Pollination in flowering plants is initiated by germination of pollen grains on stigmas followed by fast growth of pollen tubes representing highly energy-consuming processes. The symplastic ...isolation of pollen grains and tubes requires import of Suc available in the apoplast. We show that the functional coupling of Suc cleavage by invertases and uptake of the released hexoses by monosaccharide transporters are critical for pollination in tobacco (Nicotiana tabacum). Transcript profiling, in situ hybridization, and immunolocalization of extracellular invertases and two monosaccharide transporters in vitro and in vivo support the functional coupling in supplying carbohydrates for pollen germination and tube growth evidenced by spatiotemporally coordinated expression. Detection of vacuolar invertases in maternal tissues by these approaches revealed metabolic cross talk between male and female tissues and supported the requirement for carbohydrate supply in transmitting tissue during pollination. Tissue-specific expression of an invertase inhibitor and addition of the chemical invertase inhibitor miglitol strongly reduced extracellular invertase activity and impaired pollen germination. Measurements of (competitive) uptake of labeled sugars identified two import pathways for exogenously available Suc into the germinating pollen operating in parallel: direct Suc uptake and via the hexoses after cleavage by extracellular invertase. Reduction of extracellular invertase activity in pollen decreases Suc uptake and severely compromises pollen germination. We further demonstrate that Glc as sole carbon source is sufficient for pollen germination, whereas Suc is supporting tube growth, revealing an important regulatory role of both the invertase substrate and products contributing to a potential metabolic and signaling-based multilayer regulation of pollination by carbohydrates.
The redirection of anthocyanin synthesis in
Osteospermum hybrida away from delphinidin towards pelargonidin derivatives required both the introduction of dihydroflavonol 4-reductase activity with ...dihydrokaempferol as a substrate and the suppression of F3′5′H activity by means of genetic engineering.
Modern biotechnology has developed powerful tools for genetic engineering and flower colours are an excellent object to study possibilities and limitations of engineering strategies.
Osteospermum hybrida became a popular ornamental plant within the last 20 years. Many cultivars display rose to lilac flower colours mainly based on delphinidin-derived anthocyanins. The predominant synthesis of delphinidin derivatives is referred to a strong endogenous flavonoid 3′,5′-hydroxylase (F3′5′H) activity. Furthermore, since dihydroflavonol 4-reductase (DFR) of
Osteospermum does not convert dihydrokaempferol (DHK) to leucopelargonidin, synthesis of pelargonidin-based anthocyanins is naturally not realised. In order to redirect anthocyanin biosynthesis in
Osteospermum towards pelargonidin derivatives, we introduced cDNAs coding for DFRs which efficiently convert DHK to LPg. But neither the expression of
Gerbera hybrida DFR nor of
Fragaria
×
ananassa DFR – the latter is characterised by an unusual high substrate preference for DHK – altered anthocyanin composition in flowers of transgenic plants. However, chemical inhibition of F3′5′H activity in ray florets of
dfr transgenic plants resulted in the accumulation of pelargonidin derivatives. Accordingly, retransformation of a transgenic plant expressing
Gerbera DFR with a construct for RNAi-mediated suppression of F3′5′H activity resulted in double transgenic plants accumulating predominantly pelargonidin derivatives in flowers.
Pollen germination as a crucial process in plant development strongly depends on the accessibility of carbon as energy source. Carbohydrates, however, function not only as a primary energy source, ...but also as important signaling components. In a comprehensive study, we analyzed various aspects of the impact of 32 different sugars on in vitro germination of Arabidopsis pollen comprising about 150 variations of individual sugars and combinations. Twenty-six structurally different mono-, di- and oligosaccharides, and sugar analogs were initially tested for their ability to support pollen germination. Whereas several di- and oligosaccharides supported pollen germination, hexoses such as glucose, fructose and mannose did not support and even considerably inhibited pollen germination when added to germination-supporting medium. Complementary experiments using glucose analogs with varying functional features, the hexokinase inhibitor mannoheptulose and the glucose-insensitive hexokinase-deficient Arabidopsis mutant gin2-1 suggested that mannose- and glucose-mediated inhibition of sucrose-supported pollen germination depends partially on hexokinase signaling. The results suggest that, in addition to their role as energy source, sugars act as signaling molecules differentially regulating the complex process of pollen germination depending on their structural properties. Thus, a sugar-dependent multilayer regulation of Arabidopsis pollen germination is supported, which makes this approach a valuable experimental system for future studies addressing sugar sensing and signaling.
Invertases and hexose transporters, as essential components of carbohydrate supply, are regulated in a spatiotemporally coordinated manner to maintain functionality of tobacco pollination.
...Pollination in flowering plants is initiated by germination of pollen grains on stigmas followed by fast growth of pollen tubes representing highly energy-consuming processes. The symplastic isolation of pollen grains and tubes requires import of Suc available in the apoplast. We show that the functional coupling of Suc cleavage by invertases and uptake of the released hexoses by monosaccharide transporters are critical for pollination in tobacco (
Nicotiana tabacum
). Transcript profiling, in situ hybridization, and immunolocalization of extracellular invertases and two monosaccharide transporters in vitro and in vivo support the functional coupling in supplying carbohydrates for pollen germination and tube growth evidenced by spatiotemporally coordinated expression. Detection of vacuolar invertases in maternal tissues by these approaches revealed metabolic cross talk between male and female tissues and supported the requirement for carbohydrate supply in transmitting tissue during pollination. Tissue-specific expression of an invertase inhibitor and addition of the chemical invertase inhibitor miglitol strongly reduced extracellular invertase activity and impaired pollen germination. Measurements of (competitive) uptake of labeled sugars identified two import pathways for exogenously available Suc into the germinating pollen operating in parallel: direct Suc uptake and via the hexoses after cleavage by extracellular invertase. Reduction of extracellular invertase activity in pollen decreases Suc uptake and severely compromises pollen germination. We further demonstrate that Glc as sole carbon source is sufficient for pollen germination, whereas Suc is supporting tube growth, revealing an important regulatory role of both the invertase substrate and products contributing to a potential metabolic and signaling-based multilayer regulation of pollination by carbohydrates.
Invertasen spielen eine zentrale Rolle im Metabolismus der Pflanzen und werden über eine Vielzahl von Faktoren in ihrer Regulation beeinflusst. Invertasen mit pH-Optimum im sauren Bereich liegen ...dabei als vakuoläre und zellwandgebundene Isoformen einer Genfamilie in den Pflanzen vor. Im Rahmen dieser Arbeit wurden zum ersten Mal 9 putative Invertasen aus der Nutzpflanze Brassica napus, sowie 4 weitere putative Mitglieder der bereits bekannten Tabakinvertasenfamilie isoliert und Expressionsprofile für die neu klonierten Invertasen erstellt. Symplastisch isolierte Zellen, wie z. B. Pollen und Pollenschläuche, sind auf die Expression zellwandgebundener Invertasen besonders angewiesen, da sie Kohlen-hydrate primär in Form von Fructose und Glucose aufnehmen, die über die Invertasen-vermittelte Spaltung aus Saccharose gebildet werden. An Tabak hatten Goetz et al. (2001) gezeigt, dass eine Inhibierung dieser pollen¬spezi¬fischen Invertaseaktivität zu männlich sterilen Pflanzen führt. Im Rahmen dieser Arbeit wurde nachgewiesen, dass durch Inhibierung der Zellwandinvertase¬aktivität mittels Antisense-Technik oder Expression des proteinogenen Invertase-Inhbitors AtC/VIF2 auch männlich sterile Arabidopsis-Pflanzen generiert werden können. Ein Aktivitätsvergleich der Invertase-promotoren von Nin88 aus Tabak und AtcwINV2 aus Arabidopsis im jeweiligen homo- und heterologen System zeigte jedoch, dass der Einsatz dieser pollenspezifischen Promotoren zur Erzeugung männlich steriler Pflanzen über Familiengrenzen hinweg nicht möglich ist. Neben ihrer Funktion als Energieträger stellen Kohlenhydrate auch Signalmoleküle dar, die in die Regulation zentraler Prozesse der Pflanzen eingreifen. Anhand von Keimungsanalysen mit Arabidopsis-Pollen wurde festgestellt, dass Hexokinase-unabhängige Signalingwege involviert sein müssen, um ein Auskeimen der Pollen zu ermöglichen. Dabei kann die Hexokinase-vermittelte Inhibition der Pollenkeimung vermutlich durch die Beteiligung anderer Signaling-Wege aufgehoben werden. Es wurde außerdem die zuckerabhängige Ausbildung blasenartiger Strukturen an Arabidopsis-Pollen nachgewiesen, die vermutlich durch einen Zucker-spezifischen Abbruch des Pollenschlauchwachstums gebildet werden.
Invertases with acid pH-optimum play a central role in plant metabolism and are regulated by numerous biotic and abiotic factors. They consist of vacuolar and extracellular isoforms of a gene family in plants. For the first time 9 putative members of the invertase family of Brassica napus, as well as 4 additional putative tobacco acid invertases were cloned in this work and expression profiles were analysed. Symplastically isolated cells, like pollen and pollen tubes, in particular depend on the expression of extracellular invertases, since they prefer the uptake of glucose and fructose. These hexoses are generated by the invertase-mediated cleavage of sucrose. Goetz et al. (2001) have shown on tobacco that inhibition of the pollen specific invertase activity lead to male sterile plants. In this work it was shown that inhibition of cell wall invertase activity via antisense technology or expression of the proteinaceous invertase inhbitor AtC/VIF2 also causes male sterility in Arabidopsis thaliana. Comparison of the promoter activities of the invertases Nin88 (tobacco) and AtcwINV2 (Arabidopsis) in the corresponding homo- and heterologous systems revealed that the use of these pollen specific promoters for generating male sterile plants is not possible in diverse plant families. Besides their function as energy source, carbohydrates are signaling molecules that influcence regulation of central processes in the plants. On the basis of germination assays with Arabidopsis pollen, it was shown that hexokinase-independent signaling pathways must be involved to permit normal pollen germination. In this context, hexokinase-mediated inhibition of pollen germination might be overrode by the involvement of other signaling pathways. In addition, the sugar-dependent generation of bubble-like structures at Arabidopsis pollen was demonstrated, which might be caused by the sugar-specific interruption of pollen tube growth.