exceed the effects of other osmolytes such as NaCI, and this has been ascribed to toxic contaminants, or to reduced oxygen availability in PEG solutions. We investigated another possibility, namely that PEG has an additional inhibitory effect on root water transport which in turn affects leaf development. The effects on first-leaf growth of applications of PEG 6000 or isoosmotic NaCI to the roots were determined using hydroponically grown maize (Zea mays L.) seedlings. Leaf growth rates were inhibited within minutes of PEG application to the roots and remained inhibited for days. The inhibitory effects on growth of NaCI, and also of KCl and mannitol, were much smaller. The comparative effects of NaCI and PEG on root water transport were determined by assaying pressurized flow through excised roots. PEG induced a 7-fold greater inhibition of flow through live roots than NaCI. Killing of the roots by heat treatment, to reduce cell membrane resistances to solute penetration, nearly doubled the flow rate for roots in NaCI, but not for roots in PEG. We suggest that the greater viscosity of PEG solutions, as compared with NaCI, may be a primary factor contributing to the additional inhibition of water flow through live and killed roots. PEG did not have additional effects on leaf turgor but had a 3 times greater inhibitory effect than NaCI on the irreversible extensibility of the leaves and induced 16 times more leaf accumulation of the growth inhibitory stress hormone abscisic acid (ABA). We conclude that greater inhibition of root water transport by PEG 6000, as compared with NaCI, leads to additional reductions in extensibility, additional ABA accumulation, and a greater inhibition of leaf growth. 相似文献
5.
A mathematical model was developed for resolved temporal transients of experimentally recorded delayed fluorescence (DF) induction
signal. During an intermittent light regime, antennas of the photosynthetic apparatus were treated as targets, repeatedly
hit by potentially absorbable photons within a series of consecutive light flashes. Formulas were derived for the number of
antennas, cumulatively hit by a specific number of photons, as a function of the flash serial number (time). Model parameters
included number of absorbable photons in one flash, antenna sizes, and their number. A series of induction curves were analyzed,
obtained from a Zea mays leaf segment and differing in the previous dark period (t
d). Each curve, consisting of the two most prominent DF transients (C and D), was fitted with several model types, differing in the number of absorbed photons. For both transients, the best fitting
result was achieved when DF induction was linked to the second absorbed photon. As expected, model parameters related to antenna
sizes showed weaker dependence on t
d than those referring to antenna number. With restrictions applied to this model, the two DF induction transients may be related
to two classes of photosynthetic antennas. Their different sizes may have a predominant influence on the efficiency of photon
absorption and possibly time-dependent appearance of DF transients.
Published in Russian in Fiziologiya Rastenii, 2006, Vol. 53, No. 3, pp. 325–335.
The text was submitted by the authors in English. 相似文献
6.
P. Nick 《Plant biology (Stuttgart, Germany)》1997,110(4):291-297
The crown roots in the coleoptilar node of maize emerge asymmetrically: emergence at the dorsal flank of the node (opposite to the caryopsis) precedes emergence at the ventral flank (facing the caryopsis). This asymmetry can be altered by phototropic stimulation: emergence of crown roots is delayed in the lighted flank and promoted in the shaded flank causing an inversion of the endogenous asymmetry. The curvature induced by the phototropic stimulation is transient, the effect on crown root emergence, in contrast, persists. This stable effect is not a consequence of curvature per se and becomes irreversibly fixed between one and two hours after stimulation. The emergence of crown roots depends on directional signalling from the coleoptile to the node. The data are discussed in terms of a stable blue light induced transverse polarity of the coleoptile that can imprint a stable asymmetry upon the coleoptilar node guiding the emergence of crown roots. 相似文献
7.
Abstract. Steady-state photosynthesis (Pn ), post-illumination CO2 release rates (R), sucrose-phosphate synthase (SPS) activities, and levels of starch, sucrose and hexoses were measured in the source leaf of corn ( Zea mays L.) during a 16-h photoperiod at 800 μmol m 2 s 1 . Pn and SPS activity remained constant. Carbohydrate pools increased at a linear rate, except the first and last hour of the photoperiod. Both the CO2 evolution rate at the moment of light removal (Rmax ) and SPS activity decreased by one half after the onset of darkness (0 60 min). Sucrose diminished during this period by 40%, whereas the starch remained constant. Thereafter, starch mobilization began, followed by a gradual decline in leaf respiration. The average dark export rate was calculated to be 60% less than that during the day. Maintenance respiration (Rm ) of an attached leaf after 48 h darkness was determined. Plants were illuminated for different intervals (e.g. 5, 10 or 20 min), each followed by dark periods sufficient for respiration to decline to Rm . The ratio of C assimilated in light to that released in dark was 6:1. After the 48-h dark period, the minimal period of illumination (Tmin ) required to restore Pn and Rmax to the original level was determined. A mathematical analysis of the kinetics involved in the recovery of Pn and Rmax provided an estimate of turnover time (0.22h) and pool size 9.15 mmol m 2 ) for the newly fixed carbon. 相似文献
8.
《Bioscience, biotechnology, and biochemistry》2013,77(7):1173-1175
A genomic DNA clone encoding corn cystatin, a cysteine proteinase inhibitor of corn, was isolated from a λEMBL3 phage genomic library. The genomic DNA clone spans approximately 2.2 kb and consists of three exons and two introns. The exon number and the intron breakpoints coincide with those of the genes for two types of oryzacystatin. 相似文献
9.
The plant hormone abscisic acid (ABA) is believed to play a role in the onset of developmental arrest in seeds. Embryos of the viviparous mutants of Zea mays do not undergo arrest but germinate directly on the ear. This study investigates the possibility that the mutants vp1, vp5, vp7, vp8, and vp9 are defective in some aspect of ABA action. Mutant and wild type embryos were removed from developing seeds at 18, 21, and 24 days after pollination and cultured aseptically on media containing a range of ABA concentrations. Seedlings were harvested after seven days when lengths and fresh and dry weights were recorded. The results indicate that these five viviparous mutants differ in their response to ABA. Two mutants, vp5 and vp8, exhibit the same sensitivity to growth inhibition by ABA as wild type. The remaining three mutants, however, manifest a range of decreased sensitivities with vp1 being the least sensitive, followed by vp7 and vp9. 相似文献
10.
Instability in the root meristem of Zea mays L. during growth 总被引:1,自引:1,他引:0