4.5 Review

Improving crop yield potential: Underlying biological processes and future prospects

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Summary: Plant scientists and farmers are facing challenges in providing food security while preserving natural resources and adapting to climate change. Breeding resilient crops and improving nutrient use efficiency are crucial for sustainable agriculture. Understanding the physiological and molecular bases of plant environmental responses is essential, as well as exploring genetic resources and utilizing technological advancements.

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Summary: By reviewing the interacting processes determining sink strength and yield potential in wheat, and visualizing them in a set of 'wiring diagrams', the main traits determining sink strength were identified and research gaps were highlighted for achieving gains in sink strength. In the pre-anthesis phase, grain number could be increased through enhanced spike growth and improved fruiting efficiency. In the post-anthesis phase, grain sink strength could be augmented through manipulation of grain size potential and improving spike vascular architecture. The wiring diagrams provide a potential workspace for yield improvement in wheat and other field crops.

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A 'wiring diagram' for source strength traits impacting wheat yield potential

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Summary: Source traits, such as photosynthesis, play a crucial role in enhancing crop yield potential. However, for a comprehensive understanding, the interactions of various processes in crop regulation, including sink activities, need to be considered. This review uses 'wiring diagrams' to integrate these interactions and examine the regulation of source traits at different stages of wheat development. The review also discusses challenges and opportunities in photosynthesis components due to canopy formation and the feedback regulation of source activity.

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CropBooster-P: Towards a roadmap for plant research to future-proof crops in Europe

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Summary: To meet the increasing demand for food and feed and mitigate climate change, the world needs to double its agricultural productivity by 2050. Developing and integrating new crops adapted to the future climate can help achieve this goal. The H2020 CropBooster-P project aims to identify and prioritize breeding options for sustainable crop yield increases, taking into account socio-economic and environmental factors.

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The OsNAC23-Tre6P-SnRK1a feed-forward loop regulates sugar homeostasis and grain yield in rice

Zhiyong Li et al.

Summary: The translation explains that Tre6P maintains sugar balance in plants and promotes growth by regulating carbon allocation. The sugar-inducible rice NAC transcription factor OsNAC23 elevates Tre6P levels and represses trehalose levels by directly repressing the transcription of the Tre6P phosphatase gene TPP1. Additionally, OsNAC23 and Tre6P suppress the activity and transcription of SnRK1a, preventing SnRK1a-mediated degradation of OsNAC23. Overexpression of OsNAC23 increases rice yield and photosynthetic rate.

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Isoprene enhances leaf cytokinin metabolism and induces early senescence

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Summary: Plant hormones and biogenic volatile organic compounds (BVOCs) have evolved together as regulators of plant growth and behavior. While hormones regulate growth, development, and differentiation, BVOCs regulate hormone synthesis and activity. The interaction between hormones, nitric oxide, and volatiles maintains hormone homeostasis, while stress-induced and exogenously received volatiles interfere with hormonal signaling.

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Lars B. Scharff et al.

Summary: Enhancing the nutritional quality of crops through increasing protein content, improving protein functionality, and optimizing the content of vitamins and minerals, while reducing antinutrients and toxins, could help address 'hidden hunger' caused by micronutrient deficiencies and support a shift towards healthier and more sustainable plant-based diets.

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A model-guided holistic review of exploiting natural variation of photosynthesis traits in crop improvement

Xinyou Yin et al.

Summary: Exploiting photosynthetic natural variation can significantly improve crop yield by improving electron transport, nitrogen uptake, and morpho-physiological components. Breeding for improved leaf photosynthesis is considered as a viable approach to increase crop yield. Additionally, traits for both photosynthetic rate and sustaining it during grain filling were strongly related to nitrogen-related traits.

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Root system size and root hair length are key phenes for nitrate acquisition and biomass production across natural variation in Arabidopsis

Jerome De Pessemier et al.

Summary: A positive correlation was found between root system size and high-affinity nitrate uptake in a core set of Arabidopsis natural accessions, highlighting the beneficial role of exploratory root organ in plant nitrogen acquisition. The study evaluated the role of root phenes in nitrogen acquisition and biomass production in different accessions of Arabidopsis thaliana. The low nitrogen treatment resulted in increased root to shoot biomass ratio and enhanced proliferation of lateral roots and root hairs. Greater biomass production could be achieved through increased root length or specific root hair characteristics.

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Modulation of the DA1 pathway in maize shows that translatability of information from Arabidopsis to crops is complex

Pan Gong et al.

Summary: Modern agriculture is facing challenges in meeting the increasing demands for food and raw materials due to rapid population growth and climate change. In maize, the DA1, DAR1, and BB gene families are controlled by ubiquitination and may regulate organ size, although the effects are less obvious compared to Arabidopsis.

PLANT SCIENCE (2022)

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Soybean photosynthesis and crop yield are improved by accelerating recovery from photoprotection

Amanda P. De Souza et al.

Summary: This study applied biotechnology to soybean to enhance its ability to adapt to shade conditions, resulting in increased photosynthetic efficiency and yield. This strategy is significant for improving crop yield and ensuring global food security.

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Designing the Crops for the Future; The CropBooster Program

Jeremy Harbinson et al.

Summary: Climate change and population growth pose serious challenges to global food supply, environmental protection, and biodiversity conservation. Future-proof crops must adapt to changing climate conditions, be high-yielding, and efficiently use scarce resources. Large-scale international research cooperation is needed to realize the development of future crops.

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Marker-based crop model-assisted ideotype design to improve avoidance of abiotic stress in bread wheat

Matthieu Bogard et al.

Summary: This study calibrated and tested a marker-based crop model for wheat phenology, using climate analysis of historical weather data in 72 locations representing the main wheat production areas in France. The model allowed prediction of genotypic variations for different growth stages and showed the need to optimize genotypes based on sowing date in high risk environments. Empirical validation suggested promising improvements in frost and heat stress avoidance using this approach.

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Sunfleck properties from time series of fluctuating light

Maxime Durand et al.

Summary: The study investigated the characteristics of sunflecks and how different plant canopies produce sunflecks with varying properties. High-frequency irradiance measurements revealed that shorter wind-induced sunflecks contribute significantly to the irradiance available for photosynthesis, and variations in sunfleck properties were observed related to canopy depth and species.

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Plant roots sense soil compaction through restricted ethylene diffusion

Bipin K. Pandey et al.

Summary: Soil compaction hinders root growth by reducing gas diffusion and causing accumulation of ethylene in root tissues, triggering hormone responses that restrict growth. Ethylene acts as an early warning signal for roots to avoid compacted soils, which is relevant for breeding crops resilient to soil compaction.

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Summary: Organisms must sense and process information about the availability of nutrients, energy status, and environmental cues to identify the appropriate times for growth and development. The TOR complex in plants has evolved specific functional and mechanistic features, serving as a central hub for integrating external and internal metabolic cues.

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The PEAPOD Pathway and its Potential To Improve Crop Yield

Michele Schneider et al.

Summary: The article discusses a key strategy to increase plant productivity by improving intrinsic organ growth; highlighting the highly conserved regulatory networks underlying organ growth and development, and exploring future research directions.

TRENDS IN PLANT SCIENCE (2021)

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Pierre Gautrat et al.

Summary: Plant nutrient acquisition is tightly regulated by resource availability and metabolic needs, with communication between roots and shoots to ensure integration at the whole-plant level. The focus is on systemic signaling pathways controlling nitrogen nutrition through root import of mineral N and atmospheric N fixation in legume plants. Features shared between systemic pathways regulating symbiotic N fixation and mineral N acquisition by roots are explored, along with their integration with other environmental factors.

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What are the regulatory targets for intervention in assimilate partitioning to improve crop yield and resilience?

Matthew J. Paul

Summary: Sucrose utilization and partitioning play crucial roles in determining diversity in the plant kingdom and supporting crop yields. Understanding the regulations of assimilate partitioning is a grand challenge in plant and crop science, and there are emerging examples of genes and processes that are important for yield enhancement. Enzymes of carbon metabolism and trehalose 6-phosphate are key factors in modifying assimilate partitioning and regulating source and sink processes.

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Molecular Control of Oil Metabolism in the Endosperm of Seeds

Romane Miray et al.

Summary: The regulation and molecular mechanisms of oil metabolism in the endosperm of seeds have only recently received particular attention, thanks to improved analytical techniques. Studies have highlighted the importance of endosperm-specific transcriptional controls in determining the original oil compositions observed in this tissue. The biological functions of oils stored in the endosperm of seeds are more diverse than simply serving as a carbon source for germinating seedlings.

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Post-translational modifications regulate the activity of the growth-restricting protease DA1

Ying Chen et al.

Summary: Plants play a crucial role as a primary food source and potential renewable energy resource. The final size of plant organs is determined by the coordination between cell proliferation and expansion, with the protease DA1 playing a key role in regulating cell proliferation duration and final organ size. The complex molecular mechanisms involving DA1 and its interacting proteins provide insights into fine-tuning organ size and hold potential for identifying substrate cleavage events in a biological context.

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Jose L. Araus et al.

Summary: Increasing crop productivity and adaptation to abiotic stresses is crucial, with a call for a second Green Revolution. Proposed alternatives for enhancing crop yield through leaf photosynthetic efficiency have not yielded significant results. Canopy photosynthesis plays a key role in determining yield, underscoring the importance of considering factors like canopy architecture and non-laminar photosynthesis.

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A Major Locus on Wheat Chromosome 7B Associated With Late-Maturity α-Amylase Encodes a Putative ent-Copalyl Diphosphate Synthase

Adinda Derkx et al.

Summary: Late maturity alpha-amylase (LMA) can result in wheat with impaired Falling Number, affecting its marketability. This study identified a gene locus on chromosome 7B and an enzyme called LMA-1 associated with resistance to LMA. Genetic markers for resistance from LMA-1 variants may help breeders improve wheat varieties.

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Current Understanding of Leaf Senescence in Rice

Sichul Lee et al.

Summary: Leaf senescence is the final developmental phase of plant growth, controlled by multiple genetic and environmental factors, involving systematic disassembly of macromolecules to facilitate nutrient recycling and translocation critical for plant fitness and productivity.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2021)

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Ear photosynthesis in C3 cereals and its contribution to grain yield: methodologies, controversies, and perspectives

Eduardo A. Tambussi et al.

Summary: This review examines the contribution of ear photosynthesis to grain filling in C-3 cereals, highlighting the increasing role of ear photosynthesis in modern wheat germplasm and its potential to improve grain yield under resource-limitation. Evidence suggests genetic variability in ear contribution, supporting the existence of C-3 metabolism and indicating the ear as a dehydration avoider organ under drought stress. More research is needed to explore the thermal balance and underlying morphological and physiological traits related to ear productivity.

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Marco Lombardi et al.

Summary: Climate change impacts food safety and food security, and the importance of root system architecture in plant physiology is being increasingly recognized. Breeding for appropriate root architecture can help obtain plants better adapted to the environment and more efficient in utilizing soil and water resources. Advances in high-tech phenotyping platforms and genotyping techniques are shedding light on the genetic control of root system architecture and paving the way for future plant breeding research.

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Overexpression of both Rubisco and Rubisco activase rescues rice photosynthesis and biomass under heat stress

Yuchen Qu et al.

Summary: Researchers have found that increasing the content of Rubisco activase without reducing the Rubisco content can improve the photosynthetic efficiency and growth performance of rice at high temperatures.

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Gene-based mapping of trehalose biosynthetic pathway genes reveals association with source- and sink-related yield traits in a spring wheat panel

Danilo H. Lyra et al.

Summary: This study revealed the significant impact of trehalose phosphate synthase (TPS) and trehalose phosphate phosphatase (TPP) genes on genetic variation related to yield traits in wheat, with TPS1 homologues playing a particularly important role, and identified epistatic interactions within and between TPS and TPP gene families.

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Recent Advances on Nitrogen Use Efficiency in Rice

Sichul Lee

Summary: Rice is a staple food for over half of the global population, and improving nitrogen use efficiency is crucial for sustainable agriculture development. Understanding the processes of nitrogen uptake, transport, reduction, and assimilation can provide a foundation for developing novel strategies to enhance rice productivity.

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Susanna Pollastri et al.

Summary: Isoprene is a small, volatile organic compound synthesized in plants through photosynthesis, with potential protective roles but controversial antioxidant properties.

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The effect of canopy architecture on the patterning of windflecks within a wheat canopy

Alexandra J. Burgess et al.

Summary: Under field conditions, wind-induced movement affects the fluctuations of light intensity and spectral quality reaching plant leaves, known as windflecks. Different canopy structures influence the frequency and duration of light flecks, indicating the potential for architectural traits to improve canopy light environment and explore the relationship between plant form and function.

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Matthew Reynolds et al.

Summary: The asymmetry of investment in crop research has resulted in knowledge gaps, but by focusing on relatively underrepresented research areas with the potential to boost productivity and leveraging previous knowledge, it is possible to improve crop breeding and management decisions, making it easier to explore crop genetic resources and enhance breeding strategies.

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Liang Jiang et al.

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Variation between rice accessions in photosynthetic induction in flag leaves and underlying mechanisms

Liana G. Acevedo-Siaca et al.

Summary: Research shows that there is significant variation in photosynthesis of rice flag leaves under steady and non-steady-state conditions, with no significant correlation between the two. Additionally, the photosynthetic traits of flag leaves do not directly correlate with those of leaves in the vegetative growth stage.

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John R. Evans

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Mesophyll diffusion conductance to CO2: An unappreciated central player in photosynthesis

Jaume Flexas et al.

PLANT SCIENCE (2012)

Review Plant Sciences

Leaf size control: complex coordination of cell division and expansion

Nathalie Gonzalez et al.

TRENDS IN PLANT SCIENCE (2012)

Review Plant Sciences

THESEUS 1, FERONIA and relatives: a family of cell wall-sensing receptor kinases?

Alice Y. Cheung et al.

CURRENT OPINION IN PLANT BIOLOGY (2011)

Article Plant Sciences

Exploring nitrogen remobilization for seed filling using natural variation in Arabidopsis thaliana

Celine Masclaux-Daubresse et al.

JOURNAL OF EXPERIMENTAL BOTANY (2011)

Article Plant Sciences

Optimizing Antenna Size to Maximize Photosynthetic Efficiency

Donald R. Ort et al.

PLANT PHYSIOLOGY (2011)

Review Plant Sciences

Tailoring plant lipid composition: designer oilseeds come of age

Johnathan A. Napier et al.

CURRENT OPINION IN PLANT BIOLOGY (2010)

Review Plant Sciences

Regulation of plant biomass production

Taku Demura et al.

CURRENT OPINION IN PLANT BIOLOGY (2010)

Article Agronomy

Functional dynamics of the nitrogen balance of sorghum. II. Grain filling period

E. J. van Oosterom et al.

FIELD CROPS RESEARCH (2010)

Review Biochemistry & Molecular Biology

Metabolic and Signaling Aspects Underpinning the Regulation of Plant Carbon Nitrogen Interactions

Adriano Nunes-Nesi et al.

MOLECULAR PLANT (2010)

Review Biochemistry & Molecular Biology

Out of the Mouths of Plants: The Molecular Basis of the Evolution and Diversity of Stomatal Development

Kylee M. Peterson et al.

PLANT CELL (2010)

Review Biochemistry & Molecular Biology

Morphogenesis of Simple and Compound Leaves: A Critical Review

Idan Efroni et al.

PLANT CELL (2010)

Article Plant Sciences

Increased Leaf Size: Different Means to an End

Nathalie Gonzalez et al.

PLANT PHYSIOLOGY (2010)

Article Multidisciplinary Sciences

TOR Is a Negative Regulator of Autophagy in Arabidopsis thaliana

Yimo Liu et al.

PLOS ONE (2010)

Article Biochemistry & Molecular Biology

KLUH/CYP78A5 promotes organ growth without affecting the size of the early primordium

Lena Stransfeld et al.

PLANT SIGNALING & BEHAVIOR (2010)

Review Biotechnology & Applied Microbiology

Increasing the flow of carbon into seed oil

Randall J. Weselake et al.

BIOTECHNOLOGY ADVANCES (2009)

Review Plant Sciences

Making bigger plants: key regulators of final organ size

Beth A. Krizek

CURRENT OPINION IN PLANT BIOLOGY (2009)

Article Biology

Angiosperm leaf vein evolution was physiologically and environmentally transformative

C. Kevin Boyce et al.

PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES (2009)

Review Biochemical Research Methods

What is the maximum efficiency with which photosynthesis can convert solar energy into biomass?

Xin-Guang Zhu et al.

CURRENT OPINION IN BIOTECHNOLOGY (2008)

Article Cell Biology

Control of plant organ size by KLUH/CYP78A5-dependent intercellular signaling

Elena Anastasiou et al.

DEVELOPMENTAL CELL (2007)

Article Plant Sciences

Leaf maximum photosynthetic rate and venation are linked by hydraulics1[W][OA]

Tim J. Brodribb et al.

PLANT PHYSIOLOGY (2007)

Article Biochemistry & Molecular Biology

A receptor-like kinase mediates the response of Arabidopsis cells to the inhibition of cellulose synthesis

Kian Hematy et al.

CURRENT BIOLOGY (2007)

Article Biotechnology & Applied Microbiology

Chloroplastic photorespiratory bypass increases photosynthesis and biomass production in Arabidopsis thaliana

Rashad Kebeish et al.

NATURE BIOTECHNOLOGY (2007)

Article Plant Sciences

The role of root architectural traits in adaptation of wheat to water-limited environments

Ahmad M. Manschadi et al.

FUNCTIONAL PLANT BIOLOGY (2006)

Article Plant Sciences

What stay-green mutants tell us about nitrogen remobilization in leaf senescence

H Thomas et al.

JOURNAL OF EXPERIMENTAL BOTANY (2002)

Article Plant Sciences

Non-photochemical quenching.: A response to excess light energy

P Müller et al.

PLANT PHYSIOLOGY (2001)

Review Multidisciplinary Sciences

Loosening of plant cell walls by expansins

DJ Cosgrove

NATURE (2000)

Article Biochemistry & Molecular Biology

Auxin regulates the initiation and radial position of plant lateral organs

D Reinhardt et al.

PLANT CELL (2000)

Article Plant Sciences

Five ways to stay green

H Thomas et al.

JOURNAL OF EXPERIMENTAL BOTANY (2000)

Review Plant Sciences

New genes and new biological roles for expansins

DJ Cosgrove

CURRENT OPINION IN PLANT BIOLOGY (2000)

Article Plant Sciences

Is photosynthesis related to concentrations of nitrogen and Rubisco in leaves of Australian native plants?

CR Warren et al.

AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY (2000)